Gao Peixin, Qi Kai, Han Yujuan, Ma Liguo, Zhang Bo, Zhang Yueli, Guan Xiumin, Qi Junshan
Shandong Key Laboratory of Plant Virology, Institution of Plant Protection, Shandong Academy of Agricultural Sciences, Jinan, China.
Institute of Vegetables, Shandong Academy of Agricultural Sciences, Jinan, China.
Front Microbiol. 2023 Jun 2;14:1204688. doi: 10.3389/fmicb.2023.1204688. eCollection 2023.
Biological seed dressing is a cost-effective means to protect plant roots from pathogens. is generally considered as one of the most common biological seed dressings. However, there is still a dearth of information on the effects of on microbial community of rhizosphere soil. High-throughput sequencing was used to analyze the effects of and a chemical fungicide on microbial community of soybean rhizosphere soil. The results showed that both and chemical fungicide could significantly reduce the disease index of soybean (15.11% for Trichoderma and 17.33% for Chemical), while no significant difference was observed between them. Both and chemical fungicide could affect the structure of rhizosphere microbial community, they increased the β-diversity of microbial community and significantly reduce the relative abundance of Saprotroph-Symbiotroph. Chemical fungicide could reduce the complexity and stability of co-occurrence network. However, is beneficial for maintaining network stability and increasing network complexity. There were 31 bacterial genera and 21 fungal genera significantly correlated with the disease index. Furthermore, several potential plant pathogenic microorganisms were also positively correlated with disease index, such as , , , , and . From this work, may be used as a substitute for chemical fungicide to control soybean root rot and be more friendly to soil microecology.
生物拌种是一种保护植物根系免受病原体侵害的经济有效方法。木霉菌通常被认为是最常见的生物拌种剂之一。然而,关于木霉菌对根际土壤微生物群落影响的信息仍然匮乏。采用高通量测序技术分析了木霉菌和一种化学杀菌剂对大豆根际土壤微生物群落的影响。结果表明,木霉菌和化学杀菌剂均能显著降低大豆的病情指数(木霉菌为15.11%,化学杀菌剂为17.33%),但两者之间未观察到显著差异。木霉菌和化学杀菌剂均能影响根际微生物群落结构,它们增加了微生物群落的β多样性,并显著降低了腐生营养型-共生营养型的相对丰度。化学杀菌剂会降低共现网络的复杂性和稳定性。然而,木霉菌有利于维持网络稳定性并增加网络复杂性。有31个细菌属和21个真菌属与病情指数显著相关。此外,几种潜在的植物病原微生物也与病情指数呈正相关,如镰刀菌属、炭疽菌属、链格孢属、曲霉属和青霉属。从这项研究来看,木霉菌可用作化学杀菌剂的替代品来防治大豆根腐病,并且对土壤微生态更友好。