Effects of rice blast biocontrol strain Pseudomonas alcaliphila Ej2 on the endophytic microbiome and proteome of rice under salt stress

IntroductionSoil salinity is a prevalent environmental stress in agricultural production. Microbial inoculants could effectively help plants to alleviate salt stress. However, there is little knowledge of the biocontrol strain Pseudomonas alcaliphila Ej2 mechanisms aiding rice plants to reduce the a...

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Main Authors: Qingchao Zeng, Xiaowu Man, Zeyang Huang, Lubo Zhuang, Hanmeng Yang, Yuexia Sha
Format: Article
Language:English
Published: Frontiers Media S.A. 2023-03-01
Series:Frontiers in Microbiology
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fmicb.2023.1129614/full
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author Qingchao Zeng
Qingchao Zeng
Xiaowu Man
Zeyang Huang
Lubo Zhuang
Hanmeng Yang
Yuexia Sha
author_facet Qingchao Zeng
Qingchao Zeng
Xiaowu Man
Zeyang Huang
Lubo Zhuang
Hanmeng Yang
Yuexia Sha
author_sort Qingchao Zeng
collection DOAJ
description IntroductionSoil salinity is a prevalent environmental stress in agricultural production. Microbial inoculants could effectively help plants to alleviate salt stress. However, there is little knowledge of the biocontrol strain Pseudomonas alcaliphila Ej2 mechanisms aiding rice plants to reduce the adverse effects caused by salt stress.MethodsWe performed integrated field and greenhouse experiments, microbial community profiling, and rice proteomic analysis to systematically investigate the Ej2 mechanism of action.ResultsThe results displayed that biocontrol strain Ej2 increased shoot/root length and fresh/dry weight compared with control under salt stress. Meanwhile, strain Ej2 has the ability to control rice blast disease and promote rice growth. Furthermore, the microbial community analysis revealed that the alpha-diversity of Ej2-inoculated plants was higher than the control plants, expect the Shannon index of the bacterial microbiome and the Ej2-inoculated samples clustered and separated from the control samples based on beta-diversity analysis. Importantly, the enriched and specific OTUs after Ej2 inoculation at the genus level were Streptomyces, Pseudomonas, Flavobacterium, and Bacillus. Moreover, we observed that Ej2 inoculation influenced the rice proteomic profile, including metabolism, plant-pathogen interactions, and biosynthesis of unsaturated fatty acids. These results provide comprehensive evidence that Ej2 inoculation induced the rice endophytic microbiome and proteomic profiles to promote plant growth under salt stress.DiscussionUnderstanding the biocontrol strain effects on the endophytic microbiome and rice proteomics will help us better understand the complex interactions between plants and microorganisms under salt stress. Furthermore, unraveling the mechanisms underlying salt tolerance will help us more efficiently ameliorate saline soils.
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spelling doaj.art-7229b99c317449a1982299ff272c611c2023-03-07T04:59:52ZengFrontiers Media S.A.Frontiers in Microbiology1664-302X2023-03-011410.3389/fmicb.2023.11296141129614Effects of rice blast biocontrol strain Pseudomonas alcaliphila Ej2 on the endophytic microbiome and proteome of rice under salt stressQingchao Zeng0Qingchao Zeng1Xiaowu Man2Zeyang Huang3Lubo Zhuang4Hanmeng Yang5Yuexia Sha6Institute of Plant Protection, Ningxia Academy of Agriculture and Forestry Sciences, Yinchuan, ChinaBeijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, Beijing, ChinaBeijing Advanced Innovation Center for Tree Breeding by Molecular Design, Beijing Forestry University, Beijing, ChinaInstitute of Plant Protection, Ningxia Academy of Agriculture and Forestry Sciences, Yinchuan, ChinaInstitute of Plant Protection, Beijing Academy of Agricultural and Forestry Sciences, Beijing, ChinaDepartment of Plant Pathology, MOA Key Lab of Pest Monitoring and Green Management, College of Plant Protection, China Agricultural University, Beijing, ChinaInstitute of Plant Protection, Ningxia Academy of Agriculture and Forestry Sciences, Yinchuan, ChinaIntroductionSoil salinity is a prevalent environmental stress in agricultural production. Microbial inoculants could effectively help plants to alleviate salt stress. However, there is little knowledge of the biocontrol strain Pseudomonas alcaliphila Ej2 mechanisms aiding rice plants to reduce the adverse effects caused by salt stress.MethodsWe performed integrated field and greenhouse experiments, microbial community profiling, and rice proteomic analysis to systematically investigate the Ej2 mechanism of action.ResultsThe results displayed that biocontrol strain Ej2 increased shoot/root length and fresh/dry weight compared with control under salt stress. Meanwhile, strain Ej2 has the ability to control rice blast disease and promote rice growth. Furthermore, the microbial community analysis revealed that the alpha-diversity of Ej2-inoculated plants was higher than the control plants, expect the Shannon index of the bacterial microbiome and the Ej2-inoculated samples clustered and separated from the control samples based on beta-diversity analysis. Importantly, the enriched and specific OTUs after Ej2 inoculation at the genus level were Streptomyces, Pseudomonas, Flavobacterium, and Bacillus. Moreover, we observed that Ej2 inoculation influenced the rice proteomic profile, including metabolism, plant-pathogen interactions, and biosynthesis of unsaturated fatty acids. These results provide comprehensive evidence that Ej2 inoculation induced the rice endophytic microbiome and proteomic profiles to promote plant growth under salt stress.DiscussionUnderstanding the biocontrol strain effects on the endophytic microbiome and rice proteomics will help us better understand the complex interactions between plants and microorganisms under salt stress. Furthermore, unraveling the mechanisms underlying salt tolerance will help us more efficiently ameliorate saline soils.https://www.frontiersin.org/articles/10.3389/fmicb.2023.1129614/fullricesalt stressPseudomonasendophyticmicrobiomeproteomic
spellingShingle Qingchao Zeng
Qingchao Zeng
Xiaowu Man
Zeyang Huang
Lubo Zhuang
Hanmeng Yang
Yuexia Sha
Effects of rice blast biocontrol strain Pseudomonas alcaliphila Ej2 on the endophytic microbiome and proteome of rice under salt stress
Frontiers in Microbiology
rice
salt stress
Pseudomonas
endophytic
microbiome
proteomic
title Effects of rice blast biocontrol strain Pseudomonas alcaliphila Ej2 on the endophytic microbiome and proteome of rice under salt stress
title_full Effects of rice blast biocontrol strain Pseudomonas alcaliphila Ej2 on the endophytic microbiome and proteome of rice under salt stress
title_fullStr Effects of rice blast biocontrol strain Pseudomonas alcaliphila Ej2 on the endophytic microbiome and proteome of rice under salt stress
title_full_unstemmed Effects of rice blast biocontrol strain Pseudomonas alcaliphila Ej2 on the endophytic microbiome and proteome of rice under salt stress
title_short Effects of rice blast biocontrol strain Pseudomonas alcaliphila Ej2 on the endophytic microbiome and proteome of rice under salt stress
title_sort effects of rice blast biocontrol strain pseudomonas alcaliphila ej2 on the endophytic microbiome and proteome of rice under salt stress
topic rice
salt stress
Pseudomonas
endophytic
microbiome
proteomic
url https://www.frontiersin.org/articles/10.3389/fmicb.2023.1129614/full
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