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IRREGULAR POLLEN EXINE1 Is a Novel Factor in Anther Cuticle and Pollen Exine Formation

机译:花粉表皮形成不规则是花粉表皮和花粉表皮形成的新因素

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摘要

Anther cuticle and pollen exine are protective barriers for pollen development and fertilization. Despite that several regulators have been identified for anther cuticle and pollen exine development in rice (Oryza sativa) and Arabidopsis (Arabidopsis thaliana), few genes have been characterized in maize (Zea mays) and the underlying regulatory mechanism remains elusive. Here, we report a novel male-sterile mutant in maize, irregular pollen exine1 (ipe1), which exhibited a glossy outer anther surface, abnormal Ubisch bodies, and defective pollen exine. Using map-based cloning, the IPE1 gene was isolated as a putative glucose-methanol-choline oxidoreductase targeted to the endoplasmic reticulum. Transcripts of IPE1 were preferentially accumulated in the tapetum during the tetrad and early uninucleate microspore stage. A biochemical assay indicated that ipe1 anthers had altered constituents of wax and a significant reduction of cutin monomers and fatty acids. RNA sequencing data revealed that genes implicated in wax and flavonoid metabolism, fatty acid synthesis, and elongation were differentially expressed in ipe1 mutant anthers. In addition, the analysis of transfer DNA insertional lines of the orthologous gene in Arabidopsis suggested that IPE1 and their orthologs have a partially conserved function in male organ development. Our results showed that IPE1 participates in the putative oxidative pathway of C16/C18 ω-hydroxy fatty acids and controls anther cuticle and pollen exine development together with MALE STERILITY26 and MALE STERILITY45 in maize.
机译:花药角质层和花粉外壁是花粉发育和受精的保护性屏障。尽管已经为水稻(Oryza sativa)和拟南芥(Arabidopsis thaliana)的花药角质层和花粉外植体发育确定了几个调控因子,但玉米(Zea mays)的特征却很少,而潜在的调控机制仍然难以捉摸。在这里,我们报告玉米中的一种新型雄性不育突变体,不规则花粉exine1(ipe1),其表现出光滑的花药外表面,异常的Ubisch体和有缺陷的花粉外壁。使用基于图的克隆,IPE1基因被分离为靶向内质网的假定的葡萄糖-甲醇-胆碱氧化还原酶。 IPE1的转录本优先在四倍体和早期单核小孢子阶段积累在绒毡层中。生化分析表明,ipe1花药改变了蜡的成分,并大大减少了角质素单体和脂肪酸。 RNA测序数据显示,ipe1突变体花药中差异表达了涉及蜡和类黄酮代谢,脂肪酸合成和延伸的基因。另外,对拟南芥直系同源基因的转移DNA插入线的分析表明,IPE1及其直系同源物在雄性器官发育中具有部分保守的功能。我们的结果表明,IPE1参与了C16 / C18ω-羟基脂肪酸的假定氧化途径,并与玉米中的MALE STERILITY26和MALE STERILITY45一起控制了花药表皮和花粉外壁的发育。

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