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拟南芥干旱诱导蛋白 Di19-3 参与植物对干旱和高盐胁迫的响应。

Arabidopsis drought-induced protein Di19-3 participates in plant response to drought and high salinity stresses.

机构信息

Hubei Key Laboratory of Genetic Regulation and Integrative Biology, College of Life Sciences, Central China Normal University, Wuhan, 430079, China.

出版信息

Plant Mol Biol. 2014 Dec;86(6):609-25. doi: 10.1007/s11103-014-0251-4. Epub 2014 Sep 14.

Abstract

Di19 (drought-induced protein19) family is a novel type of Cys2/His2 zinc-finger proteins. In this study, Arabidopsis Di19-3 was functionally characterized. The experimental results revealed that AtDi19-3 is a transcriptional activator, and could bind to the TACA(A/G)T sequence. AtDi19-3 expression in plants was remarkably induced by NaCl, mannitol and abscisic acid (ABA). T-DNA insertion mutation of AtDi19-3 results in an increase in plant tolerance to drought and high salinity stresses and ABA, whereas overexpression of AtDi19-3 leads to a drought-, salt- and ABA-sensitive phenotype of the transgenic plants. In the presence of NaCl, mannitol or ABA, rates of seed germination and cotyledon greening in Atdi19-3 mutant were higher, but in AtDi19-3 overexpression transgenic plants were lower than those in wild type. Roots of Atdi19-3 mutant seedlings were longer, but those of AtDi19-3 overexpression transgenic seedlings were shorter than those of wild type. Chlorophyll and proline contents in Atdi19-3 mutant were higher, but in AtDi19-3 overexpression seedlings were lower than those in wild type. Atdi19-3 mutant showed greater drought-tolerance, whereas AtDi19-3 overexpression transgenic plants exhibited more drought-sensitivity than wild type. Furthermore, expression of the genes related to ABA signaling pathway was altered in Atdi19-3 mutant and AtDi19-3 transgenic plants. These data suggest that AtDi19-3 may participate in plant response to drought and salt stresses in an ABA-dependent manner.

摘要

Di19(干旱诱导蛋白 19)家族是一种新型的 Cys2/His2 锌指蛋白。本研究对拟南芥 Di19-3 进行了功能表征。实验结果表明,AtDi19-3 是一种转录激活因子,能够与 TACA(A/G)T 序列结合。植物中 AtDi19-3 的表达受 NaCl、甘露醇和脱落酸(ABA)的显著诱导。AtDi19-3 的 T-DNA 插入突变导致植物对干旱和高盐胁迫以及 ABA 的耐受性增加,而 AtDi19-3 的过表达导致转基因植物对干旱、盐和 ABA 敏感。在 NaCl、甘露醇或 ABA 存在的情况下,Atdi19-3 突变体的种子发芽率和子叶变绿率较高,但 AtDi19-3 过表达转基因植物的种子发芽率和子叶变绿率低于野生型。Atdi19-3 突变体幼苗的根较长,但 AtDi19-3 过表达转基因幼苗的根较短。Atdi19-3 突变体的叶绿素和脯氨酸含量较高,但 AtDi19-3 过表达幼苗的叶绿素和脯氨酸含量较低。Atdi19-3 突变体的耐旱性更强,而 AtDi19-3 过表达转基因植物的耐旱性比野生型更差。此外,Atdi19-3 突变体和 AtDi19-3 转基因植物中与 ABA 信号通路相关的基因表达发生了改变。这些数据表明,AtDi19-3 可能以 ABA 依赖的方式参与植物对干旱和盐胁迫的响应。

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