Biology and Agriculture Research Center, University of Science and Technology Beijing, Beijing 100024, China; Beijing Engineering Laboratory of Main Crop Bio-Tech Breeding, Beijing International Science and Technology Cooperation Base of Bio-Tech Breeding, Beijing Solidwill Sci-Tech Co. Ltd., Beijing 100192, China.
Biology and Agriculture Research Center, University of Science and Technology Beijing, Beijing 100024, China.
Mol Plant. 2019 Mar 4;12(3):343-359. doi: 10.1016/j.molp.2019.01.011. Epub 2019 Jan 23.
Genic male sterility (GMS) is very useful for hybrid vigor utilization and hybrid seed production. Although a large number of GMS genes have been identified in plants, little is known about the roles of GDSL lipase members in anther and pollen development. Here, we report a maize GMS gene, ZmMs30, which encodes a novel type of GDSL lipase with diverged catalytic residues. Enzyme kinetics and activity assays show that ZmMs30 has lipase activity and prefers to substrates with a short carbon chain. ZmMs30 is specifically expressed in maize anthers during stages 7-9. Loss of ZmMs30 function resulted in defective anther cuticle, irregular foot layer of pollen exine, and complete male sterility. Cytological and lipidomics analyses demonstrate that ZmMs30 is crucial for the aliphatic metabolic pathway required for pollen exine formation and anther cuticle development. Furthermore, we found that male sterility caused by loss of ZmMs30 function was stable in various inbred lines with different genetic background, and that it didn't show any negative effect on maize heterosis and production, suggesting that ZmMs30 is valuable for cross-breeding and hybrid seed production. We then developed a new multi-control sterility system using ZmMs30 and its mutant line, and demonstrated it is feasible for generating desirable GMS lines and valuable for hybrid maize seed production. Taken together, our study sheds new light on the mechanisms of anther and pollen development, and provides a valuable male-sterility system for hybrid breeding maize.
基因雄性不育(GMS)在杂种优势利用和杂交种子生产中非常有用。尽管在植物中已经鉴定出大量的 GMS 基因,但对于 GDSL 脂肪酶成员在花药和花粉发育中的作用知之甚少。在这里,我们报告了一个玉米 GMS 基因 ZmMs30,它编码一种新型的 GDSL 脂肪酶,具有不同的催化残基。酶动力学和活性测定表明,ZmMs30 具有脂肪酶活性,并且优先选择短碳链的底物。ZmMs30 在玉米花药的 7-9 期特异性表达。ZmMs30 功能缺失导致花药表皮缺陷、花粉外壁足层不规则和完全雄性不育。细胞学和脂质组学分析表明,ZmMs30 对于花粉外壁形成和花药表皮发育所需的脂肪代谢途径至关重要。此外,我们发现 ZmMs30 功能缺失导致的雄性不育在具有不同遗传背景的不同自交系中是稳定的,并且对玉米杂种优势和产量没有任何负面影响,这表明 ZmMs30 对于杂交和杂交种子生产是有价值的。然后,我们使用 ZmMs30 及其突变体系开发了一种新的多控不育系统,并证明它可用于生成理想的 GMS 系,对于杂交玉米种子生产是有价值的。总之,我们的研究为花药和花粉发育的机制提供了新的认识,并为杂交玉米育种提供了有价值的雄性不育系统。