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玉米不育基因 DRP1 编码一种与脱水相关的蛋白,该蛋白对脐点和花粉外壁发育至关重要。

Maize sterility gene DRP1 encodes a desiccation-related protein that is critical for Ubisch bodies and pollen exine development.

机构信息

State Key Laboratory of Plant Physiology and Biochemistry and National Maize Improvement Center, Department of Plant Genetics and Breeding, China Agricultural University, Beijing, China.

State Key Laboratory of Wheat and Maize Crop Science and Center for Crop Genome Engineering, Henan Agricultural University, Zhengzhou, China.

出版信息

J Exp Bot. 2022 Nov 2;73(19):6800-6815. doi: 10.1093/jxb/erac331.

Abstract

Desiccation tolerance is a remarkable feature of pollen, seeds, and resurrection-type plants. Exposure to desiccation stress can cause sporophytic defects, resulting in male sterility. Here, we report the novel maize sterility gene DRP1 (Desiccation-Related Protein 1), which was identified by bulked-segregant analysis sequencing and encodes a desiccation-related protein. Loss of function of DRP1 results in abnormal Ubisch bodies, defective tectum of the pollen exine, and complete male sterility. Our results suggest that DRP1 may facilitate anther dehydration to maintain appropriate water status. DRP1 is a secretory protein that is specifically expressed in the tapetum and microspore from the tetrad to the uninucleate microspore stage. Differentially expressed genes in drp1 are enriched in Gene Ontology terms for pollen exine formation, polysaccharide catabolic process, extracellular region, and response to heat. In addition, DRP1 is a target of selection that appears to have played an important role in the spread of maize from tropical/subtropical to temperate regions. Taken together, our results suggest that DRP1 encodes a desiccation-related protein whose loss of function causes male sterility. Our findings provide a potential genetic resource that may be used to design crops for heterosis utilization.

摘要

脱水耐性是花粉、种子和复苏型植物的一个显著特征。暴露于干燥胁迫会导致孢子体缺陷,导致雄性不育。在这里,我们报告了一个新的玉米不育基因 DRP1(与干燥相关的蛋白 1),它是通过大量分离群体分析测序鉴定的,编码一个与干燥相关的蛋白。DRP1 的功能丧失导致异常的 Ubisch 体、花粉外壁的构造缺陷和完全雄性不育。我们的结果表明,DRP1 可能有助于花药脱水以维持适当的水分状态。DRP1 是一种分泌蛋白,在绒毡层和小孢子从四分体到单核小孢子阶段特异性表达。在 drp1 中差异表达的基因在花粉外壁形成、多糖代谢过程、细胞外区域和对热的反应等基因本体论术语中富集。此外,DRP1 是一个选择的靶点,似乎在玉米从热带/亚热带向温带地区的传播中发挥了重要作用。总之,我们的结果表明,DRP1 编码一个与干燥相关的蛋白,其功能丧失导致雄性不育。我们的发现提供了一个潜在的遗传资源,可用于设计用于杂种优势利用的作物。

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