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Cellular and molecular insight into the inhibition of primary root growth of Arabidopsis induced by peptaibols, a class of linear peptide antibiotics mainly produced by Trichoderma spp.

Trichoderma spp. are well known biocontrol agents that produce a variety of antibiotics. Peptaibols are a class of linear peptide antibiotics mainly produced by Trichoderma. Alamethicin, the most studied peptaibol, is reported as toxic to plants at certain concentrations, while the mechanisms involv...

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Autores principales: Shi, Wei-Ling, Chen, Xiu-Lan, Wang, Li-Xia, Gong, Zhi-Ting, Li, Shuyu, Li, Chun-Long, Xie, Bin-Bin, Zhang, Wei, Shi, Mei, Li, Chuanyou, Zhang, Yu-Zhong, Song, Xiao-Yan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4809282/
https://www.ncbi.nlm.nih.gov/pubmed/26850879
http://dx.doi.org/10.1093/jxb/erw023
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author Shi, Wei-Ling
Chen, Xiu-Lan
Wang, Li-Xia
Gong, Zhi-Ting
Li, Shuyu
Li, Chun-Long
Xie, Bin-Bin
Zhang, Wei
Shi, Mei
Li, Chuanyou
Zhang, Yu-Zhong
Song, Xiao-Yan
author_facet Shi, Wei-Ling
Chen, Xiu-Lan
Wang, Li-Xia
Gong, Zhi-Ting
Li, Shuyu
Li, Chun-Long
Xie, Bin-Bin
Zhang, Wei
Shi, Mei
Li, Chuanyou
Zhang, Yu-Zhong
Song, Xiao-Yan
author_sort Shi, Wei-Ling
collection PubMed
description Trichoderma spp. are well known biocontrol agents that produce a variety of antibiotics. Peptaibols are a class of linear peptide antibiotics mainly produced by Trichoderma. Alamethicin, the most studied peptaibol, is reported as toxic to plants at certain concentrations, while the mechanisms involved are unclear. We illustrated the toxic mechanisms of peptaibols by studying the growth-inhibitory effect of Trichokonin VI (TK VI), a peptaibol from Trichoderma longibrachiatum SMF2, on Arabidopsis primary roots. TK VI inhibited root growth by suppressing cell division and cell elongation, and disrupting root stem cell niche maintenance. TK VI increased auxin content and disrupted auxin response gradients in root tips. Further, we screened the Arabidopsis TK VI-resistant mutant tkr1. tkr1 harbors a point mutation in GORK, which encodes gated outwardly rectifying K(+) channel proteins. This mutation alleviated TK VI-induced suppression of K(+) efflux in roots, thereby stabilizing the auxin gradient. The tkr1 mutant also resisted the phytotoxicity of alamethicin. Our results indicate that GORK channels play a key role in peptaibol–plant interaction and that there is an inter-relationship between GORK channels and maintenance of auxin homeostasis. The cellular and molecular insight into the peptaibol-induced inhibition of plant root growth advances our understanding of Trichoderma–plant interactions.
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spelling pubmed-48092822016-03-29 Cellular and molecular insight into the inhibition of primary root growth of Arabidopsis induced by peptaibols, a class of linear peptide antibiotics mainly produced by Trichoderma spp. Shi, Wei-Ling Chen, Xiu-Lan Wang, Li-Xia Gong, Zhi-Ting Li, Shuyu Li, Chun-Long Xie, Bin-Bin Zhang, Wei Shi, Mei Li, Chuanyou Zhang, Yu-Zhong Song, Xiao-Yan J Exp Bot Research Paper Trichoderma spp. are well known biocontrol agents that produce a variety of antibiotics. Peptaibols are a class of linear peptide antibiotics mainly produced by Trichoderma. Alamethicin, the most studied peptaibol, is reported as toxic to plants at certain concentrations, while the mechanisms involved are unclear. We illustrated the toxic mechanisms of peptaibols by studying the growth-inhibitory effect of Trichokonin VI (TK VI), a peptaibol from Trichoderma longibrachiatum SMF2, on Arabidopsis primary roots. TK VI inhibited root growth by suppressing cell division and cell elongation, and disrupting root stem cell niche maintenance. TK VI increased auxin content and disrupted auxin response gradients in root tips. Further, we screened the Arabidopsis TK VI-resistant mutant tkr1. tkr1 harbors a point mutation in GORK, which encodes gated outwardly rectifying K(+) channel proteins. This mutation alleviated TK VI-induced suppression of K(+) efflux in roots, thereby stabilizing the auxin gradient. The tkr1 mutant also resisted the phytotoxicity of alamethicin. Our results indicate that GORK channels play a key role in peptaibol–plant interaction and that there is an inter-relationship between GORK channels and maintenance of auxin homeostasis. The cellular and molecular insight into the peptaibol-induced inhibition of plant root growth advances our understanding of Trichoderma–plant interactions. Oxford University Press 2016-04 2016-02-05 /pmc/articles/PMC4809282/ /pubmed/26850879 http://dx.doi.org/10.1093/jxb/erw023 Text en © The Author 2016. Published by Oxford University Press on behalf of the Society for Experimental Biology. http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Paper
Shi, Wei-Ling
Chen, Xiu-Lan
Wang, Li-Xia
Gong, Zhi-Ting
Li, Shuyu
Li, Chun-Long
Xie, Bin-Bin
Zhang, Wei
Shi, Mei
Li, Chuanyou
Zhang, Yu-Zhong
Song, Xiao-Yan
Cellular and molecular insight into the inhibition of primary root growth of Arabidopsis induced by peptaibols, a class of linear peptide antibiotics mainly produced by Trichoderma spp.
title Cellular and molecular insight into the inhibition of primary root growth of Arabidopsis induced by peptaibols, a class of linear peptide antibiotics mainly produced by Trichoderma spp.
title_full Cellular and molecular insight into the inhibition of primary root growth of Arabidopsis induced by peptaibols, a class of linear peptide antibiotics mainly produced by Trichoderma spp.
title_fullStr Cellular and molecular insight into the inhibition of primary root growth of Arabidopsis induced by peptaibols, a class of linear peptide antibiotics mainly produced by Trichoderma spp.
title_full_unstemmed Cellular and molecular insight into the inhibition of primary root growth of Arabidopsis induced by peptaibols, a class of linear peptide antibiotics mainly produced by Trichoderma spp.
title_short Cellular and molecular insight into the inhibition of primary root growth of Arabidopsis induced by peptaibols, a class of linear peptide antibiotics mainly produced by Trichoderma spp.
title_sort cellular and molecular insight into the inhibition of primary root growth of arabidopsis induced by peptaibols, a class of linear peptide antibiotics mainly produced by trichoderma spp.
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4809282/
https://www.ncbi.nlm.nih.gov/pubmed/26850879
http://dx.doi.org/10.1093/jxb/erw023
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