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An Alcohol Dehydrogenase Gene from Synechocystis sp. Confers Salt Tolerance in Transgenic Tobacco

Synechocystis salt-responsive gene 1 (sysr1) was engineered for expression in higher plants, and gene construction was stably incorporated into tobacco plants. We investigated the role of Sysr1 [a member of the alcohol dehydrogenase (ADH) superfamily] by examining the salt tolerance of sysr1-overexp...

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Autores principales: Yi, So Young, Ku, Seong Sub, Sim, Hee-Jung, Kim, Sang-Kyu, Park, Ji Hyun, Lyu, Jae Il, So, Eun Jin, Choi, So Yeon, Kim, Jonghyun, Ahn, Myung Suk, Kim, Suk Weon, Park, Hyunwoo, Jeong, Won Joong, Lim, Yong Pyo, Min, Sung Ran, Liu, Jang Ryol
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5698875/
https://www.ncbi.nlm.nih.gov/pubmed/29204151
http://dx.doi.org/10.3389/fpls.2017.01965
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author Yi, So Young
Ku, Seong Sub
Sim, Hee-Jung
Kim, Sang-Kyu
Park, Ji Hyun
Lyu, Jae Il
So, Eun Jin
Choi, So Yeon
Kim, Jonghyun
Ahn, Myung Suk
Kim, Suk Weon
Park, Hyunwoo
Jeong, Won Joong
Lim, Yong Pyo
Min, Sung Ran
Liu, Jang Ryol
author_facet Yi, So Young
Ku, Seong Sub
Sim, Hee-Jung
Kim, Sang-Kyu
Park, Ji Hyun
Lyu, Jae Il
So, Eun Jin
Choi, So Yeon
Kim, Jonghyun
Ahn, Myung Suk
Kim, Suk Weon
Park, Hyunwoo
Jeong, Won Joong
Lim, Yong Pyo
Min, Sung Ran
Liu, Jang Ryol
author_sort Yi, So Young
collection PubMed
description Synechocystis salt-responsive gene 1 (sysr1) was engineered for expression in higher plants, and gene construction was stably incorporated into tobacco plants. We investigated the role of Sysr1 [a member of the alcohol dehydrogenase (ADH) superfamily] by examining the salt tolerance of sysr1-overexpressing (sysr1-OX) tobacco plants using quantitative real-time polymerase chain reactions, gas chromatography-mass spectrometry, and bioassays. The sysr1-OX plants exhibited considerably increased ADH activity and tolerance to salt stress conditions. Additionally, the expression levels of several stress-responsive genes were upregulated. Moreover, airborne signals from salt-stressed sysr1-OX plants triggered salinity tolerance in neighboring wild-type (WT) plants. Therefore, Sysr1 enhanced the interconversion of aldehydes to alcohols, and this occurrence might affect the quality of green leaf volatiles (GLVs) in sysr1-OX plants. Actually, the Z-3-hexenol level was approximately twofold higher in sysr1-OX plants than in WT plants within 1–2 h of wounding. Furthermore, analyses of WT plants treated with vaporized GLVs indicated that Z-3-hexenol was a stronger inducer of stress-related gene expression and salt tolerance than E-2-hexenal. The results of the study suggested that increased C(6) alcohol (Z-3-hexenol) induced the expression of resistance genes, thereby enhancing salt tolerance of transgenic plants. Our results revealed a role for ADH in salinity stress responses, and the results provided a genetic engineering strategy that could improve the salt tolerance of crops.
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spelling pubmed-56988752017-12-04 An Alcohol Dehydrogenase Gene from Synechocystis sp. Confers Salt Tolerance in Transgenic Tobacco Yi, So Young Ku, Seong Sub Sim, Hee-Jung Kim, Sang-Kyu Park, Ji Hyun Lyu, Jae Il So, Eun Jin Choi, So Yeon Kim, Jonghyun Ahn, Myung Suk Kim, Suk Weon Park, Hyunwoo Jeong, Won Joong Lim, Yong Pyo Min, Sung Ran Liu, Jang Ryol Front Plant Sci Plant Science Synechocystis salt-responsive gene 1 (sysr1) was engineered for expression in higher plants, and gene construction was stably incorporated into tobacco plants. We investigated the role of Sysr1 [a member of the alcohol dehydrogenase (ADH) superfamily] by examining the salt tolerance of sysr1-overexpressing (sysr1-OX) tobacco plants using quantitative real-time polymerase chain reactions, gas chromatography-mass spectrometry, and bioassays. The sysr1-OX plants exhibited considerably increased ADH activity and tolerance to salt stress conditions. Additionally, the expression levels of several stress-responsive genes were upregulated. Moreover, airborne signals from salt-stressed sysr1-OX plants triggered salinity tolerance in neighboring wild-type (WT) plants. Therefore, Sysr1 enhanced the interconversion of aldehydes to alcohols, and this occurrence might affect the quality of green leaf volatiles (GLVs) in sysr1-OX plants. Actually, the Z-3-hexenol level was approximately twofold higher in sysr1-OX plants than in WT plants within 1–2 h of wounding. Furthermore, analyses of WT plants treated with vaporized GLVs indicated that Z-3-hexenol was a stronger inducer of stress-related gene expression and salt tolerance than E-2-hexenal. The results of the study suggested that increased C(6) alcohol (Z-3-hexenol) induced the expression of resistance genes, thereby enhancing salt tolerance of transgenic plants. Our results revealed a role for ADH in salinity stress responses, and the results provided a genetic engineering strategy that could improve the salt tolerance of crops. Frontiers Media S.A. 2017-11-17 /pmc/articles/PMC5698875/ /pubmed/29204151 http://dx.doi.org/10.3389/fpls.2017.01965 Text en Copyright © 2017 Yi, Ku, Sim, Kim, Park, Lyu, So, Choi, Kim, Ahn, Kim, Park, Jeong, Lim, Min and Liu. 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) or licensor 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
Yi, So Young
Ku, Seong Sub
Sim, Hee-Jung
Kim, Sang-Kyu
Park, Ji Hyun
Lyu, Jae Il
So, Eun Jin
Choi, So Yeon
Kim, Jonghyun
Ahn, Myung Suk
Kim, Suk Weon
Park, Hyunwoo
Jeong, Won Joong
Lim, Yong Pyo
Min, Sung Ran
Liu, Jang Ryol
An Alcohol Dehydrogenase Gene from Synechocystis sp. Confers Salt Tolerance in Transgenic Tobacco
title An Alcohol Dehydrogenase Gene from Synechocystis sp. Confers Salt Tolerance in Transgenic Tobacco
title_full An Alcohol Dehydrogenase Gene from Synechocystis sp. Confers Salt Tolerance in Transgenic Tobacco
title_fullStr An Alcohol Dehydrogenase Gene from Synechocystis sp. Confers Salt Tolerance in Transgenic Tobacco
title_full_unstemmed An Alcohol Dehydrogenase Gene from Synechocystis sp. Confers Salt Tolerance in Transgenic Tobacco
title_short An Alcohol Dehydrogenase Gene from Synechocystis sp. Confers Salt Tolerance in Transgenic Tobacco
title_sort alcohol dehydrogenase gene from synechocystis sp. confers salt tolerance in transgenic tobacco
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5698875/
https://www.ncbi.nlm.nih.gov/pubmed/29204151
http://dx.doi.org/10.3389/fpls.2017.01965
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