Selenium inhibits root elongation by repressing the generation of endogenous hydrogen sulfide in Brassica rapa.

Selenium (Se) has been becoming an emerging pollutant causing severe phytotoxicity, which the biochemical mechanism is rarely known. Although hydrogen sulfide (H2S) has been suggested as an important exogenous regulator modulating plant physiological adaptions in response to heavy metal stress, whet...

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Main Authors: Yi Chen, Hai-Zhen Mo, Mei-Yu Zheng, Ming Xian, Zhong-Qiang Qi, You-Qin Li, Liang-Bin Hu, Jian Chen, Li-Fei Yang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4204939?pdf=render
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spelling doaj-cce2ea9ae895462c99142cfce8a7d2ff2020-11-25T00:32:07ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01910e11090410.1371/journal.pone.0110904Selenium inhibits root elongation by repressing the generation of endogenous hydrogen sulfide in Brassica rapa.Yi ChenHai-Zhen MoMei-Yu ZhengMing XianZhong-Qiang QiYou-Qin LiLiang-Bin HuJian ChenLi-Fei YangSelenium (Se) has been becoming an emerging pollutant causing severe phytotoxicity, which the biochemical mechanism is rarely known. Although hydrogen sulfide (H2S) has been suggested as an important exogenous regulator modulating plant physiological adaptions in response to heavy metal stress, whether and how the endogenous H2S regulates Se-induce phytotoxicity remains unclear. In this work, a self-developed specific fluorescent probe (WSP-1) was applied to track endogenous H2S in situ in the roots of Brassica rapa under Se(IV) stress. Se(IV)-induced root growth stunt was closely correlated with the inhibition of endogenous H2S generation in root tips. Se(IV) stress dampened the expression of most LCD and DCD homologues in the roots of B. rapa. By using various specific fluorescent probes for bio-imaging root tips in situ, we found that the increase in endogenous H2S by the application of H2S donor NaHS could significantly alleviate Se(IV)-induced reactive oxygen species (ROS) over-accumulation, oxidative impairment, and cell death in root tips, which further resulted in the recovery of root growth under Se(IV) stress. However, dampening the endogenous H2S could block the alleviated effect of NaHS on Se(IV)-induced phytotoxicity. Finally, the increase in endogenous H2S resulted in the enhancement of glutathione (GSH) in Se(IV)-treated roots, which may share the similar molecular mechanism for the dominant role of H2S in removing ROS by activating GSH biosynthesis in mammals. Altogether, these data provide the first direct evidences confirming the pivotal role of endogenous H2S in modulating Se(IV)-induced phytotoxicity in roots.http://europepmc.org/articles/PMC4204939?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yi Chen
Hai-Zhen Mo
Mei-Yu Zheng
Ming Xian
Zhong-Qiang Qi
You-Qin Li
Liang-Bin Hu
Jian Chen
Li-Fei Yang
spellingShingle Yi Chen
Hai-Zhen Mo
Mei-Yu Zheng
Ming Xian
Zhong-Qiang Qi
You-Qin Li
Liang-Bin Hu
Jian Chen
Li-Fei Yang
Selenium inhibits root elongation by repressing the generation of endogenous hydrogen sulfide in Brassica rapa.
PLoS ONE
author_facet Yi Chen
Hai-Zhen Mo
Mei-Yu Zheng
Ming Xian
Zhong-Qiang Qi
You-Qin Li
Liang-Bin Hu
Jian Chen
Li-Fei Yang
author_sort Yi Chen
title Selenium inhibits root elongation by repressing the generation of endogenous hydrogen sulfide in Brassica rapa.
title_short Selenium inhibits root elongation by repressing the generation of endogenous hydrogen sulfide in Brassica rapa.
title_full Selenium inhibits root elongation by repressing the generation of endogenous hydrogen sulfide in Brassica rapa.
title_fullStr Selenium inhibits root elongation by repressing the generation of endogenous hydrogen sulfide in Brassica rapa.
title_full_unstemmed Selenium inhibits root elongation by repressing the generation of endogenous hydrogen sulfide in Brassica rapa.
title_sort selenium inhibits root elongation by repressing the generation of endogenous hydrogen sulfide in brassica rapa.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description Selenium (Se) has been becoming an emerging pollutant causing severe phytotoxicity, which the biochemical mechanism is rarely known. Although hydrogen sulfide (H2S) has been suggested as an important exogenous regulator modulating plant physiological adaptions in response to heavy metal stress, whether and how the endogenous H2S regulates Se-induce phytotoxicity remains unclear. In this work, a self-developed specific fluorescent probe (WSP-1) was applied to track endogenous H2S in situ in the roots of Brassica rapa under Se(IV) stress. Se(IV)-induced root growth stunt was closely correlated with the inhibition of endogenous H2S generation in root tips. Se(IV) stress dampened the expression of most LCD and DCD homologues in the roots of B. rapa. By using various specific fluorescent probes for bio-imaging root tips in situ, we found that the increase in endogenous H2S by the application of H2S donor NaHS could significantly alleviate Se(IV)-induced reactive oxygen species (ROS) over-accumulation, oxidative impairment, and cell death in root tips, which further resulted in the recovery of root growth under Se(IV) stress. However, dampening the endogenous H2S could block the alleviated effect of NaHS on Se(IV)-induced phytotoxicity. Finally, the increase in endogenous H2S resulted in the enhancement of glutathione (GSH) in Se(IV)-treated roots, which may share the similar molecular mechanism for the dominant role of H2S in removing ROS by activating GSH biosynthesis in mammals. Altogether, these data provide the first direct evidences confirming the pivotal role of endogenous H2S in modulating Se(IV)-induced phytotoxicity in roots.
url http://europepmc.org/articles/PMC4204939?pdf=render
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AT haizhenmo seleniuminhibitsrootelongationbyrepressingthegenerationofendogenoushydrogensulfideinbrassicarapa
AT meiyuzheng seleniuminhibitsrootelongationbyrepressingthegenerationofendogenoushydrogensulfideinbrassicarapa
AT mingxian seleniuminhibitsrootelongationbyrepressingthegenerationofendogenoushydrogensulfideinbrassicarapa
AT zhongqiangqi seleniuminhibitsrootelongationbyrepressingthegenerationofendogenoushydrogensulfideinbrassicarapa
AT youqinli seleniuminhibitsrootelongationbyrepressingthegenerationofendogenoushydrogensulfideinbrassicarapa
AT liangbinhu seleniuminhibitsrootelongationbyrepressingthegenerationofendogenoushydrogensulfideinbrassicarapa
AT jianchen seleniuminhibitsrootelongationbyrepressingthegenerationofendogenoushydrogensulfideinbrassicarapa
AT lifeiyang seleniuminhibitsrootelongationbyrepressingthegenerationofendogenoushydrogensulfideinbrassicarapa
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