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拟南芥中渐进干旱对基因表达的脱落酸依赖型和非依赖型调控

Abscisic acid-dependent and -independent regulation of gene expression by progressive drought in Arabidopsis thaliana.

作者信息

Gosti F, Bertauche N, Vartanian N, Giraudat J

机构信息

Institut des Sciences Végétales, Centre National de la Recherche Scientifique UPR 40, Gif-sur-Yvette Cedex, France.

出版信息

Mol Gen Genet. 1995 Jan 6;246(1):10-8. doi: 10.1007/BF00290128.

Abstract

Four clones corresponding to Arabidopsis thaliana transcripts regulated by progressive drought stress were isolated. Abundance of the AtDi8, AtDi19 and AtDi21 mRNAs increased in both roots and leaves during progressive drought. The AtDr4 mRNA was expressed in a root-specific manner in regularly watered plants, and became undetectable under drought conditions. In all cases, the drought-induced modifications of mRNA abundance could be reversed by subsequent rehydration. The predicted AtDr4 protein displays extensive similarity to various members of the Künitz protein family, suggesting that AtDr4 might be a root-specific protease inhibitor. Of these four genes, only AtDi8 and AtDi21 responded to an exogenous supply of abscisic acid (ABA). Analysis of the ABA-deficient aba mutant demonstrated that endogenous ABA indeed participates in the drought regulation of these two transcripts. This ABA-dependent response was differentially affected in the various classes of ABA-insensitive Arabidopsis mutants. The AtDi19 and AtDr4 mRNAs both responded to drought in an ABA-independent manner, but at distinct thresholds of the progressive drought stress. Regulation of these four target genes by progressive drought stress thus appears to be mediated by at least three distinct signals, only one of which is ABA.

摘要

分离出了与拟南芥中受渐进性干旱胁迫调控的转录本相对应的四个克隆。在渐进性干旱期间,AtDi8、AtDi19和AtDi21 mRNA在根和叶中的丰度均增加。AtDr4 mRNA在正常浇水的植物中以根特异性方式表达,在干旱条件下无法检测到。在所有情况下,干旱诱导的mRNA丰度变化可通过随后的复水逆转。预测的AtDr4蛋白与库尼茨蛋白家族的各种成员具有广泛的相似性,表明AtDr4可能是一种根特异性蛋白酶抑制剂。在这四个基因中,只有AtDi8和AtDi21对外源脱落酸(ABA)供应有反应。对ABA缺陷型aba突变体的分析表明,内源性ABA确实参与了这两个转录本的干旱调控。这种ABA依赖性反应在不同类别的ABA不敏感拟南芥突变体中受到不同影响。AtDi19和AtDr4 mRNA均以ABA非依赖性方式对干旱作出反应,但在渐进性干旱胁迫的不同阈值下。因此,渐进性干旱胁迫对这四个靶基因的调控似乎由至少三种不同的信号介导,其中只有一种是ABA。

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