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M01调节黄瓜土壤微生物群落并减轻由[病原体名称未给出]引起的叶部病害。

M01 Regulates Soil Microbial Community and Alleviates Foliar Disease Caused by on Cucumbers.

作者信息

Wang Mingxuan, Xue Jian, Ma Junjie, Feng Xiaohai, Ying Hanjie, Xu Hong

机构信息

State Key Laboratory of Materials-Oriented Chemical Engineering, Nanjing Tech University, Nanjing, China.

College of Food Science and Light Industry, Nanjing Tech University, Nanjing, China.

出版信息

Front Microbiol. 2020 May 15;11:942. doi: 10.3389/fmicb.2020.00942. eCollection 2020.

Abstract

Due to the adverse effect on the environment caused by excessive use of chemical fertilizers, the development of sustainable agriculture attracts a growing demand of biological based fertilizers composed of living microorganisms. In this study, an Actinobacteria M01 was isolated from the rhizosphere soil of . This strain effectively promoted the plant growth and suppressed a foliar disease caused by on cucumbers. M01 exhibited growth promoting characteristics such as phosphate solubilization, IAA secretion, siderophore and ACC deaminase production. Through Illumina sequencing of the 16S rRNA gene and ITS gene of the soil microbes, we found that the application of M01 altered the composition of the microbial community by promoting beneficial groups, including bacteria genera , , , and , fungi genera , , , and . Most of these bacteria and eukaryotes exhibit positive effects on growth promotion, such as nutrient accumulation, auxin secretion, abiotic stress alleviation, biological control, or bioremediation. Furthermore, studies on the reactive oxygen species (ROS) level and antioxidants of cucumber leaves revealed that M01 treatment reduced the ROS accumulation and increased the activities of antioxidases related with ROS scavenging, which indicated an enhanced disease resistance of cucumbers under biotic stress. Thus, our results suggest that the application of M01 can systemically affect plant microbiome interactions and represent a promising sustainable solution to improve agricultural production instead of chemical fertilizers.

摘要

由于过度使用化肥对环境造成不利影响,可持续农业的发展使得对由活微生物组成的生物基肥料的需求日益增加。在本研究中,从……的根际土壤中分离出一株放线菌M01。该菌株有效促进了植物生长,并抑制了黄瓜上由……引起的叶部病害。M01表现出促进生长的特性,如溶解磷酸盐、分泌吲哚-3-乙酸、产生铁载体和ACC脱氨酶。通过对土壤微生物的16S rRNA基因和ITS基因进行Illumina测序,我们发现施用M01通过促进有益菌群(包括细菌属……、……、……和……,真菌属……、……、……和……)的生长改变了微生物群落的组成。这些细菌和真核生物中的大多数对生长促进具有积极作用,如养分积累、生长素分泌、缓解非生物胁迫、生物防治或生物修复。此外,对黄瓜叶片的活性氧(ROS)水平和抗氧化剂的研究表明,M01处理减少了ROS积累,并增加了与ROS清除相关的抗氧化酶的活性,这表明在生物胁迫下黄瓜的抗病性增强。因此,我们的结果表明,施用M01可以系统性地影响植物微生物组相互作用,并代表了一种有前景的可持续解决方案,以替代化肥来提高农业产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23a0/7243425/2312001326ab/fmicb-11-00942-g001.jpg

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