Cargando…
A Plant Endophytic Bacterium Priestia megaterium StrainBP-R2 Isolated from the Halophyte Bolboschoenus planiculmis Enhances Plant Growth under Salt and Drought Stresses
Global warming and climate change have contributed to the rise of weather extremes. Severe drought and soil salinization increase because of rising temperatures. Economically important crop production and plant growth and development are hindered when facing various abiotic stresses. Plant endophyti...
Autores principales: | , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9610499/ https://www.ncbi.nlm.nih.gov/pubmed/36296323 http://dx.doi.org/10.3390/microorganisms10102047 |
_version_ | 1784819284769243136 |
---|---|
author | Hwang, Hau-Hsuan Chien, Pei-Ru Huang, Fan-Chen Yeh, Pin-Hsien Hung, Shih-Hsun Walter Deng, Wen-Ling Huang, Chieh-Chen |
author_facet | Hwang, Hau-Hsuan Chien, Pei-Ru Huang, Fan-Chen Yeh, Pin-Hsien Hung, Shih-Hsun Walter Deng, Wen-Ling Huang, Chieh-Chen |
author_sort | Hwang, Hau-Hsuan |
collection | PubMed |
description | Global warming and climate change have contributed to the rise of weather extremes. Severe drought and soil salinization increase because of rising temperatures. Economically important crop production and plant growth and development are hindered when facing various abiotic stresses. Plant endophytic bacteria live inside host plants without causing visible harm and can be isolated from surface-sterilized plant tissues. Using plant endophytic bacteria to stimulate plant growth and increase environmental stress tolerance has become an alternative approach besides using the traditional breeding and genetically modifying approaches to select or create new crop types resistant to different environmental stresses. The plant endophytic bacterium, Priestia megaterium (previously known as Bacillus megaterium) strain BP-R2, was isolated from the surface-sterilized root tissues of the salt marsh halophyte Bolboschoenus planiculmis. The bacteria strain BP-R2 showed high tolerance to different sodium chloride (NaCl) concentrations and produced the auxin plant hormone, indole acetic acid (IAA), under various tested growth conditions. Inoculation of Arabidopsis and pak choi (Brassica rapa L. R. Chinensis Group) plants with the strain BP-R2 greatly enhanced different growth parameters of the host plants under normal and salt and drought stress conditions compared to that of the mock-inoculated plants. Furthermore, the hydrogen peroxide (H(2)O(2)) content, electrolyte leakage (EL), and malondialdehyde (MDA) concentration accumulated less in the BP-R2-inoculated plants than in the mock-inoculated control plants under salt and drought stresses. In summary, the plant endophytic bacterium strain BP-R2 increased host plant growth and stress tolerance to salt and drought conditions. |
format | Online Article Text |
id | pubmed-9610499 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-96104992022-10-28 A Plant Endophytic Bacterium Priestia megaterium StrainBP-R2 Isolated from the Halophyte Bolboschoenus planiculmis Enhances Plant Growth under Salt and Drought Stresses Hwang, Hau-Hsuan Chien, Pei-Ru Huang, Fan-Chen Yeh, Pin-Hsien Hung, Shih-Hsun Walter Deng, Wen-Ling Huang, Chieh-Chen Microorganisms Article Global warming and climate change have contributed to the rise of weather extremes. Severe drought and soil salinization increase because of rising temperatures. Economically important crop production and plant growth and development are hindered when facing various abiotic stresses. Plant endophytic bacteria live inside host plants without causing visible harm and can be isolated from surface-sterilized plant tissues. Using plant endophytic bacteria to stimulate plant growth and increase environmental stress tolerance has become an alternative approach besides using the traditional breeding and genetically modifying approaches to select or create new crop types resistant to different environmental stresses. The plant endophytic bacterium, Priestia megaterium (previously known as Bacillus megaterium) strain BP-R2, was isolated from the surface-sterilized root tissues of the salt marsh halophyte Bolboschoenus planiculmis. The bacteria strain BP-R2 showed high tolerance to different sodium chloride (NaCl) concentrations and produced the auxin plant hormone, indole acetic acid (IAA), under various tested growth conditions. Inoculation of Arabidopsis and pak choi (Brassica rapa L. R. Chinensis Group) plants with the strain BP-R2 greatly enhanced different growth parameters of the host plants under normal and salt and drought stress conditions compared to that of the mock-inoculated plants. Furthermore, the hydrogen peroxide (H(2)O(2)) content, electrolyte leakage (EL), and malondialdehyde (MDA) concentration accumulated less in the BP-R2-inoculated plants than in the mock-inoculated control plants under salt and drought stresses. In summary, the plant endophytic bacterium strain BP-R2 increased host plant growth and stress tolerance to salt and drought conditions. MDPI 2022-10-17 /pmc/articles/PMC9610499/ /pubmed/36296323 http://dx.doi.org/10.3390/microorganisms10102047 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Hwang, Hau-Hsuan Chien, Pei-Ru Huang, Fan-Chen Yeh, Pin-Hsien Hung, Shih-Hsun Walter Deng, Wen-Ling Huang, Chieh-Chen A Plant Endophytic Bacterium Priestia megaterium StrainBP-R2 Isolated from the Halophyte Bolboschoenus planiculmis Enhances Plant Growth under Salt and Drought Stresses |
title | A Plant Endophytic Bacterium Priestia megaterium StrainBP-R2 Isolated from the Halophyte Bolboschoenus planiculmis Enhances Plant Growth under Salt and Drought Stresses |
title_full | A Plant Endophytic Bacterium Priestia megaterium StrainBP-R2 Isolated from the Halophyte Bolboschoenus planiculmis Enhances Plant Growth under Salt and Drought Stresses |
title_fullStr | A Plant Endophytic Bacterium Priestia megaterium StrainBP-R2 Isolated from the Halophyte Bolboschoenus planiculmis Enhances Plant Growth under Salt and Drought Stresses |
title_full_unstemmed | A Plant Endophytic Bacterium Priestia megaterium StrainBP-R2 Isolated from the Halophyte Bolboschoenus planiculmis Enhances Plant Growth under Salt and Drought Stresses |
title_short | A Plant Endophytic Bacterium Priestia megaterium StrainBP-R2 Isolated from the Halophyte Bolboschoenus planiculmis Enhances Plant Growth under Salt and Drought Stresses |
title_sort | plant endophytic bacterium priestia megaterium strainbp-r2 isolated from the halophyte bolboschoenus planiculmis enhances plant growth under salt and drought stresses |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9610499/ https://www.ncbi.nlm.nih.gov/pubmed/36296323 http://dx.doi.org/10.3390/microorganisms10102047 |
work_keys_str_mv | AT hwanghauhsuan aplantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT chienpeiru aplantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT huangfanchen aplantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT yehpinhsien aplantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT hungshihhsunwalter aplantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT dengwenling aplantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT huangchiehchen aplantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT hwanghauhsuan plantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT chienpeiru plantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT huangfanchen plantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT yehpinhsien plantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT hungshihhsunwalter plantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT dengwenling plantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses AT huangchiehchen plantendophyticbacteriumpriestiamegateriumstrainbpr2isolatedfromthehalophytebolboschoenusplaniculmisenhancesplantgrowthundersaltanddroughtstresses |