首页> 外文OA文献 >Characterization of Five Abscisic Acid-Responsive cDNA Clones Isolated from the Desiccation-Tolerant Plant Craterostigma plantagineum and Their Relationship to Other Water-Stress Genes 1
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Characterization of Five Abscisic Acid-Responsive cDNA Clones Isolated from the Desiccation-Tolerant Plant Craterostigma plantagineum and Their Relationship to Other Water-Stress Genes 1

机译:从耐干旱植物Cratterostigma plantagineum分离的五个脱落酸响应cDNA克隆的表征及其与其他水分胁迫基因的关系1

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摘要

Leaves of resurrection plants tolerate desiccation as do embryos of many higher plants. From the resurrection plant Craterostigma plantagineum a number of desiccation-related transcripts have recently been cloned; they are abundantly expressed in dried leaves and abscisic acid-treated dried callus (D Bartels, K Schneider, G Terstappen, D Piatkowski, F Salamini [1990] Planta 18: 27-34). Five distinct cDNA clones representing low copy number genes were selected for further characterization. Their nucleotide sequences were determined and proteins were predicted with a molecular mass between 16 and 34 kilodaltons. Three of these proteins have unusual amino acid compositions and extreme hydrophilic characters. Two of them contain a cluster of contiguous serine residues and lysine-rich repeats. These sequence motifs display homologies to desiccation-related genes expressed in embryos or dehydrated seedlings of several plants. A third cDNA clone contains tracts of sequences which are related to a cotton Lea (late embryogenesis abundant) gene (JC Baker, C Steele, L Dure III [1988] Plant Mol Biol II: 277-291). Secondary structure predictions are discussed and suggest that the deduced proteins could play a role in protecting core cell structures in a dehydrated cell. It is concluded that at least in part the gene products involved in the desiccation-induced pathways are common to leaves of resurrection plants and embryos. Two cDNA clones appear to code for Craterostigma-specific mRNAs. The expression patterns of all five transcripts were studied in comparison to desiccated leaves in dehydrated roots, in wound-stressed leaves and in salt-stressed callus. The data obtained point to the possibility that not only specificity of induction but also the expression level of specific gene products may be of importance for osmoprotection.
机译:复活植物的叶子可以忍受干燥,许多高等植物的胚也一样。最近从复活植物Craterostigma plantagineum中克隆了许多与干燥有关的转录本。它们在干燥的叶子和经脱落酸处理的干燥的愈伤组织中大量表达(D Bartels,K Schneider,G Terstappen,D Piatkowski,F Salamini [1990] Planta 18:27-34)。选择了代表低拷贝数基因的五个不同的cDNA克隆进行进一步表征。确定了它们的核苷酸序列,并预测了分子量在16至34千道尔顿之间的蛋白质。这些蛋白质中的三种具有异常的氨基酸组成和极高的亲水性。其中两个包含一簇连续的丝氨酸残基和富含赖氨酸的重复序列。这些序列基序显示出与几种植物的胚胎或脱水幼苗中表达的干燥相关基因的同源性。第三个cDNA克隆含有与棉花Lea(晚期胚胎发生丰富)基因有关的序列片段(JC Baker,C Steele,L Dure III [1988] Plant Mol Biol II:277-291)。讨论了二级结构预测,并暗示了推导的蛋白质可能在保护脱水细胞中的核心细胞结构中发挥作用。结论是,至少部分参与干燥诱导途径的基因产物是复活植物和胚胎叶片共有的。两个cDNA克隆似乎编码Craterostigma特异性mRNA。与脱水根,脱水胁迫的叶片和盐胁迫的愈伤组织中的干燥叶片相比,研究了所有五种转录本的表达模式。获得的数据表明,不仅诱导的特异性而且特定基因产物的表达水平可能对渗透保护也很重要。

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