Academic literature on the topic 'Phytohormones' soybean'

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Journal articles on the topic "Phytohormones' soybean"

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Yates-Stewart, Ashley D., Adrian Pekarcik, Andy Michel, and Joshua J. Blakeslee. "Jasmonic Acid-Isoleucine (JA-Ile) Is Involved in the Host-Plant Resistance Mechanism Against the Soybean Aphid (Hemiptera: Aphididae)." Journal of Economic Entomology 113, no. 6 (2020): 2972–78. http://dx.doi.org/10.1093/jee/toaa221.

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Abstract Host-plant resistance (HPR) is an important tool for pest management, affording both economic and environmental benefits. The mechanisms of aphid resistance in soybean are not well understood, but likely involve the induction of the jasmonic acid (JA) pathway, and possibly other phytohormone signals involved in plant defense responses. Despite the efficacy of aphid resistance in soybean, virulent aphids have overcome this resistance through mostly unknown mechanisms. Here, we have used metabolomic tools to define the role of plant phytohormones, especially the JA pathway, in regulatin
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Qiao, Zhenzhen, Prince Zogli, and Marc Libault. "Plant Hormones Differentially Control the Sub-Cellular Localization of Plasma Membrane Microdomains during the Early Stage of Soybean Nodulation." Genes 10, no. 12 (2019): 1012. http://dx.doi.org/10.3390/genes10121012.

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Phytohormones regulate the mutualistic symbiotic interaction between legumes and rhizobia, nitrogen-fixing soil bacteria, notably by controlling the formation of the infection thread in the root hair (RH). At the cellular level, the formation of the infection thread is promoted by the translocation of plasma membrane microdomains at the tip of the RH. We hypothesize that phytohormones regulate the translocation of plasma membrane microdomains to regulate infection thread formation. Accordingly, we treated with hormone and hormone inhibitors transgenic soybean roots expressing fusions between t
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Daminova, Anisa, and Adylya Sibgatullova. "GROWTH REGULATORS THAT INCREASE SOYAN PRODUCTIVITY." Agrobiotechnologies and digital farming 2, no. 3 (2023): 12–17. http://dx.doi.org/10.12737/2782-490x-2023-12-17.

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Plant growth regulators have a wide spectrum of physiological activity. Thanks to their action, resistance of soybean plants to adverse environmental factors, diseases, growth, development and quality is observed. Soy is the most widely used oilseed in the world. The world annual production of soybeans exceeds 260 million tons. It is the main edible plant and the main source of vegetable protein worldwide.The global demand for soybeans is constantly growing as its seeds provide essential proteins, oils and nutraceuticals. In an effort to meet the increased demand for this crop, it has become n
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Shaffique, Shifa, Sang-Mo Kang, Md Injamum Ul Hoque, Muhamad Imran, Muhamad Aaqil khan, and In-Jung Lee. "Research Progress in Soybean by Phytohormone Modulation and Metal Chelation over the Past Decade." Agriculture 13, no. 7 (2023): 1325. http://dx.doi.org/10.3390/agriculture13071325.

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Phytohormones have been acknowledged as an eco-friendly and alternative source for plant growth promotion and abiotic stress tolerance. Heavy metal stress has attained considerable attention worldwide because of its serious effects. Globally, it is a major cause of crop yield loss. Soybean is an important legume crop that continuously faces environmental stress, such as heavy metal stress. The application of plant growth regulators, such as phytohormones, enhances plant tolerance toward heavy metals. Phytohormones augment the interaction with plants. They improve plant productivity under stres
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Kozar, S. F. "PRODUCTION OF PHYTOHORMONES OF BRADYRHIZOBIUM JAPONICUM AND AZOSPIRILLUM BRASILENSE UNDER THEIR SIMULTANEOUS CULTIVATION." Agriciltural microbiology 28 (July 10, 2018): 33–40. http://dx.doi.org/10.35868/1997-3004.28.33-40.

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Objective. Investigate the activity of biosynthesis of phytohormonal substances with nitrogen-fixing bacteria Bradyrhizobium japonicum and Azospirillum brasilense in pure and mixed culture.
 Methods. Microbiological, chromatographic, and mathematical.
 Results It has been established that the simultaneous cultivation of B. japonicum M-8 and A. brasilense 410 increases the content of gibberellins and cytokinins in the culture fluid of the test microorganisms. The content of gibberellic acid and isopentenylidene has increased most intensively in mixed culture compared with the pure cul
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Derevyanchuk, Michael, Serhii Kretynin, Yaroslava Bukhonska, et al. "Influence of Exogenous 24-Epicasterone on the Hormonal Status of Soybean Plants." Plants 12, no. 20 (2023): 3586. http://dx.doi.org/10.3390/plants12203586.

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Brassinosteroids (BRs) are key phytohormones involved in the regulation of major processes of cell metabolism that guide plant growth. In the past decades, new evidence has made it clear that BRs also play a key role in the orchestration of plant responses to many abiotic and biotic stresses. In the present work, we analyzed the impact of foliar treatment with 24-epicastasterone (ECS) on the endogenous content of major phytohormones (auxins, salicylic acid, jasmonic acid, and abscisic acid) and their intermediates in soybean leaves 7 days following the treatment. Changes in the endogenous cont
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Zhao, Xiaorui, Chunhai Mai, Lintao Xia, et al. "Molecular Insights into the Positive Role of Soybean Nodulation by GmWRKY17." International Journal of Molecular Sciences 26, no. 7 (2025): 2965. https://doi.org/10.3390/ijms26072965.

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Soybean is an important economic oilseed crop, being rich in protein and plant oil, it is widely cultivated around the world. Soybeans have been shown to establish a symbiotic nitrogen fixation (SNF) with their compatible rhizobia, resulting in the formation of nodules. Previous studies have demonstrated the critical roles of phytohormones, such as abscisic acid and cytokinin, in the process of legume nodulation. The present study investigated the role of GmWRKY17, a homolog of Rosa hybrida (Rh)WRKY13 in regulating plant immunity through cytokinin content and abscisic acid signaling in soybean
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L., A. Chaikovskaya, and I. Baranskaya M. "The Mechanism of Action of Rhizobacteria Enterobacter nimipressuralis 32-3 on the Mineral Nutrition and Productivity of Soybean." Annual Research & Review in Biology 14, no. 5 (2017): 1–6. https://doi.org/10.9734/ARRB/2017/33934.

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The aim of the research was to study the mechanism of action of soil rhizobacteria <em>E. nimipressuralis </em>32-3 on the elements of mineral nutrition of soybean (сontent of N and Р<sub>2</sub>О<sub>5 </sub>in shoot, productivity of plants), qualitative and quantitative content of phytohormones in cultural liquid of this strain. Pot experiments were carried out in greenhouse during two seasons (2014 and 2015) to evaluate the influence of the strain <em>Enterobacter nimipressuralis 32-3</em> on the growth, productivity of soybean (cultivar Krepysh) and accumulation Р<sub>2</sub>О<sub>5</sub>,
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Monpara, J. K., K. S. Chudasama, and V. S. Thaker. "Role of Phytohormones in Soybean (Glycine max) Seed Development." Russian Journal of Plant Physiology 66, no. 6 (2019): 992–98. http://dx.doi.org/10.1134/s1021443719060098.

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Komok, M. S., S. B. Dimova, and V. V. Volkogon. "OPTIMIZATION OF PHYTOHORMONES CONTENTS IN COMPLEX BIOPREPARATION RHIZOHUMIN." Agriciltural microbiology 12 (March 22, 2011): 27–36. http://dx.doi.org/10.35868/1997-3004.12.27-36.

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By application of the ELISA method the content of indolylacetic acid and cytokinins in the extracts of vermicompost and bacterial suspension of Bradyrhizobium japonicum M 8 (components of complex biopreparation Rhizohumin) was determined. Basing on the data obtained in the greenhouse experiments with soybean plants, the recommendations for content of these phytohormones in the preparation optimization was done.
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Book chapters on the topic "Phytohormones' soybean"

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Kubowicz, Dorota. "Phytohormones and calmodulin inhibitor in elongation growth of soybean hypocotyl segments." In Progress in Plant Growth Regulation. Springer Netherlands, 1992. http://dx.doi.org/10.1007/978-94-011-2458-4_85.

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Conference papers on the topic "Phytohormones' soybean"

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Guedes, Marcos Vinicius Paladin, Júlia Bibiani Fidêncio, Letícia Rampo, Willian de Araújo Lima, and Emmanuel Zullo Godinho. "Practical class experience report: Use of soybean phytohormone in herb germination – Basil." In VI Seven International Multidisciplinary Congress. Seven Congress, 2024. http://dx.doi.org/10.56238/sevenvimulti2024-086.

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Basil is a medicinal herb that has been cultivated since ancient times. It also has medicinal, antibacterial, antioxidant, and antispasmodic properties. It is good for the digestive system, insect bites, and bad breath. It is also very useful in the food industry. Oilseed phytohormones are essential compounds (hormones) that regulate plant growth and development. The main phytohormones include auxins, gibberellins, cytokinins, abscisic acid, and ethylene, each of which plays a specific role. Therefore, the objective of this study was to evaluate the germination of basil using different doses o
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"Role of phytohormones signaling pathways in soybean and C. sojina interaction." In Plant Health 2024. American Phytopathological Society, 2024. http://dx.doi.org/10.1094/aps-ph24-274.

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Tavakolan, Mona, and Nadim W. Alkharouf. "Data mining of genomic data generated from soybean treated with different phytohormones." In 2016 IEEE 14th International Conference on Software Engineering Research, Management and Applications (SERA). IEEE, 2016. http://dx.doi.org/10.1109/sera.2016.7516128.

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Chayka, T. O. "BIOLOGIZATION OF SOYBEAN GROWING TECHNOLOGY: THE ROLE OF INOCULATION, PHYTOHORMONAL REGULATION AND MYCORRHIZOLOGY." In FOOD SECURITY OF UKRAINE IN THE CONDITIONS OF POST-WAR RECOVERY: GLOBAL AND NATIONAL DIMENSIONS. MYKOLAIV NATIONAL AGRARIAN UNIVERSITY, 2025. https://doi.org/10.31521/978-617-7149-86-5-61.

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The article addresses current issues in the biologization of soybean cultivation technology under climate change conditions and the growing demand for organic products. The study examines the role of pre-sowing inoculation, phytohormonal regulation, and the use of arbuscular mycorrhizal fungi as an alternative fertilization system that meets the requirements of organic farming. The proposed biological approaches optimize soybean cultivation processes within organic farming systems, which is particularly relevant for Ukraine as one of the leading suppliers of organic soybeans to the EU market.
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