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ER5,一个编码乙烯应答类胚胎发育晚期丰富蛋白的番茄cDNA:特性及对干旱、脱落酸和创伤的响应表达

ER5, a tomato cDNA encoding an ethylene-responsive LEA-like protein: characterization and expression in response to drought, ABA and wounding.

作者信息

Zegzouti H, Jones B, Marty C, Lelièvre J M, Latché A, Pech J C, Bouzayen M

机构信息

Ecole Nationale Supérieure Agronomique de Toulouse, UA-INRA, France.

出版信息

Plant Mol Biol. 1997 Dec;35(6):847-54. doi: 10.1023/a:1005860302313.

Abstract

We report the isolation by differential display of a novel tomato ethylene-responsive cDNA, designated ER5. RT-PCR analysis of ER5 expression revealed an early (15 min) and transient induction by ethylene in tomato fruit, leaves and roots. ER5 mRNA accumulated during 2 h of ethylene treatment and thereafter underwent a dramatic decline leading to undetectable expression after 5 h of treatment. The full-length cDNA clone of 748 bp was obtained and DNA sequence analysis showed strong homologies to members of the atypical hydrophobic group of the LEA protein family. The predicted amino acid sequence shows 67%, 64%, 64%, and 61% sequence identity with the tomato Lemmi9, soybean D95-4, cotton Lea14-A, and resurrection plant pcC27-45 gene products, respectively. As with the other members of this group, ER5 encodes a predominantly hydrophobic protein. Prolonged drought stress stimulates ER5 expression in leaves and roots, while ABA induction of this ethylene-responsive clone is confined to the leaves. The use of 1-MCP, an inhibitor of ethylene action, indicates that the drought induction of ER5 is ethylene-mediated in tomato roots. Finally, wounding stimulates ER5 mRNA accumulation in leaves and roots. Among the Lea gene family this novel clone is the first to display an ethylene-regulated expression.

摘要

我们报告了通过差异显示法分离出一个新的番茄乙烯应答cDNA,命名为ER5。对ER5表达的RT-PCR分析表明,乙烯在番茄果实、叶片和根中能早期(15分钟)且短暂地诱导其表达。乙烯处理2小时期间ER5 mRNA积累,此后急剧下降,处理5小时后表达量变得无法检测。获得了748 bp的全长cDNA克隆,DNA序列分析显示其与LEA蛋白家族非典型疏水组的成员有很强的同源性。预测的氨基酸序列与番茄Lemmi9、大豆D95-4、棉花Lea14-A和复苏植物pcC27-45基因产物的序列同一性分别为67%、64%、64%和61%。与该组的其他成员一样,ER5编码一种主要为疏水的蛋白质。长期干旱胁迫会刺激叶片和根中ER5的表达,而脱落酸对这个乙烯应答克隆的诱导仅限于叶片。使用乙烯作用抑制剂1-MCP表明,番茄根中ER5的干旱诱导是由乙烯介导的。最后,创伤会刺激叶片和根中ER5 mRNA的积累。在LEA基因家族中,这个新克隆是第一个显示出乙烯调节表达的。

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