https://www.ahs.ac.cn/images/0513-353X/images/top-banner1.jpg|#|苹果
https://www.ahs.ac.cn/images/0513-353X/images/top-banner2.jpg|#|甘蓝
https://www.ahs.ac.cn/images/0513-353X/images/top-banner3.jpg|#|菊花
https://www.ahs.ac.cn/images/0513-353X/images/top-banner4.jpg|#|灵芝
https://www.ahs.ac.cn/images/0513-353X/images/top-banner5.jpg|#|桃
https://www.ahs.ac.cn/images/0513-353X/images/top-banner6.jpg|#|黄瓜
https://www.ahs.ac.cn/images/0513-353X/images/top-banner7.jpg|#|蝴蝶兰
https://www.ahs.ac.cn/images/0513-353X/images/top-banner8.jpg|#|樱桃
https://www.ahs.ac.cn/images/0513-353X/images/top-banner9.jpg|#|观赏荷花
https://www.ahs.ac.cn/images/0513-353X/images/top-banner10.jpg|#|菊花
https://www.ahs.ac.cn/images/0513-353X/images/top-banner11.jpg|#|月季
https://www.ahs.ac.cn/images/0513-353X/images/top-banner12.jpg|#|菊花

园艺学报 ›› 2016, Vol. 43 ›› Issue (11): 2073-2080.doi: 10.16420/j.issn.0513-353x.2016-0435

• 果树 •    下一篇

MdMYB73 的分子克隆及其在苹果愈伤组织和拟南芥幼苗中的盐抗性功能鉴定

张全艳,刘 晓,于建强,胡大刚*,郝玉金*   

  1. 山东农业大学园艺科学与工程学院,作物生物学国家重点实验室,农业部黄淮地区园艺作物生物学与种质创制重
    点实验室,山东泰安 271018
  • 出版日期:2016-11-25 发布日期:2016-11-25
  • 基金资助:

    :国家自然科学基金项目(31601728);山东农业大学科技创新基金项目(24024)

Molecular Cloning and Functional Characterization of MdMYB73 Reveals Its Involvement in Salt Tolerance in Apple Callus and Arabidopsis

ZHANG Quan-yan,LIU Xiao,YU Jian-qiang,HU Da-gang*,and HAO Yu-jin*   

  1. State Key Laboratory of Crop Biology,MOA Key Laboratory of Horticultural Crop Biology(Huanghuai Region)and
    Germplasm Innovation,College of Horticulture Science and Engineering,Shandong Agricultural University,Tai’an,
    Shandong 271018,China
  • Online:2016-11-25 Published:2016-11-25

摘要:

从‘嘎拉’苹果中克隆了一个MYB 转录因子基因(序列号:MDP0000894463)。该基因包
含长为729 bp 完整的开放阅读框,编码243 个氨基酸,预测其蛋白质分子量为26.34 kD,等电点为9.29。
系统进化树分析表明,这一MYB 转录因子与拟南芥AtMYB73 同源序列相似性最高,因此将其命名为
MdMYB73。功能域分析表明,MdMYB73 蛋白含有保守的R2R3-type MYB 绑定域。荧光定量PCR 分析
表明,MdMYB73 在苹果的各个组织均有表达,在叶片和花中表达相对较高;MdMYB73 的表达明显受盐
胁迫的诱导。将异位表达MdMYB73 的拟南芥幼苗进行抗盐鉴定,结果表明MdMYB73 负调控拟南芥盐胁
迫抗性;同时,AtSOS1,AtSOS3 和AtNHX1 抗盐相关基因的表达水平显著降低,表明MdMYB73 可能负
调控SOS 反应,影响拟南芥抵抗高盐胁迫过程。将MdMYB73 基因遗传转化苹果愈伤组织,抗盐表型分
析表明,MdMYB73 过量表达也明显降低了转基因愈伤组织对盐胁迫的抗性。

关键词: 苹果, MYB, MdMYB73, SOS, 盐胁迫, 基因表达

Abstract:

A MYB transcription factor(TF)(GenBank accession number:MDP0000894463)was
cloned from Malus × domestica‘Royal Gala’. Sequence analysis showed that the length of this gene
was 729 bp,which encoded 243 amino acids. It was predicted that the molecular mass of this protein was
26.34 kD,and pI was 9.29. Phylogenetic tree indicated that our cloned apple MYB TF exhibited the
highest sequence similarity to Arabidopsis AtMYB73,so named MdMYB73. Analysis of functional
domain showed that the MdMYB73 protein included the conserved R2R3-type MYB domain. Quantitative
real-time PCR(qRT-PCR)analysis demonstrated that the MdMYB73 gene was extensively expressed in
different tissues and organs of apple. Specially,the expression level of MdMYB73 was relatively higher in apple leaves and flowers. Meanwhile,the expression of MdMYB73 was obviously induced by salt stress. In
addition,ectopic expression of MdMYB73 decreased salt stress resistance in Arabidopsis,indicating that
MdMYB73 negatively regulated the salt tolerance. qRT-PCR analysis showed that the expression levels of
salt stress-related genes AtSOS1,AtSOS3 and AtNHX1 were significantly decreased in transgenic
Arabidopsis plants,suggesting that MdMYB73 negatively regulated SOS pathway. Finally,salt-tolerance
assay indicated that overexpression of MdMYB73 remarkably decreased the tolerance of transgenic apple
callus to high salinity,further supporting that MdMYB73 negatively control salt tolerance in apple.

Key words: apple, MYB, MdMYB73, SOS, salt stress, gene expression

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