Viability of Nodule Bacteria Bradyrhizobium japonicummon Soybean Seeds by Treatment With Fungicides During Extended Storage

N. Vorobey, K. Kukol, S. Kots, P. Pukhtaievych, Volodymyr Patyka
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Abstract

Background. With the increase in soybean cultivation areas, inoculants are becoming increasingly sought after. They are not only compatible with the original preparations for seed treatment of soybean but also offer the possibility of applying them for several days or even months before sowing into the soil. Objective. The viability of new strains of nodule bacteria Bradyrhizobium japonicum (strain PC07 and strain B78) was investigated on the surface of soybean seeds treated with fungicides Fever and Maxim XL during the extended storage of inoculated seeds. Additionally, their ability for nitrogen fixation under symbiotic conditions was evaluated. Methods. Сultivation, serial dilution method, determination of bacterial titer of inoculants, quantification of colony forming units (CFU), gas chromatography. Results. In laboratory conditions, on the soybean seeds of Almaz and Vasylkivska varieties, the viability of the nodule bacteria B. japonicum PC07 and B78, which are more resistant to the active substances of these fungicides in pure culture, decreased. This reduction was dependent on the storage period, the fungicide used, and the strain of inoculant. One day after inoculation on the seeds without the use of fungicide, 68.6–75.4% CFU of the initial number was retained. Seeds treated with the fungicide Fever contained 36.5–38.3% CFU, and those treated with Maxim XL contained 26.2–27.0% CFU. The use of inoculants based on fungicide-resistant strains of B. japonicum PC07 and B78 also provided high cell viability – 2.41–2.8×106 (on the seeds without treatment), 1.40–1.70×106 (with Fever) and 0.8–1.17×106 (with Maxim XL) CFU/seed after 5 days of storage. The nitrogen-fixing activity of root nodules in soybean plants of Almaz and Vasylkivska varieties, whose seeds were treated with Fever, decreased on both varieties by 18.4–22.4% and 32.1–39.5%, respectively and for treatment with Maxim XL, the reduction was 24.5–33.7% and 47.7–75.2%, respectively, during the storage of seeds for 5 and 7 days before sowing, compared to control variants (seeds without fungicide treatment). Conclusions. The utilization of fungicide-resistant strains of B. japonicum PC07 and B78 for bacterization of soybean seeds treated with fungicides Fever and Maxim XL provides a high inoculation titer during 5 days of storage. Viability of microbial cells on seeds treated with fungicides significantly diminishes during storage for more than 7–14 days. Insufficient titer of CFU of B. japonicum strains PC07 and B78 on the seed surface after 14 days of storage can considerably impede the efficacy of biopreparations. Therefore, it is crucial to seek substances that can enhance the resistance of rhizobia on seeds to the adverse effects of fungicide seed treatment, ensuring a longer period of their viability.
用杀菌剂处理长期储存的大豆种子后,大豆根瘤菌的活力
背景。随着大豆种植面积的增加,接种剂越来越受到人们的青睐。它们不仅与大豆种子处理的原始制剂兼容,而且还可以在播种前几天甚至几个月将其施用到土壤中。目标在接种种子的长期储存过程中,研究了用杀菌剂 Fever 和 Maxim XL 处理过的大豆种子表面 Bradyrhizobium japonicum(菌株 PC07 和菌株 B78)新菌株的活力。此外,还评估了它们在共生条件下的固氮能力。方法培养、系列稀释法、接种物细菌滴度测定、菌落形成单位(CFU)定量、气相色谱法。结果在实验室条件下,在 Almaz 和 Vasylkivska 品种的大豆种子上,纯培养物中对这些杀菌剂活性物质具有较强抗性的日本节杆菌 PC07 和 B78 的活力下降。这种降低与储存时间、使用的杀菌剂和接种菌株有关。在未使用杀真菌剂的种子上接种一天后,CFU 保留了最初数量的 68.6-75.4%。用杀菌剂 Fever 处理过的种子含有 36.5%-38.3% 的 CFU,用 Maxim XL 处理过的种子含有 26.2%-27.0% 的 CFU。使用基于抗杀菌剂菌株 PC07 和 B78 的接种剂也能提供较高的细胞活力--贮藏 5 天后,细胞活力分别为 2.41-2.8×106(未经处理的种子)、1.40-1.70×106(使用 Fever)和 0.8-1.17×106(使用 Maxim XL)CFU/种子。与对照变种(未使用杀菌剂处理的种子)相比,使用 Fever 处理的 Almaz 和 Vasylkivska 大豆品种的种子在播种前 5 天和 7 天的储藏期间,其根瘤固氮活性分别降低了 18.4-22.4% 和 32.1-39.5%,而使用 Maxim XL 处理的种子则分别降低了 24.5-33.7% 和 47.7-75.2%。结论利用抗杀菌剂的日本酵母菌 PC07 和 B78 菌株对经过杀菌剂 Fever 和 Maxim XL 处理的大豆种子进行杀菌,可在 5 天的储存期间提供较高的接种滴度。经杀菌剂处理过的种子在储藏 7-14 天后,微生物细胞的活力会明显降低。贮藏 14 天后,种子表面的日本疫霉菌株 PC07 和 B78 的 CFU 滴度不足,会严重影响生物制剂的功效。因此,寻找能增强种子上根瘤菌对杀真菌剂种子处理不利影响的抵抗力的物质,确保延长其存活期至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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