棉花1-氨基环丙烷-1-羧酸合成酶瞬时表达基因的分子特征。

Xia Wang, Ying Zhang, Jiedao Zhang, Cheng Cheng, Xingqi Guo
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引用次数: 5

摘要

乙烯在植物生长发育中起着重要的作用。1-氨基环丙烷-1-羧酸(ACC)合成酶(ACS)是乙烯生物合成的关键酶,一直是乙烯研究的热点。本研究分离到了棉花ACS基因GhACS1 (Gossypium hirsutum ACS1)。GhACS1全长cDNA编码一个476个氨基酸的蛋白,包含7个保守区、11个不变氨基酸残基和PLP结合活性位点,这些都是ACC合酶的特征。比对分析表明,GhACS1与来自不同物种的其他已知ACC合酶具有高度的同源性。在棉花基因组DNA序列中检测到2个内含子,Southern blot分析结果表明,棉花ACC合成酶可能存在一个多基因家族。从24种不同ACC合酶构建的系统发育树中,我们确定GhACS1属于II类,与柑橘伤诱导ACS密切相关。分析GhACS1的5'侧区发现了一组假定的顺式作用元件。表达分析结果显示,GhACS1在损伤、脱落酸(ABA)和CuCl(2)处理后呈现瞬时表达特性。这些结果表明,GhACS1在响应某些刺激时短暂表达,可能参与乙烯的产生和胁迫信号的传递。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular characterization of a transient expression gene encoding for 1-aminocyclopropane-1-carboxylate synthase in cotton (Gossypium hirsutum L.).

Ethylene performs an important function in plant growth and development. 1-aminocyclopropane-1-carboxylate (ACC) synthase (ACS), the key enzyme involved in ethylene biosynthesis, has been the focus of most ethylene studies. Here, a cotton ACS gene referred to as Gossypium hirsutum ACS1 (GhACS1), was isolated. The full-length cDNA of GhACS1 encodes for a 476-amino acid protein which harbors seven conserved regions, 11 invariant amino acid residues, and the PLP binding active site, all of which characterize ACC synthases. Alignment analysis showed that GhACS1 shared a high degree of identity with other known ACC synthases from different species. Two introns were detected in the genomic DNA sequence, and the results of Southern blot analysis suggested that there might be a multi-gene family encoding for ACC synthase in cotton. From the phylogenetic tree constructed with 24 different kinds of ACC synthases, we determined that GhACS1 falls into group II, and was closely associated with the wound-inducible ACS of citrus. The analysis of the 5' flanking region of GhACS1 revealed a group of putative cis-acting elements. The results of expression analysis showed that GhACS1 displayed its transient expression nature after wounding, abscisic acid (ABA), and CuCl(2) treatments. These results indicate that GhACS1, which was transiently expressed in response to certain stimuli, may be involved in the production of ethylene for the transmission of stress signals.

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