新型中根瘤菌菌种的共生效率和细胞分裂素活性

Q4 Biochemistry, Genetics and Molecular Biology
O. Lohosha, Yu. О. Vorobei, N. Leonova
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引用次数: 0

摘要

结瘤菌是豆科植物的微共生菌,其引入效率在很大程度上取决于重氮营养菌生物合成活性物质的活性。利用能够合成促生活性外代谢产物的有效根瘤菌对种子进行杀菌,不仅促进了共生关系的形成和功能,而且为提高植物对不利环境条件的抗性创造了条件。研究了鹰嘴豆根瘤菌新菌株的共生活性、生物合成细胞分裂素类植物激素外代谢产物的效率和能力。方法。微生物学,生理学,细胞学,生物化学和物理化学。结果。新菌株ND-101和ND-64具有不同的共生活性。麦氏中根瘤菌ND-101菌悬液接种鹰嘴豆种子的效果与工业菌株H-12相同。相对于阳性对照(接种环根瘤菌H-12),经环根瘤菌ND-64处理的鹰嘴豆根瘤增加69%,根瘤重增加74%,氮酶活性增加73%,鹰嘴豆产量增加22%。结果表明,环孢中根菌ND-64菌株的细胞分裂素活性最高。在全干生物量培养基中检测到细胞分裂素的总量为174.94 μg/g,比ND-101菌株高53%,比H-12菌株高99%。结论。ciceri中根瘤菌ND-64菌株具有较高的固氮活性和共生效率,能够合成较多的胞外细胞分裂素。高浓度的细胞分裂素表明它们在根瘤的形成和功能中起着重要作用,因为它们刺激根组织的增殖,从而对鹰嘴豆的产量产生积极影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Symbiotic Efficiency and Cytokinin Activity of New Mesorhizobium cicerі Strains
The efficiency of the introduction of nodule bacteria, microsymbionts of legumes in agrocenoses, largely depends on the activity of biologically active substances’ biosynthesis by diazotrophs. Seed bacterization with effective rhizobia strains capable of synthesizing exometabolites for phytostimulating activity not only promotes the formation and functioning of symbiosis but also creates the conditions for increasing plant resistance to adverse environmental conditions. The aim of the work was to research the symbiotic activity, efficiency and ability of chickpea rhizobia new strains to biosynthesize phytohormonal exometabolites of cytokinin nature. Methods. Microbiological, physiological, cytological, biochemical, and physicochemical. Results. New strains of Mesorhizobium ciceri ND-101 and Mesorhizobium ciceri ND-64 were shown to have different symbiotic activity. The efficiency of inoculation of Skarb chickpea seeds with bacterial suspension of Mesorhizobiu mciceri ND-101 was at the same level with the industrial strain of Mesorhizobium ciceri H-12. Bacterization of Mesorhizobium ciceri ND-64 increased the chickpea roots nodules by 69%, their weight by 74%, and nitrogenase activity by 73% relative to the positive control (inoculation with Mesorhizobium ciceri H-12), as well as increased chickpeas yield by 22%. It was established that Mesorhizobium ciceri ND-64 strain exhibits the highest cytokinin activity in the bioassay. Cytokinins in the total amount of 174.94 μg/g of completely dry biomass were detected in the culture medium of Mesorhizobium ciceri ND-64, which is 53% higher than that of Mesorhizobium ciceri ND-101 strain and 99% higher than that of Mesorhizobium ciceri H-12 strain. Conclusions. Mesorhizobium ciceri ND-64 strain with high nitrogen-fixing activity and symbiotic efficiency is capable to synthesize a relatively high amount of extracellular cytokinins. The high concentration of cytokinins indicates their important role in the formation and functioning of nodules, as they stimulate the proliferation of root tissues and, in this way, have a positive effect on the chickpea productivity.
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来源期刊
Mikrobiolohichnyi zhurnal
Mikrobiolohichnyi zhurnal Medicine-Microbiology (medical)
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0.70
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