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大麦(Hordeum vulgare L.)的丙二烯氧化物环化酶——克隆与器官特异性表达。

The allene oxide cyclase of barley (Hordeum vulgare L.)--cloning and organ-specific expression.

作者信息

Maucher Helmut, Stenzel Irene, Miersch Otto, Stein Niels, Prasad Manoj, Zierold Uwe, Schweizer Patrick, Dorer Conrad, Hause Bettina, Wasternack Claus

机构信息

Institute of Plant Science and Crop Research, Corrensstrasse 3, D-06466 Gatersleben, Germany.

出版信息

Phytochemistry. 2004 Apr;65(7):801-11. doi: 10.1016/j.phytochem.2004.01.009.

Abstract

The naturally occurring enantiomer of the various octadecanoids and jasmonates is established in a biosynthetic step catalyzed by the allene oxide cyclase (AOC). The AOC converts an allene oxide formed by an allene oxide synthase (AOS). Here, we show cloning and characterization of cDNAs encoding the AOC and a third AOS, respectively, in addition to the two AOSs previously published (Plant J. 21, 199-213, 2000). The ORF of the AOC-cDNA of 717 bp codes for a protein of 238 amino acid residues carrying a putative chloroplast target sequence. Overexpression without chloroplast target sequence revealed AOC activity. The AOC was found to be a single copy gene which mapped on chromosome 6H. AOC mRNA accumulation appeared in leaf segments upon treatment with various jasmonates, octadecanoids and ABA or during stress such as treatment with sorbitol or glucose solutions. Infection with powdery mildew activated AOC expression in susceptible and resistant lines of barley which correlated with PR1b expression. Among different tissues of barley seedlings, the scutellar node and leaf base accumulated AOC mRNA preferentially which correlated with accumulation of mRNAs for other biosynthetic enzymes (lipoxygenases, AOSs). AOC mRNA accumulation appeared also abundantly in parts of the root containing the tip and correlated with elevated levels of jasmonates. The data suggest a link of AOC expression and JA formation and support role of JA in stress responses and development of barley.

摘要

各种十八碳类化合物和茉莉酸酯的天然对映体是在丙二烯氧化物环化酶(AOC)催化的生物合成步骤中形成的。AOC将丙二烯氧化物合酶(AOS)形成的丙二烯氧化物进行转化。在这里,除了之前已发表的两个AOS(《植物杂志》21卷,199 - 213页,2000年)外,我们分别展示了编码AOC和第三个AOS的cDNA的克隆及特性分析。717 bp的AOC - cDNA的开放阅读框编码一个含有假定叶绿体靶向序列的238个氨基酸残基的蛋白质。去除叶绿体靶向序列后的过表达显示出AOC活性。发现AOC是一个单拷贝基因,定位于6H染色体上。在用各种茉莉酸酯、十八碳类化合物和脱落酸处理后,或在诸如用山梨醇或葡萄糖溶液处理等胁迫过程中,叶片切段中出现AOC mRNA积累。白粉病感染激活了大麦感病和抗病品系中的AOC表达,这与PR1b表达相关。在大麦幼苗的不同组织中,盾片节和叶基部优先积累AOC mRNA,这与其他生物合成酶(脂氧合酶、AOS)的mRNA积累相关。AOC mRNA积累在根尖所在的部分根中也大量出现,并与茉莉酸酯水平升高相关。这些数据表明AOC表达与茉莉酸形成之间存在联系,并支持茉莉酸在大麦胁迫反应和发育中的作用。

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