Literature DB >> 27754576

Overexpression of MsDREB6.2 results in cytokinin-deficient developmental phenotypes and enhances drought tolerance in transgenic apple plants.

Xiong Liao1, Xiao Guo1, Qi Wang2, Yantao Wang1, Di Zhao1, Liping Yao1, Shuang Wang1, Guojie Liu1, Tianhong Li1,3.   

Abstract

Dehydration-responsive element binding factors (DREBs) play important roles in plant growth, development, and stress signaling pathways in model plants. However, little is known about the function of DREBs in apple (Malus × domestica), a widely cultivated crop that is frequently threatened by drought. We isolated a DREB gene from Malus sieversii (Ledeb.) Roem., MsDREB6.2, and investigated its functions using overexpression analysis and chimeric repressor gene-silencing technology (CRES-T). We identified possible target genes of the protein encoded by MsDREB6.2 using electrophoretic mobility shift assays (EMSAs) and chromatin immunoprecipitation (ChIP). Overexpression of MsDREB6.2 increased the expression of a key cytokinin (CK) catabolism gene, MdCKX4a, which led to a significant reduction in endogenous CK levels, and caused a decrease in shoot:root ratio in transgenic apple plants. Overexpression of MsDREB6.2 resulted in a decrease in stomatal aperture and density and an increase in root hydraulic conductance (L0 ), and thereby enhanced drought tolerance in transgenic plants. Furthermore, manipulating the level of MsDREB6.2 expression altered the expression of two aquaporin (AQP) genes. The effect of the two AQP genes on L0 was further characterized using the AQP inhibitor HgCl2 . Based on these observations, we conclude that MsDREB6.2 enhances drought tolerance and that its function may be due, at least in part, to its influence on stomatal opening, root growth, and AQP expression. These results may have applications in apple rootstock breeding programs aimed at developing drought-resistant apple varieties.
© 2016 The Authors The Plant Journal © 2016 John Wiley & Sons Ltd.

Entities:  

Keywords:  CRES-T; DREB6-type transcription factor; Malus sieversii Roem; aquaporin; cytokinin; drought stress; root hydraulic conductance; shoot:root ratio

Mesh:

Substances:

Year:  2017        PMID: 27754576     DOI: 10.1111/tpj.13401

Source DB:  PubMed          Journal:  Plant J        ISSN: 0960-7412            Impact factor:   6.417


  23 in total

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Authors:  Yantao Wang; Chen Feng; Zefeng Zhai; Xiang Peng; Yanyan Wang; Yueting Sun; Jian Li; Xiaoshuai Shen; Yuqin Xiao; Shengjiao Zhu; Xuewang Huang; Tianhong Li
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2.  Transcriptome-based identification and expression profiling of AP2/ERF members in Caragana intermedia and functional analysis of CiDREB3.

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3.  Improved abiotic stress tolerance in Arabidopsis by constitutive active form of a banana DREB2 type transcription factor, MaDREB20.CA, than its native form, MaDREB20.

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Journal:  Protoplasma       Date:  2022-08-23       Impact factor: 3.186

Review 4.  Mitigating abiotic stress: microbiome engineering for improving agricultural production and environmental sustainability.

Authors:  Manisha Phour; Satyavir S Sindhu
Journal:  Planta       Date:  2022-09-20       Impact factor: 4.540

5.  Zinc-finger protein MdBBX7/MdCOL9, a target of MdMIEL1 E3 ligase, confers drought tolerance in apple.

Authors:  Pengxiang Chen; Fang Zhi; Xuewei Li; Wenyun Shen; Mingjia Yan; Jieqiang He; Chana Bao; Tianle Fan; Shuangxi Zhou; Fengwang Ma; Qingmei Guan
Journal:  Plant Physiol       Date:  2022-01-20       Impact factor: 8.005

6.  Virus-Induced Gene Silencing (VIGS) in Aegilops tauschii and Its Use in Functional Analysis of AetDREB2.

Authors:  Elahe Tavakol
Journal:  Mol Biotechnol       Date:  2018-01       Impact factor: 2.695

7.  Improvement of drought tolerance by overexpressing MdATG18a is mediated by modified antioxidant system and activated autophagy in transgenic apple.

Authors:  Xun Sun; Ping Wang; Xin Jia; Liuqing Huo; Runmin Che; Fengwang Ma
Journal:  Plant Biotechnol J       Date:  2017-08-22       Impact factor: 9.803

8.  NAC transcription factor JUNGBRUNNEN1 enhances drought tolerance in tomato.

Authors:  Venkatesh P Thirumalaikumar; Vikas Devkar; Nikolay Mehterov; Shawkat Ali; Rengin Ozgur; Ismail Turkan; Bernd Mueller-Roeber; Salma Balazadeh
Journal:  Plant Biotechnol J       Date:  2017-08-04       Impact factor: 9.803

9.  Structure and transcriptional regulation of the major intrinsic protein gene family in grapevine.

Authors:  Darren Chern Jan Wong; Li Zhang; Isabelle Merlin; Simone D Castellarin; Gregory A Gambetta
Journal:  BMC Genomics       Date:  2018-04-11       Impact factor: 3.969

Review 10.  Role and Regulation of Cytokinins in Plant Response to Drought Stress.

Authors:  Nguyen Ngoc Hai; Nguyen Nguyen Chuong; Nguyen Huu Cam Tu; Anna Kisiala; Xuan Lan Thi Hoang; Nguyen Phuong Thao
Journal:  Plants (Basel)       Date:  2020-03-31
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