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

机译: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

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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.
机译:Di19(干旱诱导的protein19)家族是一种新型的Cys2 / His2锌指蛋白。在这项研究中,拟南芥Di19-3在功能上进行了表征。实验结果表明,AtDi19-3是一种转录激活因子,可以与TACA(A / G)T序列结合。 NaCl,甘露醇和脱落酸(ABA)显着诱导了AtDi19-3在植物中的表达。 AtDi19-3的T-DNA插入突变导致植物对干旱和高盐分胁迫和ABA的耐受性增强,而AtDi19-3的过表达导致转基因植物对干旱,盐和ABA敏感的表型。在存在NaCl,甘露醇或ABA的条件下,Atdi19-3突变体的种子发芽率和子叶绿化率较高,但在AtDi19-3过表达的转基因植物中,其发芽率低于野生型。 Atdi19-3突变体幼苗的根系较长,而AtDi19-3过表达转基因幼苗的根系比野生型的更短。 Atdi19-3突变体的叶绿素和脯氨酸含量较高,而AtDi19-3过表达的幼苗的叶绿素和脯氨酸含量低于野生型。 Atdi19-3突变体表现出更高的耐旱性,而AtDi19-3过表达的转基因植物比野生型具有更高的干旱敏感性。此外,在Atdi19-3突变体和AtDi19-3转基因植物中,与ABA信号转导通路相关的基因的表达发生了变化。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反应。

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