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内生菌HGG15促进消落带桑树生长及其微生物组学和代谢组学揭示的潜在机制

Endophytic HGG15 stimulates mulberry growth in hydro-fluctuation belt and the potential mechanisms as revealed by microbiome and metabolomics.

作者信息

Ou Ting, Gao Haiying, Jiang Kun, Yu Jing, Zhao Ruolin, Liu Xiaojiao, Zhou Zeyang, Xiang Zhonghuai, Xie Jie

机构信息

State Key Laboratory of Silkworm Genome Biology, Key Laboratory of Sericultural Biology and Genetic Breeding in Ministry of Agriculture, College of Sericulture, Textile and Biomass Science, Southwest University, Chongqing, China.

College of Life Science, Chongqing Normal University, Chongqing, China.

出版信息

Front Microbiol. 2022 Aug 12;13:978550. doi: 10.3389/fmicb.2022.978550. eCollection 2022.

Abstract

Growth promotion and stress tolerance induced by endophytes have been observed in various plants, but their effects on mulberry regularly suffering flood in the hydro-fluctuation belt are less understood. In the present study, endophytic HGG15 was screened out from 28 plant growth promotion (PGP) bacteria as having superior PGP traits and as well as biosafety for silkworms. HGG15 could actively colonize into roots of mulberry and subsequently transferred to stems and leaves. The 16S ribosomal RNA (V3-V4 variable regions) amplicon sequencing revealed that exogenous application of HGG15 altered the bacterial community structures of mulberry roots and stems. Moreover, the genus of was particularly enriched in inoculated mulberry roots and was positively correlated with mulberry development and soil potassium content. Untargeted metabolic profiles uncovered 201 differentially abundant metabolites (DEMs) between inoculated and control mulberry, with lipids and organo-heterocyclic compounds being particularly abundant DEMs. In addition, a high abundance of abiotic stress response factors and promotion growth stimulators such as glycerolipid, sphingolipid, indole, pyridine, and coumarin were observed in inoculated mulberry. Collectively, the knowledge gained from this study sheds light on potential strategies to enhance mulberry growth in hydro-fluctuation belt, and microbiome and metabolite analyses provide new insights into the growth promotion mechanisms used by plant-associated bacteria.

摘要

内生菌诱导的植物生长促进和胁迫耐受性在多种植物中均有观察到,但它们对经常遭受洪水侵袭的河漫滩带桑树的影响却鲜为人知。在本研究中,从28株植物促生(PGP)细菌中筛选出内生菌HGG15,其具有优异的PGP特性以及对家蚕的生物安全性。HGG15能够主动定殖到桑树根系中,随后转移到茎和叶中。16S核糖体RNA(V3 - V4可变区)扩增子测序显示,外源施用HGG15改变了桑树根系和茎的细菌群落结构。此外,某属细菌在接种的桑树根系中特别富集,并且与桑树生长发育和土壤钾含量呈正相关。非靶向代谢谱分析发现接种和对照桑树之间有201种差异丰富的代谢物(DEM),其中脂质和有机杂环化合物是特别丰富的DEM。此外,在接种的桑树中观察到大量非生物胁迫响应因子和促进生长的刺激物,如甘油脂、鞘脂、吲哚、吡啶和香豆素。总的来说,本研究获得的知识为提高河漫滩带桑树生长的潜在策略提供了线索,微生物组和代谢物分析为植物相关细菌的生长促进机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b2a/9417544/673cfcbb5921/fmicb-13-978550-g001.jpg

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