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一种内生放线菌NEAU-S7GS2的抗真菌、促进植物生长及基因组特性

Antifungal, Plant Growth-Promoting, and Genomic Properties of an Endophytic Actinobacterium sp. NEAU-S7GS2.

作者信息

Liu Dongli, Yan Rui, Fu Yansong, Wang Xiangjing, Zhang Ji, Xiang Wensheng

机构信息

Heilongjiang Provinical Key Laboratory of Agricultural Microbiology, Northeast Agricultural University, Harbin, China.

State Key Laboratory for Biology of Plant Diseases and Insect Pests, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

Front Microbiol. 2019 Sep 10;10:2077. doi: 10.3389/fmicb.2019.02077. eCollection 2019.

Abstract

Diseases caused by have caused severe losses of many economically important crops worldwide. Due to the long-term persistence of sclerotia in soil and the production of air-borne ascospores, synthetic fungicides play limited roles in controlling the diseases. The application of antagonistic microorganisms can effectively reduce the number of sclerotia and eventually eradicate from soil, and therefore considerable interest has been focused on biological control. sp. NEAU-S7GS2 was isolated from the root of and its rhizosphere soil. It showed significant inhibitory activity against the mycelial growth of (99.1%) and completely inhibited sclerotia germination. Compared to the control, in the pot experiment the application of NEAU-S7GS2 not only demonstrated excellent potential to control sclerotinia stem rot of soybean with 77 and 38% decrease in disease incidence and disease index, respectively, but could promote the growth of soybean. The light microscopy and scanning electron microscopy showed that co-culture of NEAU-S7GS2 with on potato dextrose agar could lead to contorted and fragmented mycelia of , which was associated with the secretion of hydrolytic glucanase and cellulase and the production of active secondary metabolites by NEAU-S7GS2. The plant growth promoting activity of NEAU-S7GS2 was related to the solubilization of inorganic phosphate, and production of 1-aminocyclopropane-1-carboxylate (ACC) deaminase and indole acetic acid (IAA). To further explore the plant growth promoting and antifungal mechanisms, the complete genome of strain NEAU-S7GS2 was sequenced. Several genes associated with ammonia assimilation, phosphate solubilization and IAA synthesis, together with genes encoding ACC deaminase, glucanase and α-amylase, were identified. AntiSMASH analysis led to the identification of four gene clusters responsible for the biosynthesis of siderophores including desferrioxamine B and enterobactin. Moreover, the biosynthetic gene clusters of lydicamycins, phenazines, and a glycosylated polyol macrolide showing 88% gene similarity to PM100117/PM100118 were identified. These results suggested that strain NEAU-S7GS2 may be a potential biocontrol agent and biofertilizer used in agriculture.

摘要

由[病原体名称未给出]引起的病害已在全球范围内给许多具有重要经济价值的作物造成了严重损失。由于菌核在土壤中能长期存活,且能产生气传子囊孢子,合成杀菌剂在控制这些病害方面作用有限。拮抗微生物的应用能有效减少菌核数量,并最终从土壤中根除[病原体名称未给出],因此生物防治受到了广泛关注。[菌株名称未给出]sp. NEAU - S7GS2是从[宿主名称未给出]的根及其根际土壤中分离得到的。它对[病原体名称未给出]的菌丝生长表现出显著的抑制活性(99.1%),并完全抑制了菌核萌发。与对照相比,在盆栽试验中,施用NEAU - S7GS2不仅显示出控制大豆菌核病的优异潜力,病害发生率和病害指数分别降低了77%和38%,而且还能促进大豆生长。光学显微镜和扫描电子显微镜显示,在马铃薯葡萄糖琼脂上,NEAU - S7GS2与[病原体名称未给出]共培养会导致[病原体名称未给出]的菌丝扭曲和断裂,这与NEAU - S7GS2分泌水解葡聚糖酶和纤维素酶以及产生活性次生代谢产物有关。NEAU - S7GS2促进植物生长的活性与无机磷的溶解、1 - 氨基环丙烷 - 1 - 羧酸(ACC)脱氨酶和吲哚乙酸(IAA)的产生有关。为了进一步探究其促进植物生长和抗真菌机制,对菌株NEAU - S7GS2的全基因组进行了测序。鉴定出了几个与氨同化、磷溶解和IAA合成相关的基因,以及编码ACC脱氨酶、葡聚糖酶和α - 淀粉酶的基因。抗SMASH分析鉴定出了四个负责铁载体生物合成的基因簇,包括去铁胺B和肠杆菌素。此外,还鉴定出了利迪霉素、吩嗪以及与PM100117/PM100118基因相似性为88%的糖基化多元醇大环内酯的生物合成基因簇。这些结果表明,菌株NEAU - S7GS2可能是一种潜在的用于农业的生物防治剂和生物肥料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2402/6746918/cd4b415c52ee/fmicb-10-02077-g001.jpg

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