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QTL involved in the partial restoration of male fertility of C-type cytoplasmic male sterility in maize

机译:QTL参与玉米C型细胞质雄性不育雄性部分恢复

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摘要

Partial restoration of male fertility limits the use of C-type cytoplasmic male sterility (C-CMS) for the production of hybrid seeds in maize. Nevertheless, the genetic basis of the trait is still unknown. Therefore, the aim to this study was to identify genomic regions that govern partial restoration by means of a QTL analysis carried out in an F2 population (n = 180). This population was derived from the Corn Belt inbred lines B37C and K55. F2BC1 progenies were phenotyped at three locations in Switzerland. Male fertility was rated according to the quality and number of anthers as well as the anthesis-silking interval. A weak effect of environment on the expression of partial restoration was reflected by high heritabilities of all fertility-related traits. Partial restoration was inherited like an oligogenic trait. Three major QTL regions were found consistently across environments in the chromosomal bins 2.09, 3.06 and 7.03. Therefore, a marker-assisted counter-selection of partial restoration is promising. Minor QTL regions were found on chromosomes 3, 4, 5, 6 and 8. A combination of partial restorer alleles at different QTL can lead to full restoration of fertility. The maternal parent was clearly involved in the partial restoration, because the restorer alleles at QTL in bins 2.09, 6.04 and 7.03 originated from B37. The three major QTL regions collocated with other restorer genes of maize, a phenomenon, which seems to be typical for restorer genes. Therefore, a study of the clusters of restorer genes in maize could lead to a better understanding of their evolution and function. In this respect, the long arm of chromosome 2 is particularly interesting, because it harbors restorer genes for the three major CMS systems (C, T and S) of maize.
机译:雄性育性的部分恢复限制了在玉米中使用C型胞质雄性不育(C-CMS)来生产杂交种子。然而,该性状的遗传基础仍然未知。因此,本研究的目的是通过对F2 种群(n = 180)进行QTL分析,确定控制部分恢复的基因组区域。该种群来自玉米带自交系B37C和K55。 F2 BC1 后代在瑞士的三个地方进行了表型鉴定。根据花药的质量和数量以及花期的间隔时间对雄性育性进行评估。所有生育相关性状的高遗传力反映了环境对部分恢复表达的弱影响。部分恢复像寡聚性状一样被继承。在整个环境中,在染色体箱2.09、3.06和7.03中一致地发现了三个主要的QTL区域。因此,局部修复的标记辅助反选择是有前途的。在3号,4号,5号,6号和8号染色体上发现了较小的QTL区。不同QTL上的部分恢复等位基因的组合可导致生育力的完全恢复。母系父母显然参与了部分恢复,因为在QTL仓位2.09、6.04和7.03中的恢复等位基因来自B37。三个主要的QTL区域与玉米的其他恢复基因并置,这种现象似乎是恢复基因的典型现象。因此,对玉米中恢复基因的簇的研究可以使人们更好地了解它们的进化和功能。在这方面,第2号染色体的长臂特别有趣,因为它具有玉米三个主要CMS系统(C,T和S)的恢复基因。

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  • 来源
    《Theoretical and Applied Genetics》 |2011年第2期|327-338|共12页
  • 作者单位

    Institute of Agricultural Sciences Swiss Federal Institute of Technology Zurich 8092 Zurich Switzerland;

    Institute of Agricultural Sciences Swiss Federal Institute of Technology Zurich 8092 Zurich Switzerland;

    KWS Saat AG Grimsehlstr. 31 37555 Einbeck Germany;

    Institute of Agricultural Sciences Swiss Federal Institute of Technology Zurich 8092 Zurich Switzerland;

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