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首页> 外文期刊>Plant Molecular Biology Reporter >Isolation and Characterization of a Novel Drought Responsive Gene Encoding a Glycine-rich RNA-binding Protein in Malus prunifolia (Willd.) Borkh.
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Isolation and Characterization of a Novel Drought Responsive Gene Encoding a Glycine-rich RNA-binding Protein in Malus prunifolia (Willd.) Borkh.

机译:分离和鉴定一种新的干旱反应基因,该基因编码海棠(Wald。)Borkh中富含甘氨酸的RNA结合蛋白。

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摘要

Drought is one of the most severe environmental factors that impair plant growth and agricultural production. To investigate how Malus prunifolia, an excellent apple rootstock with strong drought tolerance, adapts to stress and to identify genes for improving this important trait, we constructed a suppression subtractive hybridization cDNA library from seedling leaves under water stress. The cDNA for a drought-inducible glycine-rich RNA-binding protein (GR-RBP) was isolated, and the gene was characterized for its role in the response of Malus seedlings to drought stress. cDNA clone MpGR-RBP1 has 781 nucleotides, with an open reading frame of 516 nucleotides. The deduced 171 amino acids contain an amino-terminal RNA recognition motif and a carboxyl-terminal glycine-rich domain, with structural similarity to a class of stress-induced GR-RBP proteins found in other plants. Phylogenetic analysis confirmed that the MpGR-RBP1 protein belongs to the plant GR-RBP family, members of which play important roles in posttranscriptional regulation of gene expression under various stress conditions. The expression profile of MpGR-RBP1 transcripts was detected by quantitative real-time polymerase chain reaction (PCR) and semiquantitative reverse transcriptase PCR. MpGR-RBP1 was expressed in both roots and leaves, with expression being higher in the latter. This is the first report of this class of protein in Malus plants, and the putative role of MpGR-RBP1 is discussed.
机译:干旱是影响植物生长和农业生产的最严重的环境因素之一。为了研究具有强大的抗旱性的优良苹果砧木苹果花(Malus prunifolia)如何适应胁迫并鉴定改善该重要性状的基因,我们从水分胁迫下的幼苗叶片中构建了抑制性消减杂交cDNA文库。分离出干旱诱导的富含甘氨酸的RNA结合蛋白(GR-RBP)的cDNA,并对该基因进行了表征,证明了其在海棠幼苗对干旱胁迫的响应中的作用。 cDNA克隆MpGR-RBP1有781个核苷酸,开放阅读框为516个核苷酸。推导的171个氨基酸包含一个氨基末端RNA识别基序和一个富含羧基末端甘氨酸的结构域,其结构与在其他植物中发现的一类胁迫诱导的GR-RBP蛋白相似。系统发育分析证实,MpGR-RBP1蛋白属于植物GR-RBP家族,其成员在各种胁迫条件下的基因表达的转录后调控中发挥重要作用。通过定量实时聚合酶链反应(PCR)和半定量逆转录酶PCR检测MpGR-RBP1转录物的表达谱。 MpGR-RBP1在根和叶中均表达,在后者中表达更高。这是苹果属植物中此类蛋白质的首次报道,并讨论了MpGR-RBP1的假定作用。

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