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水稻 CYP703A3 是细胞色素 P450 羟化酶,对花粉外壁和花药表皮的发育是必需的。

Rice CYP703A3, a cytochrome P450 hydroxylase, is essential for development of anther cuticle and pollen exine.

机构信息

State Key Laboratory of Hybrid Rice, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, Shanghai, 200240, China.

出版信息

J Integr Plant Biol. 2014 Oct;56(10):979-94. doi: 10.1111/jipb.12212. Epub 2014 Jul 15.

Abstract

Anther cuticle and pollen exine act as protective envelopes for the male gametophyte or pollen grain, but the mechanism underlying the synthesis of these lipidic polymers remains unclear. Previously, a tapetum-expressed CYP703A3, a putative cytochrome P450 fatty acid hydroxylase, was shown to be essential for male fertility in rice (Oryza sativa L.). However, the biochemical and biological roles of CYP703A3 has not been characterized. Here, we observed that cyp703a3-2 caused by one base insertion in CYP703A3 displays defective pollen exine and anther epicuticular layer, which differs from Arabidopsis cyp703a2 in which only defective pollen exine occurs. Consistently, chemical composition assay showed that levels of cutin monomers and wax components were dramatically reduced in cyp703a3-2 anthers. Unlike the wide range of substrates of Arabidopsis CYP703A2, CYP703A3 functions as an in-chain hydroxylase only for a specific substrate, lauric acid, preferably generating 7-hydroxylated lauric acid. Moreover, chromatin immunoprecipitation and expression analyses revealed that the expression of CYP703A3 is directly regulated by Tapetum Degeneration Retardation, a known regulator of tapetum PCD and pollen exine formation. Collectively, our results suggest that CYP703A3 represents a conserved and diversified biochemical pathway for in-chain hydroxylation of lauric acid required for the development of male organ in higher plants.

摘要

花粉囊表皮和花粉外壁作为雄性配子体或花粉粒的保护包被,但这些脂类聚合物合成的机制尚不清楚。先前,研究表明一个在绒毡层中表达的 CYP703A3,一种假定的细胞色素 P450 脂肪酸羟化酶,对水稻(Oryza sativa L.)雄性育性是必需的。然而,CYP703A3 的生化和生物学功能尚未得到表征。在这里,我们观察到 CYP703A3 中的一个碱基插入导致 cyp703a3-2 突变,表现出花粉外壁和花药表皮层的缺陷,这与 Arabidopsis 中仅发生花粉外壁缺陷的 cyp703a2 不同。一致地,化学成分分析表明 cyp703a3-2 花药中的角质单体和蜡质成分水平显著降低。与 Arabidopsis CYP703A2 广泛的底物不同,CYP703A3 作为链内羟化酶仅作用于特定的底物,即月桂酸,优选生成 7-羟基化的月桂酸。此外,染色质免疫沉淀和表达分析表明,CYP703A3 的表达受绒毡层退化延迟(Tapetum Degeneration Retardation)的直接调控,后者是绒毡层 PCD 和花粉外壁形成的已知调控因子。总之,我们的结果表明 CYP703A3 代表了一个保守且多样化的生化途径,用于高等植物雄性器官发育所需的月桂酸的链内羟化。

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