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玉米新型雄性不育突变体 ms40 的鉴定和候选基因分离。

The characterization and candidate gene isolation for a novel male-sterile mutant ms40 in maize.

机构信息

Maize Research Institute, Sichuan Agricultural University, Chengdu, China.

College of Agronomy, Sichuan Agricultural University, Chengdu, China.

出版信息

Plant Cell Rep. 2021 Oct;40(10):1957-1970. doi: 10.1007/s00299-021-02762-w. Epub 2021 Jul 28.

Abstract

A novel genic male-sterile mutant ms40 was obtained from EMS treated RP125. The key candidate gene ZmbHLH51 located on chromosome 4 was identified by map-based cloning. This study further enriched the male sterile gene resources for both production applications and theoretical studies of abortion mechanisms. Maize male-sterile mutant 40 (ms40) was obtained from the progeny of the ethyl methanesulfonate (EMS) treated inbred line RP125. Genetic analysis indicated that the sterility was controlled by a single recessive nuclear gene. Cytological observation of anthers revealed that the cuticles of ms40 anthers were abnormal, and no Ubisch bodies were observed on the inner surface of ms40 anthers through scanning electron microscopy(SEM). Moreover, its tapetum exhibited delayed degradation and then blocked the formation of normal microspores. Using map-based cloning strategy, the ms40 locus was found to locate in a 282-kb interval on chromosome 4, and five annotated genes were predicted within this region. PCR-based sequencing detected a single non-synonymous SNP (G > A) that changed glycine (G) to arginine (A) in the seventh exon of Zm00001d053895, while no sequence difference between ms40 and RP125 was found for the other four genes. Zm00001d053895 encodes the bHLH transcription factor ZmbHLH51 which is localized in the nucleus. Phylogenetic analysis showed that ZmbHLH51 had the highest homology with Sb04g001650, a tapetum degeneration retardation (TDR) bHLH transcription factor in Sorghum bicolor. Co-expression analysis revealed a total of 1192 genes co-expressed with ZmbHLH51 in maize, 647 of which were anther-specific genes. qRT-PCR results suggested the expression levels of some known genes related to anther development were affected in ms40. In summary, these findings revealed the abortion characteristics of ms40 anthers and lay a foundation for further studies on the mechanisms of male fertility.

摘要

从 EMS 处理的 RP125 中获得了一个新的雄性不育突变体 ms40。通过图谱克隆鉴定了位于 4 号染色体上的关键候选基因 ZmbHLH51。这项研究进一步丰富了玉米雄性不育基因资源,为生产应用和流产机制的理论研究提供了更多选择。玉米雄性不育突变体 40(ms40)是从经乙基甲磺酸(EMS)处理的自交系 RP125 的后代中获得的。遗传分析表明,不育性由一个隐性核基因控制。对花药的细胞学观察表明,ms40 花药的表皮异常,通过扫描电子显微镜(SEM)观察到 ms40 花药内表面没有 Ubisch 体。此外,其绒毡层表现出延迟降解,然后阻止了正常小孢子的形成。利用图谱克隆策略,发现 ms40 基因座位于 4 号染色体上的 282-kb 区间内,在此区域内预测了五个注释基因。基于 PCR 的测序检测到一个单核苷酸多态性(SNP),即第七外显子中的甘氨酸(G)突变为精氨酸(A),而在其他四个基因中,ms40 和 RP125 之间没有序列差异。Zm00001d053895 编码 bHLH 转录因子 ZmbHLH51,该转录因子定位于细胞核内。系统发育分析表明,ZmbHLH51 与高粱的绒毡层退化延缓(TDR)bHLH 转录因子 Sb04g001650 具有最高的同源性。共表达分析显示,在玉米中共有 1192 个基因与 ZmbHLH51 共表达,其中 647 个是花药特异性基因。qRT-PCR 结果表明,ms40 中一些已知与花药发育相关的基因的表达水平受到影响。总之,这些发现揭示了 ms40 花药的败育特征,为进一步研究雄性育性的机制奠定了基础。

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