首页> 外文期刊>The Plant Cell >Cytochrome P450 Family Member CYP704B2 Catalyzes the s -Hydroxylation of Fatty Acids and Is Required for Anther Cutin Biosynthesis and Pollen Exine Formation in Rice.
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Cytochrome P450 Family Member CYP704B2 Catalyzes the s -Hydroxylation of Fatty Acids and Is Required for Anther Cutin Biosynthesis and Pollen Exine Formation in Rice.

机译:细胞色素P450家族成员CYP704B2催化脂肪酸的s-羟基氧化反应,是水稻花药角质生物合成和花粉外壁形成的必需物质。

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The anther cuticle and microspore exine act as protective barriers for the male gametophyte and pollen grain, but relatively little is known about the mechanisms underlying the biosynthesis of the monomers of which they are composed. We report here the isolation and characterization of a rice (Oryza sativa) male sterile mutant, cyp704B2, which exhibits a swollen sporophytic tapetal layer, aborted pollen grains without detectable exine, and undeveloped anther cuticle. In addition, chemical composition analysis indicated that cutin monomers were hardly detectable in the cyp704B2 anthers. These defects are caused by a mutation in a cytochrome P450 family gene, CYP704B2. The CYP704B2 transcript is specifically detected in the tapetum and the microspore from stage 8 of anther development to stage 10. Heterologous expression of CYP704B2 in yeast demonstrated that CYP704B2 catalyzes the production of s -hydroxylated fatty acids with 16 and 18 carbon chains. Our results provide insights into the biosynthesis of the two biopolymers sporopollenin and cutin. Specifically, our study indicates that the s -hydroxylation pathway of fatty acids relying on this ancient CYP704B family, conserved from moss to angiosperms, is essential for the formation of both cuticle and exine during plant male reproductive and spore development.
机译:花药角质层和小孢子外壁作为雄配子体和花粉粒的保护性屏障,但对组成它们的单体的生物合成的机理知之甚少。我们在这里报告了水稻(Oryza sativa)雄性不育突变体cyp704B2的分离和鉴定,该突变体表现出孢子囊绒毛层膨大,花粉粒流产而没有可检测到的外膜和未发育的花药角质层。此外,化学成分分析表明,在cyp704B2花药中几乎没有检测到角质单体。这些缺陷是由细胞色素P450家族基因CYP704B2的突变引起的。从花药发育的第8阶段到第10阶段,在绒毡层和小孢子中特异性检测到CYP704B2转录物。酵母中CYP704B2的异源表达表明CYP704B2催化产生具有16和18个碳链的s-羟基化脂肪酸。我们的结果提供了对两种生物聚合物孢粉和角质的生物合成的见解。具体而言,我们的研究表明,依赖于这个古老的CYP704B家族(从苔藓到被子植物保守)的脂肪酸的s-羟化途径对于植物雄性生殖和孢子发育过程中表皮和外壁的形成至关重要。

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