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Identification of Genes Potentially Associated with the Fertility Instability of S-Type Cytoplasmic Male Sterility in Maize via Bulked Segregant RNA-Seq

机译:通过散装分离子RNA-Seq鉴定与玉米S型细胞质雄性不育育性不稳定性相关的基因

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摘要

S-type cytoplasmic male sterility (CMS-S) is the largest group among the three major types of CMS in maize. CMS-S exhibits fertility instability as a partial fertility restoration in a specific nuclear genetic background, which impedes its commercial application in hybrid breeding programs. The fertility instability phenomenon of CMS-S is controlled by several minor quantitative trait locus (QTLs), but not the major nuclear fertility restorer (Rf3). However, the gene mapping of these minor QTLs and the molecular mechanism of the genetic modifications are still unclear. Using completely sterile and partially rescued plants of fertility instable line (FIL)-B, we performed bulk segregant RNA-Seq and identified six potential associated genes in minor effect QTLs contributing to fertility instability. Analyses demonstrate that these potential associated genes may be involved in biological processes, such as floral organ differentiation and development regulation, energy metabolism and carbohydrates biosynthesis, which results in a partial anther exsertion and pollen fertility restoration in the partially rescued plants. The single nucleotide polymorphisms (SNPs) identified in two potential associated genes were validated to be related to the fertility restoration phenotype by KASP marker assays. This novel knowledge contributes to the understanding of the molecular mechanism of the partial fertility restoration of CMS-S in maize and thus helps to guide the breeding programs.
机译:在玉米的CMS的三种主要类型中,S型细胞质雄性不育(CMS-S)是最大的群体。 CMS-S在特定的核遗传背景下作为部分生育力的恢复表现出生育力的不稳定性,这阻碍了其在杂交育种计划中的商业应用。 CMS-S的生育不稳定性现象受几个次要数量性状基因座(QTL)的控制,但不受主要核生育力恢复剂(Rf3)的控制。但是,这些次要QTL的基因定位和遗传修饰的分子机制仍不清楚。我们使用不育系(FIL)-B的完全无菌和部分拯救的植物,进行了大段隔离RNA-Seq,并在影响生育力不稳定的次要QTL中鉴定了六个潜在的相关基因。分析表明,这些潜在的相关基因可能参与了生物过程,例如花器官的分化和发育调节,能量代谢和碳水化合物的生物合成,从而导致部分拯救的植物中的部分花药外露和花粉育性恢复。通过KASP标记测定法验证了在两个潜在相关基因中鉴定出的单核苷酸多态性(SNP)与生育力恢复表型有关。这种新颖的知识有助于人们了解玉米CMS-S的部分肥力恢复的分子机制,从而有助于指导育种计划。

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