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通过过表达 CYP724A1 对拟南芥 dwf4 突变体进行功能互补。

Functional complementation of dwf4 mutants of Arabidopsis by overexpression of CYP724A1.

机构信息

Key Laboratory of Agro-ecological Processes in Subtropical Region, Institute of Subtropic Agriculture, Chinese Academy of Sciences, Mapoling of Changsha City, Changsha, Hunan 410125, PR China.

出版信息

J Plant Physiol. 2012 Mar 1;169(4):421-8. doi: 10.1016/j.jplph.2011.10.013. Epub 2011 Dec 22.

Abstract

An essential step in the biosynthesis of bioactive brassinosteroids (BRs) in plants is the hydroxylation at C-22, a reaction catalyzed by P450 enzymes of the CYP90B and CYP724B subfamilies. Genes for both types of enzymes are present in many species, and in rice (Oryza sativa) and tomato (Solanum lycopersicum) both CYP90B and CYP724B enzymes contribute to C-22 hydroxylation. In Arabidopsis (Arabidopsis thaliana), C-22 hydroxylation of BRs is catalyzed by CYP90B1 (encoded by DWF4) and null dwf4 mutants show severe symptoms of BR-deficiency. CYP724A1 (At5g14400), an Arabidopsis gene of unknown function and limited expression, encodes a P450 sharing less than 55% sequence identity to CYP724B proteins. We used transgenic plants of the null mutants dwf4-102 and a novel allele, bashful (bsf), ectopically expressing the CYP724A1 gene to investigate the potential activity of CYP724A1 as a C-22 hydroxylase of BRs. Defects associated with BR deficiency were reversed and a normal growth habit restored in transgenic dwf4-102 and bsf plants overexpressing CYP724A1. The vegetative phase was prolonged and the transgenic plants were on average larger than wild type plants with respect to several morphometric parameters. Fertility was restored in the transgenic plants but individual siliques yielded fewer and heavier seeds than those of wild type plants. The implications of these findings with regard to the functions of CYP724A1 and the activity of its encoded enzyme are discussed.

摘要

植物中生物活性油菜素内酯(BRs)生物合成的一个重要步骤是在 C-22 位的羟化,该反应由 CYP90B 和 CYP724B 亚家族的 P450 酶催化。许多物种都存在这两种酶的基因,在水稻(Oryza sativa)和番茄(Solanum lycopersicum)中,CYP90B 和 CYP724B 酶都有助于 C-22 羟化。在拟南芥(Arabidopsis thaliana)中,BRs 的 C-22 羟化由 CYP90B1(由 DWF4 编码)催化,而 dwf4 突变体 null 表现出严重的 BR 缺乏症状。CYP724A1(At5g14400)是拟南芥的一个功能未知且表达受限的基因,编码的 P450 与 CYP724B 蛋白的序列同一性小于 55%。我们使用 dwf4-102 缺失突变体和一个新等位基因 bashful(bsf)的转基因植物,异位表达 CYP724A1 基因,研究 CYP724A1 作为 BRs 的 C-22 羟化酶的潜在活性。在过表达 CYP724A1 的转基因 dwf4-102 和 bsf 植物中,与 BR 缺乏相关的缺陷得到了逆转,正常的生长习性得到了恢复。转基因植物的营养生长阶段延长,与野生型植物相比,几个形态参数的平均值较大。在转基因植物中恢复了育性,但每个蒴果产生的种子数量较少且较重,低于野生型植物。讨论了这些发现对 CYP724A1 的功能及其编码酶活性的影响。

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