Knock-down the expression of TaH2B-7D using virus-induced gene silencing reduces wheat drought tolerance

Abstract Background Drought is a major abiotic stress affecting global wheat (Triticum aestivum L.) production. Exploration of drought-tolerant genes is essential for the genetic improvement of drought tolerance in wheat. Previous studies have shown that some histone encoding genes are involved in p...

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Main Authors: Xinbo Wang, Yongzhe Ren, Jingjing Li, Zhiqiang Wang, Zeyu Xin, Tongbao Lin
Format: Article
Language:English
Published: BMC 2019-03-01
Series:Biological Research
Subjects:
Online Access:http://link.springer.com/article/10.1186/s40659-019-0222-y
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spelling doaj-451dab821ec643b0898092deb5312b4f2020-11-25T02:56:30ZengBMCBiological Research0717-62872019-03-015211910.1186/s40659-019-0222-yKnock-down the expression of TaH2B-7D using virus-induced gene silencing reduces wheat drought toleranceXinbo Wang0Yongzhe Ren1Jingjing Li2Zhiqiang Wang3Zeyu Xin4Tongbao Lin5College of Agronomy, Henan Agricultural UniversityCollege of Agronomy, Henan Agricultural UniversityCollege of Agronomy, Henan Agricultural UniversityCollege of Agronomy, Henan Agricultural UniversityCollege of Agronomy, Henan Agricultural UniversityCollege of Agronomy, Henan Agricultural UniversityAbstract Background Drought is a major abiotic stress affecting global wheat (Triticum aestivum L.) production. Exploration of drought-tolerant genes is essential for the genetic improvement of drought tolerance in wheat. Previous studies have shown that some histone encoding genes are involved in plant drought tolerance. However, whether the H2B family genes are involved in drought stress response remains unclear. Methods Here, we identified a wheat histone H2B family gene, TaH2B-7D, which was significantly up-regulated under drought stress conditions. Virus-induced gene silencing (VIGS) technology was used to further verify the function of TaH2B-7D in wheat drought tolerance. The phenotypic and physiological changes were examined in the TaH2B-7D knock-down plants. Results In the TaH2B-7D knock-down plants, relative electrolyte leakage rate and malonaldehyde (MDA) content significantly increased, while relative water content (RWC) and proline content significantly decreased compared with those in the non-knocked-down plants under drought stress conditions. TaH2B-7D knock-down plants exhibited severe sagging, wilting and dwarf phenotypes under drought stress conditions, but not in the non-knocked-down plants, suggesting that the former were more sensitive to drought stress. Conclusion These results indicate that TaH2B-7D potentially plays a vital role in conferring drought tolerance in wheat.http://link.springer.com/article/10.1186/s40659-019-0222-yDroughtTriticum aestivum L.TaH2B-7DKnock-down
collection DOAJ
language English
format Article
sources DOAJ
author Xinbo Wang
Yongzhe Ren
Jingjing Li
Zhiqiang Wang
Zeyu Xin
Tongbao Lin
spellingShingle Xinbo Wang
Yongzhe Ren
Jingjing Li
Zhiqiang Wang
Zeyu Xin
Tongbao Lin
Knock-down the expression of TaH2B-7D using virus-induced gene silencing reduces wheat drought tolerance
Biological Research
Drought
Triticum aestivum L.
TaH2B-7D
Knock-down
author_facet Xinbo Wang
Yongzhe Ren
Jingjing Li
Zhiqiang Wang
Zeyu Xin
Tongbao Lin
author_sort Xinbo Wang
title Knock-down the expression of TaH2B-7D using virus-induced gene silencing reduces wheat drought tolerance
title_short Knock-down the expression of TaH2B-7D using virus-induced gene silencing reduces wheat drought tolerance
title_full Knock-down the expression of TaH2B-7D using virus-induced gene silencing reduces wheat drought tolerance
title_fullStr Knock-down the expression of TaH2B-7D using virus-induced gene silencing reduces wheat drought tolerance
title_full_unstemmed Knock-down the expression of TaH2B-7D using virus-induced gene silencing reduces wheat drought tolerance
title_sort knock-down the expression of tah2b-7d using virus-induced gene silencing reduces wheat drought tolerance
publisher BMC
series Biological Research
issn 0717-6287
publishDate 2019-03-01
description Abstract Background Drought is a major abiotic stress affecting global wheat (Triticum aestivum L.) production. Exploration of drought-tolerant genes is essential for the genetic improvement of drought tolerance in wheat. Previous studies have shown that some histone encoding genes are involved in plant drought tolerance. However, whether the H2B family genes are involved in drought stress response remains unclear. Methods Here, we identified a wheat histone H2B family gene, TaH2B-7D, which was significantly up-regulated under drought stress conditions. Virus-induced gene silencing (VIGS) technology was used to further verify the function of TaH2B-7D in wheat drought tolerance. The phenotypic and physiological changes were examined in the TaH2B-7D knock-down plants. Results In the TaH2B-7D knock-down plants, relative electrolyte leakage rate and malonaldehyde (MDA) content significantly increased, while relative water content (RWC) and proline content significantly decreased compared with those in the non-knocked-down plants under drought stress conditions. TaH2B-7D knock-down plants exhibited severe sagging, wilting and dwarf phenotypes under drought stress conditions, but not in the non-knocked-down plants, suggesting that the former were more sensitive to drought stress. Conclusion These results indicate that TaH2B-7D potentially plays a vital role in conferring drought tolerance in wheat.
topic Drought
Triticum aestivum L.
TaH2B-7D
Knock-down
url http://link.springer.com/article/10.1186/s40659-019-0222-y
work_keys_str_mv AT xinbowang knockdowntheexpressionoftah2b7dusingvirusinducedgenesilencingreduceswheatdroughttolerance
AT yongzheren knockdowntheexpressionoftah2b7dusingvirusinducedgenesilencingreduceswheatdroughttolerance
AT jingjingli knockdowntheexpressionoftah2b7dusingvirusinducedgenesilencingreduceswheatdroughttolerance
AT zhiqiangwang knockdowntheexpressionoftah2b7dusingvirusinducedgenesilencingreduceswheatdroughttolerance
AT zeyuxin knockdowntheexpressionoftah2b7dusingvirusinducedgenesilencingreduceswheatdroughttolerance
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