Spring 2026, Pages 151-317
Spring 2026, Pages 1-150

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The parameterization and evaluation of the APSIM model to simulation of yield and phenological traits of some wheat, barley and triticale cultivars (Case study: Alborz province)

Pages 151-168

https://doi.org/10.22059/jci.2026.406960.2964

Sorayya Navid, Mohammadreza Jahansouz, Saied Soufizadeh

Abstract Objective: This study aimed to parameterize and evaluate the APSIM-Wheat and APSIM-Barley sub-models for simulating the yield and phenological traits of wheat, barley, and triticale cultivars in Alborz Province, Iran.
Methods: Model inputs included soil, climatic, plant, and management data. A four-year experiment was conducted to collect the required information. For model parameterization and determination of genetic coefficients, two-year field experiments were performed using a randomized complete block design with 14 treatments (six barley, six wheat, and two triticale cultivars) and three replications—conducted at the Atomic Energy Organization farm (2014–2015) and the Faculty of Agriculture, University of Tehran (2016–2017). Genetic coefficients were identified from field data, and the model was locally calibrated. For model evaluation, farm sampling was carried out during the 2018–2019 and 2019–2020 growing seasons. Under real farming conditions (farmers' management), 30 barley and 30 wheat farms were selected across Alborz Province. A comprehensive questionnaire was used to collect information on farm history, planting, management, and harvesting operations, along with overall farm management practices. Soil and plant samples were also collected to assess crop growth status.
Findings: Simulation of flowering and physiological maturity stages using APSIM-Wheat and APSIM-Barley showed strong agreement between simulated and observed values across all wheat, barley, and triticale cultivars. The model predicted phenological traits with excellent quality and acceptable accuracy, with normalized root mean square error (nRMSE) values below 10%. In both experimental years, nRMSE values for grain and biological yield were below 5% for all cultivars. Additional evaluation metrics (CRM, D-index, and R²) further confirmed the robustness of the sub-models. Agreement between simulated and observed traits was higher for triticale than for wheat and barley. Among barley cultivars, yield simulations showed better agreement than those for wheat cultivars.
Conclusions: The estimated genetic coefficients and APSIM sub-models can be reliably used to predict phenological dates and yields of the studied cultivars across diverse regions and environmental conditions — including varying moisture regimes, fertilizer levels, and sowing dates — without the need for time-consuming and costly field experiments.

Assessment of phenotypic diversity and determination of cytoplasmic male sterility types in some commercial forage maize hybrids cultivated in Iran using morphological–agronomic traits and PCR markers

Pages 169-197

https://doi.org/10.22059/jci.2026.409816.2972

Mohsen Hemmati-Kamerh, Seyed Mohammad Mahdi Mortazavian, Maryam Golabadi, fatemeh amini

Abstract Objective: Commercial forage maize hybrids widely cultivated in Iran may serve not only as important materials for forage production but also as potential germplasm resources for identifying cytoplasmic male sterility (CMS) sources and developing breeding populations for future hybrid breeding programs. This study aimed to evaluate the phenotypic diversity and cytoplasmic status of seven commercial forage maize hybrids cultivated in Iran and to determine their CMS type using CMS-specific PCR markers. In addition, the agreement between molecular identification and phenotypic observations, including tassel characteristics, pollen production, and self-pollination response, was investigated.
Methods: The experiment was conducted in a randomized complete block design (RCBD) with three replications. Agronomic, morphological, phenological, and yield-related traits were recorded, including fresh forage yield, dry matter yield, plant height, stem diameter, leaf length, leaf width, number of leaves, days to tasseling, days to silking, anthesis–silking interval (ASI), days to milk-stage maturity, ear length, ear diameter, number of kernel rows per ear, and number of kernels per row. Analysis of variance, mean comparison, correlation analysis, path analysis, cluster analysis, factor analysis, principal component analysis (PCA), and estimation of genetic parameters were performed. CMS-specific PCR markers were used to identify cytoplasmic types, and molecular results were compared with field observations and self-pollination tests.
Results: Significant differences (P≤0.01) were observed among the hybrids for most measured traits, indicating substantial phenotypic diversity within the evaluated germplasm. Mean comparison identified hybrid P5 (Moghan 704) as the superior genotype for several agronomic and yield-related traits. Correlation and path analyses revealed that dry matter yield exerted the greatest direct effect on forage yield, whereas plant height and the number of leaves above the ear influenced forage production mainly through indirect effects. Cluster analysis classified the hybrids into three phenotypic groups, with hybrid P7 forming a distinct cluster because of its unique morphological and phenological characteristics. The Kaiser–Meyer–Olkin (KMO) value of 0.63 confirmed the adequacy of the data for factor analysis, and four factors explained 85.88% of the total phenotypic variation. Principal component analysis further summarized trait variability within the first two principal components. Broad-sense heritability estimates were high for most traits, suggesting that a large proportion of the observed variation was genetically controlled. Molecular analysis revealed that hybrids P2, P4, P5, P6, and P7 possessed CMS-C cytoplasm, whereas P1 and P3 carried normal (N) cytoplasm. These molecular findings were consistent with tassel phenotype, pollen production, and self-pollination responses observed in both F₁ and F₂ generations.
Conclusion: The evaluated commercial forage maize hybrids exhibited considerable variation in agronomic, morphological, phenological, and cytoplasmic traits. The identification of CMS-C cytoplasm in several hybrids provides valuable preliminary information for the selection of potential CMS sources in maize breeding programs. Nevertheless, the development of male-sterile lines, maintainer lines, and new hybrid parents requires further studies involving segregating populations, inbred line development, CMS stability assessment, and combining ability evaluation across subsequent generations.

Improvement of morphological traits and yield of lentil genotypes under the influence of amino acids in different irrigation regimes

Pages 199-221

https://doi.org/10.22059/jci.2026.399438.2944

Heidar Sharifi, Seyed Ali Mohammad Modarrs-Sanavy, ali heidarzadeh

Abstract Objective: Drought stress severely limits lentil productivity in arid and semi-arid regions. This study evaluated the effects of foliar application of proline and valine on morphological traits and yield of lentil genotypes under full irrigation and water deficit conditions.
Methods: A field experiment was conducted over the 2022 and 2023 growing seasons in Kohin, Qazvin Province, Iran, using a factorial split-plot design with three replications. Treatments comprised two irrigation regimes (full irrigation and water deficit), four lentil genotypes (Sabzpardis, Bilehsavar, Sepehr, and FLIP 590), and three foliar treatments (proline, valine, and distilled water at 1 g L⁻¹) applied at flowering and pod formation. The irrigation levels and lentil genotypes were arranged factorially in the main plots, while the foliar application treatments were assigned to the subplots. The experimental site was characterized by a semi-arid climate with low rainfall and relatively high temperatures during the growing season.
Results: Water deficit reduced total biomass and plant dry weight by 35% and 34%, respectively. Sabzpardis exhibited the highest grain yield under both irrigation regimes, attributed to superior total biomass (15%), plant dry weight (11%), pod dry weight (16%), and seed dry weight (11%). Both amino acids alleviated drought effects, but proline was more effective, increasing total biomass by 33%, seed dry weight by 47%, and grain yield by 30%. Maximum grain yield (1341 kg ha⁻¹) was recorded for Sabzpardis under full irrigation with amino acid application, while FLIP 590 yielded only 564 kg ha⁻¹ under the same conditions. Foliar amino acids enhanced grain yield by 17–45% depending on genotype and stress severity.
Conclusions: Cultivation of the Sabzpardis genotype combined with proline foliar application is recommended as a sustainable strategy to enhance drought tolerance and lentil productivity in arid and semi-arid regions.

Evaluation of the allelopathic effects of saponin and quinoa residues on germination and development of wheat under laboratory, greenhouse and field conditions

Pages 223-240

https://doi.org/10.22059/jci.2026.399375.2943

mansour shakeri, | Hossein Shamsi Mahmoodabadi, Masoumeh Salehi, Mohammad Ali Baghestani Meybodi

Abstract Objective: Given the progressive salinization of water and soil resources in most plains of the country, the cultivation area of quinoa is expected to expand. Since wheat is typically grown in rotation after quinoa, investigating the allelopathic effects of quinoa residues on wheat germination, performance, and other morphophysiological traits is essential and constitutes the primary aim of this research.
Methods: The study was conducted in 2021 and 2022 at the National Salinity Research Center (Yazd) through four experiments under laboratory, greenhouse, and field conditions. Germination factorial experiments followed a completely randomized design with two factors and three replications in both the laboratory and growth chamber. Germination percentage, germination rate, mean germination time, percentage of normal seedlings, stem and root length, and seed vigor were the key parameters measured and analyzed. Additionally, factorial experiments on the effects of saponin and quinoa residues on wheat growth indices were arranged in a randomized complete block design with two factors and three replications under greenhouse and field conditions. Leaf area index (LAI), number of panicles per m², number of grains per panicle, grain yield, 1000-seed weight, dry weight, plant height, and harvest index were the principal traits measured and statistically analyzed. To distinguish the effects of osmotic pressure from those of allelochemicals in the extract solutions, a control treatment using polyethylene glycol 8000 (PEG) was included.
Results: The inhibitory effects of extracts and powders of saponin and quinoa residues were significant at the 1% probability level for most traits examined in wheat germination and growth experiments under laboratory, greenhouse, and field conditions. Treatment concentration also significantly affected all traits, with higher concentrations leading to greater inhibitory effects. The interaction between plant part and concentration was similarly significant at the 1% probability level. The inhibitory effects of saponin and different quinoa organs on wheat were weaker for most growth traits evaluated under greenhouse and field conditions compared to the germination results in the laboratory. Furthermore, abnormalities were observed in a number of germinated wheat seeds, with more severe symptoms occurring under saponin extract treatment.
Conclusion: These results confirm the allelopathic properties of quinoa saponin and residues on wheat. Therefore, if wheat is cultivated in rotation after quinoa, quinoa residues could significantly inhibit wheat germination and growth, thereby reducing grain and straw yield.

Effect of biological and chemical nitrogen sources on growth, yield, and grain protein of different lentil cultivars under rainfed conditions

Pages 241-264

https://doi.org/10.22059/jci.2026.408357.2970

abas soleymanifard, Mohammad Haghaninia

Abstract Objective: This research aimed to investigate the effect of different nitrogen sources on the yield and morphophysiological traits of four lentil cultivars under rainfed conditions.
Methods: The field experiment was conducted during the 2020–2021 cropping season at the Chardavol Agricultural Research Station, Ilam, Iran. A factorial experiment was arranged in a randomized complete block design (RCBD) with three replications. The first factor comprised four autumn-sown lentil cultivars: Kimia, Gachsaran, Bilesavar, and a local landrace. The second factor included five nitrogen treatments: (1) control (no nitrogen), (2) inoculation with Azospirillum, (3) inoculation with Azotobacter, (4) combined inoculation with both bacteria, and (5) application of chemical nitrogen fertilizer. Measured physiological traits included total chlorophyll content, relative water content (RWC), and root growth. Agronomic traits comprised plant height, number of branches per plant, number of pods and seeds per plant, grain yield, biomass, harvest index (HI), and seed protein content. Standard protocols were used for all measurements, and data were analyzed using ANOVA; treatment means were compared using Duncan's test at the 5% significance level.
Results: The highest values for chlorophyll a and b, relative leaf water content, root growth, plant height, branching, number of pods and grains per plant, grain yield, biomass, harvest index, and seed protein percentage were observed in the chemical nitrogen fertilizer treatment using the Kimia cultivar. However, for many of these traits, inoculation with Azospirillum produced results closely comparable or equal to those of chemical fertilizer. Notably, in the Kimia cultivar, inoculation with Azospirillum showed no significant difference from the chemical fertilizer treatment in terms of root structure, vegetative growth, physiological capacity, and yield components.
Conclusions: This study highlights the effectiveness of plant growth-promoting rhizobacteria (PGPR), particularly Azospirillum, as a sustainable alternative to chemical nitrogen fertilizers in rainfed lentil production. The combination of the Kimia cultivar with Azospirillum inoculation emerged as the most promising strategy for improving physiological efficiency, maximizing grain yield, and enhancing seed protein content. Adoption of such biofertilization approaches can play a crucial role in sustainable crop production, especially in arid and semi-arid regions facing water limitations and fertilizer constraints.

Evaluation of the genetic diversity of native ecotypes of black cumin (Nigella sativa L.) using morpho-phenological markers

Pages 265-281

https://doi.org/10.22059/jci.2026.383659.2903

Mehdi Hadadi Nejad, hamidreza fanaei, NadAli Bagheri, Manni Marefatzadeh-Khameneh, Noosheen Rahmani

Abstract Objective: The global shift toward phytotherapy has made the conservation of medicinal plant species critically important. One challenge in developing black cumin cultivation is the limited knowledge of traits influencing yield improvement, as well as the lack of populations or improved cultivars with suitable agronomic characteristics adapted to diverse ecological conditions. This research aimed to investigate the genetic diversity of native black cumin ecotypes using morpho-phenological markers and to identify suitable genotypes for cultivation in the Karaj region.
Methods: Twenty native ecotypes were evaluated in a randomized complete block design (RCBD) with three replications during the 2021-2022 growing season at the research farm of the Seed and Plant Improvement Institute (SPII) in Karaj, Iran.
Results: Analysis of variance revealed significant diversity among ecotypes for phenological traits (days to flowering and maturity), plant height, yield, and yield components (number of follicles per plant, number of seeds per follicle, and thousand-seed weight). Mean comparisons using Duncan's multiple range test (P ≤ 0.05) showed that the highest seed yield was recorded in ecotypes with the greatest longitudinal and transverse follicle diameters, highest number of follicles per plant, highest number of seeds per follicle, and highest thousand-seed weight. The lowest and highest seed yields belonged to ecotypes TN-82-191 (946 kg/ha) and TN-82-750 (1749 kg/ha), respectively, representing a 45.88% difference. Furthermore, ecotype TN-82-750 showed a 26.08% superiority over the average yield. Seed yield displayed a significant positive correlation with follicle length (r= 0.67), number of follicles per plant (r = 0.84), and number of seeds per follicle (r= 0.60). Cluster analysis grouped the ecotypes into three distinct classes. The first group contained late-flowering and late-maturing ecotypes with higher stem branch numbers, plant height, and follicle diameter. The second group exhibited the highest seed yield, which was possibly attributable to a longer seed-filling period (i.e., the interval between flowering and seed maturity). Factor analysis indicated that the first three factors accounted for 73.90% of the total variation, named as morpho-phenological traits factor, yield and yield components factor, and longitudinal growth index factor, respectively.
Conclusion: Ecotype TN-82-750 was identified as an early-maturing, high-yielding sample; TN-82-691, TN-59-224, and IPK as medium-maturing; and TN-59-254 as a late-maturing, high-yielding ecotype. These ecotypes can be recommended for different regions depending on available water and input conditions. Overall, a high potential for genetic diversity was observed among the ecotypes, which—given their native status and high adaptability—can serve as a valuable genetic resource in breeding programs.

Studying the single and combined effects of amino acid foliar spray and mycorrhizal fungi application on some biochemical properties of German chamomile (Matricaria chamomilla L.)

Pages 283-301

https://doi.org/10.22059/jci.2026.401899.2949

mehdi taheri asghari, Saiedeh Salavati, Seyed Reza Miralizadeh Fard

Abstract Objective: Chamomile (Matricaria genus, Asteraceae family) has been recognized as a significant medicinal plant since antiquity. Commonly known as chamomile, it is widely used in traditional medicine due to its proven anti-inflammatory and wound-healing properties. This experiment aimed to investigate the effects of foliar amino acid application and mycorrhizal fungal inoculation on the characteristics of German chamomile (Matricaria chamomilla L.).
Methods: A factorial experiment was conducted in a randomized complete block design with three replications during the 2021–2023 growing seasons at the Research Farm of Islamic Azad University, Takestan Branch, to examine the effects of amino acid foliar application and mycorrhizal inoculation on chlorophyll content and other traits of German chamomile. The first factor was mycorrhizal fungi at four levels (control (no inoculation), Funneliformis mosseaeFunneliformis etunicatum, and Rhizophagus irregularis), and the second factor was foliar application of the amino acid formulation Aminol Forte at four levels (control (no application), 0.2%, 0.3%, and 0.4%) applied at two growth stages: vegetative growth and flowering initiation. Measured traits included plant height, dry matter yield, chlorophyll a, chlorophyll b, total chlorophyll, and the content and yield of chamazulene, alpha-bisabolol, and bisabolol oxide A.
Results: Foliar application of Aminol Forte had a significant effect on plant height, chamazulene content and yield, and dry matter yield at the 1% probability level. Mycorrhizal inoculation significantly affected the chlorophyll a/b ratio, plant height, chamazulene content and yield, and dry matter yield at the 1% probability level. The interaction between foliar amino acid application and mycorrhizal inoculation was significant for bisabolol oxide A, alpha-bisabolol, total chlorophyll, and chlorophyll a at the 1% level, and for chlorophyll b at the 5% probability level.
Conclusions: Foliar amino acid application increased plant height, dry matter production, and chlorophyll content. Among the amino acid treatments, the 0.4% concentration was the most effective. Additionally, F. mosseae was more effective than the other mycorrhizal species, increasing chamazulene content by 11%. The two treatments likely acted synergistically: the combination of 0.4% amino acid foliar application and F. mosseae inoculation produced the highest levels of alpha-bisabolol and bisabolol oxide A—key components of German chamomile essential oil—increasing these compounds by 126% and 51%, respectively, compared to the control (no foliar application and no inoculation).

Grouping of cantaloupe lines and hybrids by Distinctness, Uniformity and Stability (DUS) testing

Pages 303-317

https://doi.org/10.22059/jci.2026.404517.2956

Mohammad Sajjad Yeganeh Amin, Mahmoud Lotfi, Hossein Ramshini, Babak Darvishi

Abstract Objective: Cantaloupe (Cucumis melo L.) is an important agricultural crop cultivated across many regions of Iran and holds a significant share in the Iranian household food basket. As part of a comprehensive breeding program at Aburaihan Campus, cantaloupe seed breeding has been ongoing for years with the aim of improving the agronomic and qualitative characteristics of this crop. This study sought to establish an identity card and determine the differentiation of 16 domestically produced hybrid cultivars along with their 14 parental lines through a detailed examination of morphological and phenotypic traits based on UPOV (International Union for the Protection of Plant Varieties) guidelines.
Methods: In this study, hybrid cantaloupes and their parental lines, together with six commercial control cultivars, were grown in a randomized complete block design with three replications and evaluated according to the DUS (Distinctness, Uniformity, and Stability) test protocol. Quantitative data were analyzed and ranked using cluster analysis, while qualitative data were analyzed and ranked using the Kruskal–Wallis test to determine genotypic differences and genetic diversity among the lines and hybrids.
Results: The lines and hybrids studied differed significantly from one another in terms of the evaluated traits, including flesh firmness, flesh color, cork density of the skin surface, groove depth, inflorescence location, fruit separation from the peduncle, and fruit shape. Cluster analysis revealed a strong parental effect on hybrid characteristics, and substantial genetic diversity was observed among cultivars and hybrids. Regarding fruit weight, hybrids H165, H148, and H152—with fruit weights exceeding 1.5 kg—outperformed all control cultivars and achieved a superior marketability position. In terms of soluble solids content, which indicates fruit sweetness, hybrids H167, H82, and H70 recorded values above 14°Brix, outperforming native control cultivars such as Samsuri and Saveh.
Conclusion: Hybrids H148 and H153 were identified as superior in terms of the combination of quantitative and qualitative characteristics. In addition to high yield, these hybrids exhibited desirable traits such as resistance to viral infections and excellent appearance and quality characteristics. These findings, along with the detailed description of the studied hybrids and lines, can serve as a foundation for future decisions regarding the development of new varieties and the breeding of cantaloupe in Iran and other similar regions

The effect of Cobalt, Molybdenum, and Nitrogen on morphophysiological characteristics of Phaseolus vulgaris in soilless culture

Articles in Press, Accepted Manuscript, Available Online from 17 November 2022

https://doi.org/10.22059/jci.2022.292101.2292

Nader Khadem Moghadam Igdelou, Ahmad Golchin, Khadije Farhadi

Abstract In order to study the effect of Cobalt, Molybdenum, and Nitrogen on the growth of Phaseolus vulgaris in soilless culture, a pot experiment was conducted in 2015-16 and in July, at 25˚C and light intensity of 40,000 lux as a factorial based on a CRD with 36 treatments and three replications in the greenhouse of Zanjan University. The test factors consisted of four levels of Nitrogen (50, 100, 150, and 200 mg/l), three levels of Molybdenum (0.067, 0.2, and 0.6 mg/l) and, three levels of Cobalt (0.006, 0.06, and 0.3 mg/l). Factor levels were prepared by adding ammonium nitrate, ammonium molybdate, and cobalt chloride to a stock solution. Results of morphological traits showed that the highest pod dry weight was obtained in N100Mo0.6Co0.06 treatment which had a maximum difference of 47.9% with other treatments. The highest dry weight of shoots was obtained from N150Mo0.6Co0.006 treatment and the highest root dry weight was obtained from N150Mo0.6 and N150Co0.3 treatments. Also, the highest number of pods was obtained in N150Mo0.6, N100Co0.3 and Mo0.6Co0.3 treatments with values of 235.2, 266.4, and 220.8 g/pot, respectively. Investigation of physiological traits showed that the highest concentrations of Nitrogen, Molybdenum, and Cobalt were obtained from N200Mo0.6Co0.3, N150Mo0.6Co0.3, and N150Mo0.067Co0.006 treatments, respectively. Overall, it can be stated that the application of N100Mo0.6Co0.06 treatment can positively affect the dry weight of pods, which are economically productive and improve the performance of P. vulgaris (Talash cultivar).

The effect of tillage systems on quantitative and qualitative forage yield and antioxidant enzyme activity in forage legumes

Articles in Press, Accepted Manuscript, Available Online from 04 November 2025

https://doi.org/10.22059/jci.2025.397326.2939

Niloofar Barati, Masoud Rafiee, Marjan Diyanat, Mohammad Reza Ardakani, Weria Weisany

Abstract Objective: In recent years, the use of conservation tillage methods has been widely considered in the world, and the use of conventional tillage methods has become outdate in some parts of the world. Conservation tillage systems are usually implemented in arid and semi-arid regions. In semi-arid regions, the key to increasing agricultural production is to maximize surface water infiltration. In addition, techniques that reduce evaporation from the soil and increase the amount of water available to plants during drought are very important. Therefore, an experiment was conducted in 2022-2023 and 2023-2024 to evaluate the effect of tillage systems on the quantitative and qualitative yield of forage and the activity of antioxidant enzymes in forage legumes. An experiment was conducted in the research farm of the Lorestan Agricultural and Natural Resources Research and Education Center Khorramabad city, in 2022-2023 and 2023-2024.
Methods This experiment was conducted in a split plot based on a randomized complete block design with three replications. Tillage methods (conventional, low-tillage, and no-tillage) were considered as the main factor and forage legumes (Broujerd landrace faba bean, Lamei cultivar vetch, Grass pea, Barakat and Feyz cultivar faba bean) were considered as secondary factors.
Results The results showed that the interaction effect of tillage system and forage legumes was significant on all measured traits except for quality parameters including digestible dry matter, crude protein, crude fiber, ash, water soluble carbohydrates and neutral detergent insoluble fiber was significant at the 1% level of error probability. The highest fresh forage yield (10671.52 and 10581.11 kg h-1), leaf dry weight (16.86 and 16.82 gr) and stem (20.46 and 20.42 gr) in conventional and reduced tillage systems were observed in the Lamei variety of vetch, while the dry forage yield (2820.91 and 2352.82 kg h-1) in conventional tillage systems was observed in the Lamei variety of vetch and the Barakat variety broad bean, and the catalase enzyme (54.09 OD micro gr protein min-1) in the conventional tillage systems was observed in the Lamei variety of vetch. A review of the changes in qualitative traits among forage legumes also showed that the highest digestible dry matter, ash, and crude protein were obtained from Lamei variety of vetch, and the highest water soluble carbohydrates, crude fiber and insoluble fiber were obtained from Barakat variety and Borujerd landrace broad bean.
Conclusion: According to the results, implementing a conventional and low-tillage system compared to a no-tillage system and planting the forage legume, the Laami variety of vetch, had a more beneficial effect on increasing yield characteristics, antioxidant enzyme activity, and forage quality traits.

Evaluation of forage quality and yield of Pennisetum glaucum, sorghum and maize plants under the influence of combined application of poultry and chemical fertilizers

Articles in Press, Accepted Manuscript, Available Online from 05 July 2026

https://doi.org/10.22059/jci.2026.403413.2954

Sara Darabi, Gholamreza Heidari, Peyman Salami

Abstract Objective: This experiment was conducted to evaluate the forage quality and yield of three forage plants: Pennisetum glaucum (Nutrifeed variety), maize (Single Cross 260), and sorghum (Speedfeed variety) under the influence of combined levels of poultry manure and chemical fertilizers with the aim of reducing the use of chemical fertilizers and improving the quantity and quality of forage.
Materials and Methods: This study was conducted over two growing seasons (2023–24 and 2024–25) using a split-plot design based on a randomized complete block design with three replications at the Research Farm of University of Kurdistan, Dehgolan. The main factor was the forage species (Pennisetum glaucum, sorghum and maize) and the sub-plot factor consisted of fertilization systems: control; 4 t.ha-1 poultry manure; 3 t.ha-1 poultry manure + 50 kg.ha-1 Nitrogen from urea + 25 kg.ha-1 phosphorus from triple superphosphate; 2 t.ha-1 poultry manure + 100 kg.ha-1 Nitrogen from urea +50 kg.ha-1 phosphorus from triple superphosphate; and full chemical fertilization (200 kg.ha-1 Nitrogen from urea + 100 kg.ha-1 phosphorus from triple superphosphate). Qualitative traits (water-soluble carbohydrates, crude fiber, crude protein, neutral detergent insoluble fiber, acid detergent insoluble fiber, and ash) and quantitative trait (biological yield) of forage were measured, and the data were analyzed with SAS version 9.4 software.
Results: The results showed that the highest water-soluble carbohydrate of forage in the treatment of complete chemical fertilizer and 100 kg/ha nitrogen fertilizer from urea source + 50 kg phosphate from triple superphosphate source was corn plant. The lowest crude fiber of forage was in the treatment of 2 tons/ha chicken manure + 100 kg/ha nitrogen fertilizer from urea source + 50 kg phosphate from triple superphosphate source of pearl millet, the highest crude protein of forage was in the treatment of 2 tons/ha chicken manure + 100 kg/ha nitrogen fertilizer from urea source + 50 kg phosphate from triple superphosphate source in corn plant, which had no statistically significant difference with the percentage of crude protein of forage in the treatment of 3 tons/ha chicken manure + 50 kg/ha nitrogen fertilizer from urea source + 25 kg phosphate from triple superphosphate source (14.06%). The highest amount of neutral detergent insoluble fibers was obtained in the treatment of applying 4 tons per hectare of poultry manure to pearl millet plants. The highest forage ash was related to the treatment of applying pure chemical fertilizer. Also, the application of 2 tons per hectare of poultry manure + 100 kg per hectare of nitrogen fertilizer from the urea source + 50 kg of phosphate from the triple superphosphate source resulted in the highest biological yield.
Conclusion: Combined fertilizer treatments (2 t.ha-1 of poultry manure + 100 kg.ha-1 of nitrogen fertilizer from urea source + 50 kg of phosphate from triple superphosphate source) resulted in significant improvement in forage quality and yield in corn as well as improvement in some quality indicators in Pennisetum glaucum and sorghum. Using poultry manure in combination with chemical fertilizer can reduce costs and environmental impacts, while maintaining or increasing crop productivity.

Assessment of Agronomic and Physiologic Responses of Safflower to Abscisic and Jasmonic Acid Application

Articles in Press, Accepted Manuscript, Available Online from 12 July 2026

https://doi.org/10.22059/jci.2026.410528.2973

Mehdi Joudi, Saeid Hakimi Khiav

Abstract Objective: In safflower, a considerable proportion of photosynthates remains in vegetative organs and is not efficiently translocated to developing grains. Moreover, the occurrence of high temperatures during pollination and seed filling markedly reduces the yield potential of the crop. Improving the partitioning of assimilates from vegetative to reproductive sinks may enhance safflower performance under unfavorable environmental conditions. The present study aimed to evaluate the effects of abscisic acid and jasmonic acid on remobilization of stored photoassimilates and grain yield of spring safflower.
Methods: The experiment was conducted at the research farm of the Faculty of Agriculture of Meshgin-Shahr during the 2024 growing season. A randomized complete block design with three replications was used. Experimental treatments included: 1) irrigated plants without hormone application as control, 2) rainfed plants without hormone application, 3) irrigated plants sprayed with abscisic acid, and 4) irrigated plants sprayed with jasmonic acid. Both hormones were applied after completion of pollination in three consecutive sprays. Traits were measured at three developmental stages, namely the beginning of capitulum formation before spraying, the onset of seed growth one week after the last spray, and physiological maturity.
Results: At the beginning of capitulum formation, plant height and total biomass were greater in irrigated than in rainfed plants. In most cases, the experimental treatments did not show significant differences at the early stage of seed growth. Evaluation at physiological maturity indicated that rainfed conditions and application of abscisic and jasmonic acids significantly reduced biomass, capitulum weight, and number of seeds per plant compared with the control. The highest amount of remobilization was observed in plants treated with jasmonic acid. The value of this trait in the abscisic acid treatment, rainfed plants, and the control ranked next, respectively. The greatest grain yield per plant and harvest index were obtained from the irrigated control without hormone spraying. Rainfed conditions as well as external application of abscisic and jasmonic acids significantly decreased grain yield in comparison with the control plants.
Conclusion: It appears that the effect of applying abscisic and jasmonic acids on reduction of current photosynthesis and production of assimilates was much greater than their role in enhancing remobilization and improving partitioning of photo-assimilates to grains. There is a possibility that the use of these hormones after the first half of grain filling, when current photosynthesis declines, may lead to higher remobilization and better grain yield. Further studies under diverse environments are recommended to confirm these findings and optimize application timing.

Influence of Nitrogen and Sulfur Application Rates on Photosynthetic Performance and Nitrogen Use Efficiency in Guar (Cyamopsis tetragonoloba L.)

Articles in Press, Accepted Manuscript, Available Online from 16 July 2026

https://doi.org/10.22059/jci.2026.410963.2977

Seyed Farhad Saberali, Sahar Sahar Kiani-Motlagh, Majid AghaAlikhani

Abstract Objective: Excessive nitrogen use causes severe economic and environmental problems. Therefore, developing sustainable cropping systems with high nitrogen use efficiency is essential. This study investigated the effects of nitrogen (N) and sulfur (S) fertilization on the photosynthetic characteristics, physiological responses, and nitrogen use efficiency (NUE) of guar (Cyamopsis tetragonoloba). The main goal was to determine the optimal fertilizer rates for sustainable production.
Methods: To evaluate the growth performance and nitrogen productivity of guar (Cyamopsis tetragonoloba), a field experiment was conducted during the 2024 growing season at the Research Farm of Tarbiat Modares University. We used a factorial arrangement based on a randomized complete block design with three replications. The treatments included four nitrogen rates (0,50,100,0, 50, 100,0,50,100, and 150 kg N ha−1 and two sulfur rates (0 and 100 kg S ha−1)
Results: Nitrogen application significantly influenced leaf area index, leaf greenness, photosynthetic rate, cumulative shoot nitrogen, agronomic and physiological nitrogen efficiency, nitrogen recovery, and grain yield. While the leaf area index and greenness of guar increased in response to nitrogen up to 100 kg/ha, higher application rates yielded no further significant changes. Leaf photosynthetic rate, however, continued to increase up to 150 kg/ha of applied nitrogen. Compared to the unfertilized control, nitrogen treatments increased cumulative shoot nitrogen 67.2 percent and the highest agronomic, recovery, and physiological nitrogen efficiencies were all recorded at the 100 kg/ha N rate. Grain yield also responded strongly to nitrogen, showing increases of 12.8%, 33.8%, and 16.9% at 50, 100, and 150 kg/ha, respectively. Regarding sulfur, its application boosted the photosynthetic rate by 25.9 percent during the grain-filling period; however, despite this physiological improvement, it did not significantly affect final grain yield (1203 kg/ha) compared to the untreated control (1235 kg/ha). The lack of significant effect of sulfur application on guar growth traits could be related to the adequacy of sulfur in the soil of the experimental site. Grain yield also strongly correlated with LAI (r=0.75), shoot nitrogen accumulation (r=0.73), leaf greenness (r=0.62), and photosynthetic rate (r=0.50). Overall, applying optimal nitrogen use management can not only increase fertilizer use efficiency while maintaining optimal yield, but also prevent nitrogen losses and environmental consequences resulting from excessive use of nitrogen fertilizers.
Conclusion: Overall, under the soil and climatic conditions of the study area, application of 100 kg N ha⁻¹ optimized seed yield while maximizing nitrogen use efficiency, suggesting that this rate represents a sustainable fertilization strategy that can improve fertilizer use patterns and reduce environmental risks associated with excessive nitrogen application.

Effect of cadmium on concentration of copper, iron, manganese and zinc in shoot of different cultivars of wheat

Volume 17, Issue 1, Spring 2015, Pages 27-41

https://doi.org/10.22059/jci.2015.54786

Iman Javad-zarrin, Babak Moteshare zade

Abstract The aim of this research was to evaluate the average concentrations of micronutrients including: Copper (Cu), Iron (Fe), Manganese (Mn) and Zinc (Zn) in the shoots of different cultivars of wheat in stem elongation stage in a soil contaminated with cadmium (Cd). The treatments consisted of three levels of Cd (0 (as control, Cd0), 40 (Cd40) and 80 (Cd80) mg Cd/kg soil) and fourteen different cultivars of wheat (‘Bahar’, ‘Alvand’, ‘Niknezhad’, ‘Pishtaz’, ‘Azadi’, ‘Shahriyar’, ‘Pishgam’, ‘Marvdasht’, ‘Parsi’, ‘Sivand’, ‘Shiraz’, ‘Omid’, ‘Roshan’ and ‘Navid’), respectively. The results showed the effect of Cd on concentrations of micronutrients were highly significant. Cu concentration was decreased in shoot of all studied cultivars, as levels of Cd were increased. Except two cultivars (‘Pishgam’ and ‘Omid’) which showed an increase in Fe concentration in Cd40 comparing with control, Fe concentration was decreased in other cultivars. Most and least Cd concentration in Cd40 was recorded by Niknezhad (7 mg/kg DW) and Parsi (2 mg/kg DW), respectively. Also, most and least Cd concentration in Cd80 was observed in ‘Pishgam’ (20 mg/kg DW) and ‘Navid’ (6 mg/kg DW). Generally, ‘Niknezhad’ and ‘Pishgam’ had the highest reliability of cadmium uptake. Also the lowest reliability of cadmium uptake was observed about ‘Parsi’ and ‘Navid’.

A study on physiological attributes and grain yield of sesame cultivars under different soil moisture regimes

Volume 13, Issue 2, Winter 2012, Pages 75-88

Zahra Mehrabi zadeh, Parviz Ehsan Zade

Abstract Sesame could be an appropriate oilseed crop for water limited environments. This research was aimed at studying growth, leaf chlorophyll fluorescence, proline content, yield and yield components of sesame cultivars under different moisture regimes. A 4-replicate split plot RCBD field experiment was conducted at the Lavark Research Farm, College of Agriculture, Isfahan University of Technology, Isfahan, Iran in 2007. Three levels of irrigation consisting I1 = control (no water deficit), I2 = moderate water deficit and I3 = severe water deficit, representing irrigation after 75, 110 and 145 mm evaporation from the standard Class A Pan, respectively, served as main plots. Four sesame genotypes consisting ‘Non Branching Naz’, ‘Yekta’, ‘Varamin’ and ‘Oltan’ were considered as sub plots. Irrigation regimes and cultivars differed in terms of Fm at grain filling stage, though they did not differ in terms of leaf chlorophyll content and Fv/Fm. The latter trait decreased non-significantly from 0.81 at the I1 to 0.77 at the I3 level of irrigation. Leaf proline content increased from 3.5 at I1 to 8.6 mgg-1 at the I3 level of irrigation. Severe water deficit decreased LAI, pod/plant, seed/pod, grain yield and dry matter by 55, 42, 37, 48 and 49 percent, respectively. Severe water deficit led to a significant decrease in grain yield from 1212 to 625 kg/ha. It seems that water deficit affects sesame growth and grain yield significantly and this negative effect is mainly through a reduction in the photosynthetic surfaces, rather than a decrease in the maximum of quantum efficiency for photosystem II of the present genotypes. Yekta and Varamin sesame were more productive compared to the rest of cultivars.

Evaluation of Seed Yield and Oil Content of 40 Camelina (Camelina sativa L.) Doubled Haploid Lines

Volume 24, Issue 2, Spring 2022, Pages 497-509

https://doi.org/10.22059/jci.2021.331945.2622

Marjanossadat Hosseinifard, Majid Ghorbani Javid, Elias Soltani, Iraj Allah dadi, Danial Kahrizi

Abstract In order to evaluate the yield components, seed yield, and oil content of Camelina doubled haploid lines, an experiment has been conducted based on a randomized complete block design with 40 doubled haploid lines (as treatments) and three replications in the research farm of College of Aburaihan- the University of Tehran, Pakdasht during 2020. Since the yield characteristics and oil content of Camelina lines are unknown in the Iranian climate, the study investigates seed yield components, as well as oil yield and oil content of 40 Camelina lines. The results show a very significant difference between Camelina lines in terms of yield components, which ultimately leads to significant differences in grain yield, thus affecting the grain oil yield. Although none of the lines has had absolute superiority in all components of grain yield, in terms of final grain yield, line of 134 with 3178 and line of 110 with 3120 kg/ha are identified as superior lines. Therefore, according to the purpose of this study, in order to select the best Camelina line with maximum grain and oil yield, 134 and 110 lines are introduced and recommended as superior and promising lines that are compatible with the climatic conditions of the Pakdasht region.  

Effect of some chemical treatments on postharvest quality and vase life of gerbera cut flowers (Gerbera jamesonii cv. Good Timing)

Volume 13, Issue 1, Summer 2011, Pages 21-29

Elham Danaie, Younes Mostofi, Pejman Moradi, Reza Azizi nejad

Abstract The effect of gibberelic acid (GA3) and ethanol on the postharvest quality and vase life of gerbera cut flowers was investigated. Freshly cut flower stems of gerbera cultivar ‘Good timing’, were put in vases containing zero, 50, 100, 150, 200 or 300 mgL-1 GA3 for 48 hr and then held in vases containing 2.5 percent ethanol and three percent sucrose in two methods. In the first method, the vase solutions were not replaced but in the second method, the vase solutions replaced and refreshed when solution uptake was measured. The vase was placed in chambers at 25°C and relative humidity about 70 percent with 14 hr photoperiod that was maintained using fluorescent lamps (light intensity of 15 µmolm-2s-1). Data were recorded for vase life, fresh weight, solution uptake, membrane stability, total soluble solid over time and analyzed statistically. Results revealed that GA3 with 50 mgL-1 was the most effective treatments for vase life, fresh weight, solution uptake, membrane stability and total soluble solid of gerbera cut flowers. Also results show that application of ethanol in second method (refreshing) was better than application in the first method as constant vase solution.

Phenolic compounds and antioxidant activity of some Iranian and commercial apple varieties in West Azarbaijan province

Volume 14, Issue 2, Winter 2013, Pages 43-55

https://doi.org/10.22059/jci.2013.29500

Maryam Rafiee, Lotfali Naseri, Davoud Bakhshi, Asad Alizadeh

Abstract In this study, the amount of total phenol, chlorogenic acid, catechin, quercetin, phloridzin, cyanidin and antioxidant activity of apple (Malus domestica) skin and flesh of six Iranian cultivars, including: ‘Golab Kohanz’, ‘Sib Torsh Dirras’, ‘Ghara Yapragh’, ‘Torkman’, ‘Ghezel Alma’ and ‘Abbasi Mashhad’, and four commercial cultivars including: ‘Golden Delicious’, ‘Red Delicious’, ‘Braeburn’ and ‘Fuji’ was investigated. ‘Fuji’ had the highest amount of cyanidin 3-galactoside (3711.9 µg.g-1 fresh weight) and ‘Golab Kohanz’ had the greatest amount of quercetin 3-galactoside (3133.8 µg.g-1 fresh weight) and phloridzin in the skin (642.2 µg.g-1 fresh weight) and ‘Ghara Yapragh’ showed the greatest amount of flesh phloridzin (98.1 µg.g-1 fresh weight). ‘Abbasi Mashhad’ had the largest amount of flesh (484.3 µg.g-1 fresh weight) and the skin's (298.1 µg.g-1 fresh weight) chlorogenic acid, ‘Ghezel Alma’ had the greatest amount of catechin of skin (255.2 µg.g-1 fresh weight) and ‘Sib Torsh Dirras’ showed the highest catechin of flesh (76.9 µg.g-1 fresh weight). The regression analysis of total phenol and antioxidant capacity showed a positive correlation between the amount of total phenol and the antioxidant activity. The highest amount of total phenol and antioxidant activity in ‘Fuji’ was observed.

Study on Enzymatic Activity and Biochemical Responses of Two Citrus Rootstocks to in vitro Salinity Stress

Volume 15, Issue 4, Winter 2014, Pages 165-177

https://doi.org/10.22059/jci.2013.51374

Fariborz Habibi, Mohammad Esmaeil Amiri

Abstract Enzymaticactivity and biochemical responsesof two citrus rootstocks [sour orange (Citrus aurantium L.) and trifoliate orange (Poncirus trifoliata Raf.)] to in vitro salinitystress were studied. Explants of both rootstocks were transferred to Murashige and Skoog (MS) solid proliferation medium containing 8.9 µM Benzyladenine (BA) and 0.5 µM Naphthaline Acetic Acid (NAA) supplemented with 0, 50, 100, 150, 200 mM of sodium chloride (NaCl) with six replicates. After six weeks, results showed that, rootstock, salinity levels and their interaction, had a significant effect on all of the measured parameters. Antioxidant enzymes activity such as: catalase, peroxidase, ascorbate peroxidase, proline content, soluble sugars and malondialdehyde (MDA) content increased in both rootstocks by increasing salinity level. The amounts of increasing in sour orange rootstock were greater than trifoliate orange, except for peroxidase enzyme and MDA. Total protein content decreased by increasing salinity level in both rootstocks. Sour orange rootstock has higher total protein content than trifoliate orange. According to the results, sour orange rootstock was more tolerant to salt stress.

Study of adaptability and grain yield stability of wheat cultivars in cold and moderate-cold climate of Iran

Volume 13, Issue 2, Winter 2012, Pages 41-49

Masuod Bakhshayeshi Geshlagh

Abstract In order to study adapatability and yield stability of irrigated bread wheat cultivars Alvand, Alamout, Zarrin, Navid, Azar 2, Sabalan, Omid and Bezostiya this experiment was conducted in RCBD during three cropping seasons (2007-2010) in six cities. Simple ANOVA and combined analysis of variance for three years in every location and also combined analysis of variance for three years and six locations were implemented. Lin and Binns parameter, environmental variance, Rick Ecovalance method and Shukla stability variance were used for determination of stable cultivars. Results of combined ANOVA (three years × six locations) showed that interaction effect of year × location × genotype was significant. The highest and lowest grain yield belonged to Alvand (3/74 tha1) and Azar 2 (2/72 tha1) cultivars. Results of stability analysis with Lin and Binns method showed that Zarrin cultivar had the lowest inside location variance for grain yield and the lowest environmental variance belonged to Azar 2 cultivar. Results of stability analysis with Shukla Stability variance method showed that Zarrin and Sabalan cultivars had the lowest Shukla stability variance, respectively. Also results of Rick Ecovalance method showed that Zarrin cultivar had the highest amount for this parameter. Zarrin and Sabalan cultivars had the lowest yield stability and can be recommended for studied locations.

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