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Draft Genome Analysis Offers Insights Into the Mechanism by Which Streptomyces chartreusis WZS021 Increases Drought Tolerance in Sugarcane

Drought directly affects sugarcane production. Plant growth-promoting bacteria have gained attention as growth promoters of plants under abiotic stresses. The present study focused on genome assessment of the plant-beneficial endophyte Streptomyces chartreusis WZS021 and its vital role in sugarcane...

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Autores principales: Wang, Zhen, Solanki, Manoj Kumar, Yu, Zhuo-Xin, Yang, Li-Tao, An, Qian-Li, Dong, Deng-Feng, Li, Yang-Rui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6338045/
https://www.ncbi.nlm.nih.gov/pubmed/30687260
http://dx.doi.org/10.3389/fmicb.2018.03262
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author Wang, Zhen
Solanki, Manoj Kumar
Yu, Zhuo-Xin
Yang, Li-Tao
An, Qian-Li
Dong, Deng-Feng
Li, Yang-Rui
author_facet Wang, Zhen
Solanki, Manoj Kumar
Yu, Zhuo-Xin
Yang, Li-Tao
An, Qian-Li
Dong, Deng-Feng
Li, Yang-Rui
author_sort Wang, Zhen
collection PubMed
description Drought directly affects sugarcane production. Plant growth-promoting bacteria have gained attention as growth promoters of plants under abiotic stresses. The present study focused on genome assessment of the plant-beneficial endophyte Streptomyces chartreusis WZS021 and its vital role in sugarcane plants under drought stress. Based on in vitro plant growth-promoting trait analyses, WZS021 had multiple abilities, including tolerance to drought and production of 1-aminocyclopropane-1-carboxylic deaminase, siderophores, and indole acetic acid. We confirmed root colonization of sugarcane transplants by WZS021 by a sterile sand assay and scanning electron microscopy. Plants inoculated with strain WZS021 had a positive influence on the root parameters such as length and biomass when compared to the control plants. A comparative study of the responses of two sugarcane varieties (ROC22 and B8) to different levels of drought stress in the presence or absence of WZS021 was conducted by assessing the plant chemistry. The expression of antioxidants in sugarcane leaves varied with water stress level. WZS021 inoculation improved the contents of chlorophyll, proline, and phytohormones, revealing some potential for the mechanisms by which this strain improves drought tolerance in sugarcane plants. We identified several genes that might be involved in the plant growth- and drought tolerance-promoting effects of this strain.
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spelling pubmed-63380452019-01-25 Draft Genome Analysis Offers Insights Into the Mechanism by Which Streptomyces chartreusis WZS021 Increases Drought Tolerance in Sugarcane Wang, Zhen Solanki, Manoj Kumar Yu, Zhuo-Xin Yang, Li-Tao An, Qian-Li Dong, Deng-Feng Li, Yang-Rui Front Microbiol Microbiology Drought directly affects sugarcane production. Plant growth-promoting bacteria have gained attention as growth promoters of plants under abiotic stresses. The present study focused on genome assessment of the plant-beneficial endophyte Streptomyces chartreusis WZS021 and its vital role in sugarcane plants under drought stress. Based on in vitro plant growth-promoting trait analyses, WZS021 had multiple abilities, including tolerance to drought and production of 1-aminocyclopropane-1-carboxylic deaminase, siderophores, and indole acetic acid. We confirmed root colonization of sugarcane transplants by WZS021 by a sterile sand assay and scanning electron microscopy. Plants inoculated with strain WZS021 had a positive influence on the root parameters such as length and biomass when compared to the control plants. A comparative study of the responses of two sugarcane varieties (ROC22 and B8) to different levels of drought stress in the presence or absence of WZS021 was conducted by assessing the plant chemistry. The expression of antioxidants in sugarcane leaves varied with water stress level. WZS021 inoculation improved the contents of chlorophyll, proline, and phytohormones, revealing some potential for the mechanisms by which this strain improves drought tolerance in sugarcane plants. We identified several genes that might be involved in the plant growth- and drought tolerance-promoting effects of this strain. Frontiers Media S.A. 2019-01-09 /pmc/articles/PMC6338045/ /pubmed/30687260 http://dx.doi.org/10.3389/fmicb.2018.03262 Text en Copyright © 2019 Wang, Solanki, Yu, Yang, An, Dong and Li. http://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 Microbiology
Wang, Zhen
Solanki, Manoj Kumar
Yu, Zhuo-Xin
Yang, Li-Tao
An, Qian-Li
Dong, Deng-Feng
Li, Yang-Rui
Draft Genome Analysis Offers Insights Into the Mechanism by Which Streptomyces chartreusis WZS021 Increases Drought Tolerance in Sugarcane
title Draft Genome Analysis Offers Insights Into the Mechanism by Which Streptomyces chartreusis WZS021 Increases Drought Tolerance in Sugarcane
title_full Draft Genome Analysis Offers Insights Into the Mechanism by Which Streptomyces chartreusis WZS021 Increases Drought Tolerance in Sugarcane
title_fullStr Draft Genome Analysis Offers Insights Into the Mechanism by Which Streptomyces chartreusis WZS021 Increases Drought Tolerance in Sugarcane
title_full_unstemmed Draft Genome Analysis Offers Insights Into the Mechanism by Which Streptomyces chartreusis WZS021 Increases Drought Tolerance in Sugarcane
title_short Draft Genome Analysis Offers Insights Into the Mechanism by Which Streptomyces chartreusis WZS021 Increases Drought Tolerance in Sugarcane
title_sort draft genome analysis offers insights into the mechanism by which streptomyces chartreusis wzs021 increases drought tolerance in sugarcane
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6338045/
https://www.ncbi.nlm.nih.gov/pubmed/30687260
http://dx.doi.org/10.3389/fmicb.2018.03262
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