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Characterization of a rice gene showing organ-specific expression in response to salt stress and drought.

机译:水稻基因响应盐胁迫和干旱而显示器官特异性表达的特征。

摘要

Protein changes induced by salinity stress were investigated in the roots of the salt-sensitive rice cultivar Taichung native 1. We found eight proteins to be induced and obtained partial sequences of one with a molecular mass of 15 kilodaltons and an isoelectric point of 5.5. Using an oligonucleotide probe based on this information, a cDNA clone, salT, was selected and found to contain an open reading frame coding for a protein of 145 amino acid residues. salT mRNA accumulates very rapidly in sheaths and roots from mature plants and seedlings upon treatment with Murashige and Skoog salts (1%), air drying, abscisic acid (20 microM), polyethylene glycol (5%), sodium chloride (1%), and potassium chloride (1%). Generally, no induction was seen in the leaf lamina even when the stress should affect all parts of the plant uniformly. The organ-specific response of salT is correlatable with the pattern of Na+ accumulation during salt stress.
机译:在盐敏感水稻品种台中本地1的根部研究了盐分胁迫诱导的蛋白质变化。我们发现了8种蛋白质被诱导,并获得了分子量为15千道尔顿,等电点为5.5的一种蛋白质的部分序列。使用基于该信息的寡核苷酸探针,选择了cDNA克隆salT,并发现其包含编码145个氨基酸残基的蛋白质的开放阅读框。经过Murashige和Skoog盐(1%),风干,脱落酸(20 microM),聚乙二醇(5%),氯化钠(1%)处理后,salT mRNA在成熟植物和幼苗的鞘和根中迅速积累。和氯化钾(1%)。通常,即使胁迫应均匀地影响植物的所有部分,也没有在叶片上看到诱导现象。 salT的器官特异性反应与盐胁迫期间Na +积累的模式相关。

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