FORMING SOYBEAN PRODUCTIVITY UPON SEED PRE-TREATMENT WITH FUNGICIDES STANDAK TOP AND FEVER AND INOCULATION WITH RHIZOBIA ON THE DAY OF SOWING

Kots S. Ya., Kyrychenko O. V., Pavlyshche A. V., Yakymchuk R. A.
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Abstract

Soybean grain productivity is largely due to a complex of factors, in particular, the efficiency of symbiotic systems formed with nodule bacteria, the activity of growth processes and the formation of vegetative and generative organs by plants, as well as their adaptive plasticity under various environmental factors. The article presents the results of studying the peculiarities of the formation of soybean plant productivity upon seed pre-treatment with fungicides of different classes and inoculation with nodule bacteria on the day of sowing. Objective. To study the dynamics of seed germination, formation of vegetative and generative organs and soybean harvest, functioning of soybean-rhizobial symbiosis, as well as the state of photosynthetic pigment system — content of chlorophyll a and b and carotenoids in the leaves upon seed pre-treatment with fungicides Fever and Standak Top and bacterization with Bradyrhizobium japonicum 634b on the day of sowing. Methods. Microbiological, physiological, biochemical, statistical. Results. Fungicides did not exert toxicity in terms of seed germination, and soybean seed germination under the action of Fever exceeded parameters in the control plants by 20 % (at Day 5 after sowing) and by 7 % (at Day 8). It has been shown that fungicides increased plant height, aboveground mass and accelerated the formation of generative organs (flowers) by plants but did not significantly affect root mass. It was found that fungicides had a pronounced toxic (inhibitory) effect on soybean-rhizobial symbiosis upon seed pre-treatment: the process of nodule formation was suppressed in the initial stages of symbiosis, nitrogen fixation activity was lower than in the control plants by 80–48 % depending on soybean development phase. Thus, the effect of fungicides Fever and Standak Top upon seed pretreatment and inoculation with nodule bacteria on the day of sowing was characterized by significant suppression of functional activity of the symbiotic apparatus in the first half of soybean vegetation and its gradual recovery during formation of generative organs. Although fungicides inhibit the formation and functioning of legume-rhizobial symbiosis but their positive effect on the plant itself (seed germination, plant height, aboveground mass accumulation, dynamics of generative organ formation), as well as the ability of plants to adapt to stress at the biochemical level (stabilization of the content of photosynthetic pigments in the leaves) allowed to form a crop of soybean seeds at or slightly above the level of control. Conclusion. Physiological and biochemical features of the reaction of soybean-rhizobial symbiosis to the action of different fungicides that we had established must be taken into account in developing new strategies to protect plants from pathogens of various aetiologies with the involvement of physiologically active substances having fungicidal activity in combination with inoculation.
播种当天用杀菌剂、立顶剂和发热剂进行种子预处理,接种根瘤菌,形成大豆生产能力
大豆籽粒产量在很大程度上是由复杂的因素决定的,特别是与结瘤菌形成共生系统的效率,植物生长过程和营养生殖器官形成的活性,以及它们在各种环境因素下的适应可塑性。本文介绍了不同种类杀菌剂对大豆种子进行预处理和播种当天接种根瘤菌对大豆植株生产力形成特点的研究结果。目标。研究播后用杀菌剂Fever和Standak Top对种子进行预处理,用缓生根瘤菌634b对种子进行杀菌处理后的种子萌发动态、营养生殖器官的形成及大豆收获动态、大豆与根瘤菌共生功能、光合色素系统状态——叶片叶绿素a、b和类胡萝卜素含量。方法。微生物学,生理学,生化学,统计学。结果。杀菌剂对种子萌发没有影响,在热作用下的大豆种子萌发比对照植株的参数高20%(播后第5天)和7%(播后第8天)。研究表明,杀菌剂增加了植株的株高、地上质量,加速了植物生殖器官(花)的形成,但对根系质量没有显著影响。经种子预处理,发现杀菌剂对大豆与根瘤菌的共生有明显的毒(抑)作用:在共生初期抑制根瘤形成过程,固氮活性根据大豆发育阶段的不同比对照低80 - 48%。因此,杀菌剂Fever和Standak Top对播种当天种子预处理和接种根瘤菌的影响表现为显著抑制大豆植被前半期共生器官的功能活性,并在生殖器官形成过程中逐渐恢复。虽然杀菌剂抑制了豆科植物与根瘤菌共生的形成和功能,但它们对植物本身的积极作用(种子萌发、株高、地上质量积累、生殖器官形成的动态),以及植物在生化水平上对胁迫的适应能力(叶片光合色素含量的稳定),使大豆种子的产量达到或略高于对照水平。结论。大豆-根瘤菌共生对不同杀菌剂作用反应的生理生化特征,必须考虑到我们所建立的具有杀真菌活性的生理活性物质与接种相结合的新策略,以保护植物免受各种病因的病原体的侵害。
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