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Map-Based Cloning Phylogenetic and Microsynteny Analyses of ZmMs20 Gene Regulating Male Fertility in Maize

机译:基于图谱的ZmMs20基因调控玉米雄性育性的克隆系统发育和微同步分析

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摘要

Genic male sterility (GMS) mutant is a useful germplasm resource for both theory research and production practice. The identification and characterization of GMS genes, and assessment of male-sterility stability of GMS mutant under different genetic backgrounds in Zea may (maize) have (1) deepened our understanding of the molecular mechanisms controlling anther and pollen development, and (2) enabled the development and efficient use of many biotechnology-based male-sterility (BMS) systems for hybrid breeding. Here, we reported a complete GMS mutant (ms20), which displays abnormal anther cuticle and pollen development. Its fertility restorer gene ZmMs20 was found to be a new allele of IPE1 encoding a glucose methanol choline (GMC) oxidoreductase involved in lipid metabolism in anther. Phylogenetic and microsynteny analyses showed that ZmMs20 was conserved among gramineous species, which provide clues for creating GMS materials in other crops. Additionally, among the 17 maize cloned GMS genes, ZmMs20 was found to be similar to the expression patterns of Ms7, Ms26, Ms6021, APV1, and IG1 genes, which will give some clues for deciphering their functional relationships in regulating male fertility. Finally, two functional markers of ZmMs20/ms20 were developed and tested for creating maize ms20 male-sterility lines in 353 genetic backgrounds, and then an artificial maintainer line of ms20 GMS mutation was created by using ZmMs20 gene, ms20 mutant, and BMS system. This work will promote our understanding of functional mechanisms of male fertility and facilitate molecular breeding of ms20 male-sterility lines for hybrid seed production in maize.
机译:基因雄性不育(GMS)突变体是用于理论研究和生产实践的有用种质资源。在玉米中不同遗传背景下,GMS基因的鉴定和表征以及GMS突变体的雄性不育稳定性评估(玉米)可能(1)加深了我们对控制花药和花粉发育的分子机制的了解,并且(2)开发和有效利用许多基于生物技术的雄性不育(BMS)系统进行杂交育种。在这里,我们报告了一个完整的GMS突变体(ms20),该突变体显示出异常的花药表皮和花粉发育。发现其生育力恢复基因ZmMs20是IPE1的新等位基因,其编码参与花药脂质代谢的葡萄糖甲醇胆碱(GMC)氧化还原酶。系统发育和微同步分析表明,ZmMs20在禾本科物种中是保守的,这为在其他农作物中创建GMS材料提供了线索。此外,在17个玉米克隆的GMS基因中,发现ZmMs20与Ms7,Ms26,Ms6021,APV1和IG1基因的表达模式相似,这将为解读它们在调控雄性育性中的功能关系提供一些线索。最后,开发了两个ZmMs20 / ms20功能标记,并在353个遗传背景下进行了测试,以创建玉米ms20雄性不育系,然后使用ZmMs20基因,ms20突变体和BMS系统创建了ms20 GMS突变的人工维持系。这项工作将增进我们对雄性育性功能机制的理解,并促进ms20雄性不育系的分子育种,以生产玉米杂交种子。

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