Cargando…

Role of Rhizospheric Bacillus megaterium HGS7 in Maintaining Mulberry Growth Under Extremely Abiotic Stress in Hydro-Fluctuation Belt of Three Gorges Reservoir

Plant growth-promoting rhizobacteria have been shown to play important roles in maintaining host fitness under periods of abiotic stress, and yet their effect on mulberry trees which regularly suffer drought after flooding in the hydro-fluctuation belt of the Three Gorges Reservoir Region in China r...

Descripción completa

Detalles Bibliográficos
Autores principales: Ou, Ting, Zhang, Meng, Huang, Yazhou, Wang, Li, Wang, Fei, Wang, Ruolin, Liu, Xiaojiao, Zhou, Zeyang, Xie, Jie, Xiang, Zhonghuai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9195505/
https://www.ncbi.nlm.nih.gov/pubmed/35712602
http://dx.doi.org/10.3389/fpls.2022.880125
_version_ 1784726978188804096
author Ou, Ting
Zhang, Meng
Huang, Yazhou
Wang, Li
Wang, Fei
Wang, Ruolin
Liu, Xiaojiao
Zhou, Zeyang
Xie, Jie
Xiang, Zhonghuai
author_facet Ou, Ting
Zhang, Meng
Huang, Yazhou
Wang, Li
Wang, Fei
Wang, Ruolin
Liu, Xiaojiao
Zhou, Zeyang
Xie, Jie
Xiang, Zhonghuai
author_sort Ou, Ting
collection PubMed
description Plant growth-promoting rhizobacteria have been shown to play important roles in maintaining host fitness under periods of abiotic stress, and yet their effect on mulberry trees which regularly suffer drought after flooding in the hydro-fluctuation belt of the Three Gorges Reservoir Region in China remains largely uncharacterized. In the present study, 74 bacterial isolates were obtained from the rhizosphere soil of mulberry after drought stress, including 12 phosphate-solubilizing and 10 indole-3-acetic-acid-producing isolates. Bacillus megaterium HGS7 was selected for further study due to the abundance of traits that might benefit plants. Genomic analysis revealed that strain HGS7 possessed multiple genes that contributed to plant growth promotion, stress tolerance enhancement, and antimicrobial compound production. B. megaterium HGS7 consistently exhibited antagonistic activity against phytopathogens and strong tolerance to abiotic stress in vitro. Moreover, this strain stimulated mulberry seed germination and seedling growth. It may also induce the production of proline and antioxidant enzymes in mulberry trees to enhance drought tolerance and accelerate growth recovery after drought stress. The knowledge of the interactions between rhizobacteria HGS7 and its host plant might provide a potential strategy to enhance the drought tolerance of mulberry trees in a hydro-fluctuation belt.
format Online
Article
Text
id pubmed-9195505
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-91955052022-06-15 Role of Rhizospheric Bacillus megaterium HGS7 in Maintaining Mulberry Growth Under Extremely Abiotic Stress in Hydro-Fluctuation Belt of Three Gorges Reservoir Ou, Ting Zhang, Meng Huang, Yazhou Wang, Li Wang, Fei Wang, Ruolin Liu, Xiaojiao Zhou, Zeyang Xie, Jie Xiang, Zhonghuai Front Plant Sci Plant Science Plant growth-promoting rhizobacteria have been shown to play important roles in maintaining host fitness under periods of abiotic stress, and yet their effect on mulberry trees which regularly suffer drought after flooding in the hydro-fluctuation belt of the Three Gorges Reservoir Region in China remains largely uncharacterized. In the present study, 74 bacterial isolates were obtained from the rhizosphere soil of mulberry after drought stress, including 12 phosphate-solubilizing and 10 indole-3-acetic-acid-producing isolates. Bacillus megaterium HGS7 was selected for further study due to the abundance of traits that might benefit plants. Genomic analysis revealed that strain HGS7 possessed multiple genes that contributed to plant growth promotion, stress tolerance enhancement, and antimicrobial compound production. B. megaterium HGS7 consistently exhibited antagonistic activity against phytopathogens and strong tolerance to abiotic stress in vitro. Moreover, this strain stimulated mulberry seed germination and seedling growth. It may also induce the production of proline and antioxidant enzymes in mulberry trees to enhance drought tolerance and accelerate growth recovery after drought stress. The knowledge of the interactions between rhizobacteria HGS7 and its host plant might provide a potential strategy to enhance the drought tolerance of mulberry trees in a hydro-fluctuation belt. Frontiers Media S.A. 2022-05-27 /pmc/articles/PMC9195505/ /pubmed/35712602 http://dx.doi.org/10.3389/fpls.2022.880125 Text en Copyright © 2022 Ou, Zhang, Huang, Wang, Wang, Wang, Liu, Zhou, Xie and Xiang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Ou, Ting
Zhang, Meng
Huang, Yazhou
Wang, Li
Wang, Fei
Wang, Ruolin
Liu, Xiaojiao
Zhou, Zeyang
Xie, Jie
Xiang, Zhonghuai
Role of Rhizospheric Bacillus megaterium HGS7 in Maintaining Mulberry Growth Under Extremely Abiotic Stress in Hydro-Fluctuation Belt of Three Gorges Reservoir
title Role of Rhizospheric Bacillus megaterium HGS7 in Maintaining Mulberry Growth Under Extremely Abiotic Stress in Hydro-Fluctuation Belt of Three Gorges Reservoir
title_full Role of Rhizospheric Bacillus megaterium HGS7 in Maintaining Mulberry Growth Under Extremely Abiotic Stress in Hydro-Fluctuation Belt of Three Gorges Reservoir
title_fullStr Role of Rhizospheric Bacillus megaterium HGS7 in Maintaining Mulberry Growth Under Extremely Abiotic Stress in Hydro-Fluctuation Belt of Three Gorges Reservoir
title_full_unstemmed Role of Rhizospheric Bacillus megaterium HGS7 in Maintaining Mulberry Growth Under Extremely Abiotic Stress in Hydro-Fluctuation Belt of Three Gorges Reservoir
title_short Role of Rhizospheric Bacillus megaterium HGS7 in Maintaining Mulberry Growth Under Extremely Abiotic Stress in Hydro-Fluctuation Belt of Three Gorges Reservoir
title_sort role of rhizospheric bacillus megaterium hgs7 in maintaining mulberry growth under extremely abiotic stress in hydro-fluctuation belt of three gorges reservoir
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9195505/
https://www.ncbi.nlm.nih.gov/pubmed/35712602
http://dx.doi.org/10.3389/fpls.2022.880125
work_keys_str_mv AT outing roleofrhizosphericbacillusmegateriumhgs7inmaintainingmulberrygrowthunderextremelyabioticstressinhydrofluctuationbeltofthreegorgesreservoir
AT zhangmeng roleofrhizosphericbacillusmegateriumhgs7inmaintainingmulberrygrowthunderextremelyabioticstressinhydrofluctuationbeltofthreegorgesreservoir
AT huangyazhou roleofrhizosphericbacillusmegateriumhgs7inmaintainingmulberrygrowthunderextremelyabioticstressinhydrofluctuationbeltofthreegorgesreservoir
AT wangli roleofrhizosphericbacillusmegateriumhgs7inmaintainingmulberrygrowthunderextremelyabioticstressinhydrofluctuationbeltofthreegorgesreservoir
AT wangfei roleofrhizosphericbacillusmegateriumhgs7inmaintainingmulberrygrowthunderextremelyabioticstressinhydrofluctuationbeltofthreegorgesreservoir
AT wangruolin roleofrhizosphericbacillusmegateriumhgs7inmaintainingmulberrygrowthunderextremelyabioticstressinhydrofluctuationbeltofthreegorgesreservoir
AT liuxiaojiao roleofrhizosphericbacillusmegateriumhgs7inmaintainingmulberrygrowthunderextremelyabioticstressinhydrofluctuationbeltofthreegorgesreservoir
AT zhouzeyang roleofrhizosphericbacillusmegateriumhgs7inmaintainingmulberrygrowthunderextremelyabioticstressinhydrofluctuationbeltofthreegorgesreservoir
AT xiejie roleofrhizosphericbacillusmegateriumhgs7inmaintainingmulberrygrowthunderextremelyabioticstressinhydrofluctuationbeltofthreegorgesreservoir
AT xiangzhonghuai roleofrhizosphericbacillusmegateriumhgs7inmaintainingmulberrygrowthunderextremelyabioticstressinhydrofluctuationbeltofthreegorgesreservoir