首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genetic map-based location of the red clover (Trifolium pratense L.) gametophytic self-incompatibility locus
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Genetic map-based location of the red clover (Trifolium pratense L.) gametophytic self-incompatibility locus

机译:基于遗传图的红三叶草(三叶草)配子体自交不亲和基因座的位置

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摘要

Red clover is a hermaphroditic allogamous diploid (2n = 2x = 14) with a homomorphic gametophytic self-incompatibility (GSI) system (Trifolium pratense L.). Red clover GSI has long been studied, and it is thought that the genetic control of GSI constitutes a single locus. Although GSI genes have been identified in other species, the genomic location of the red clover GSI-locus remains unknown. The objective of this study was to use a mapping-based approach to identify simple sequence repeats (SSR) that were closely linked to the GSI-locus. Previously published SSR markers were used in this effort (Sato et al. in DNA Res 12:301-364, 2005). A bi-parental cross was initiated in which the parents were known to have one self-incompatibility allele (S-allele) in common. S-allele genotypes of 100 progeny were determined through test crosses and pollen compatibility. Pseudo F-1 linkage analysis isolated the GSI-locus on red clover linkage-group one within 2.5 cM of markers RCS5615, RCS0810, and RCS3161. A second 256 progeny mapping testcross population of a heterozygous self-compatible mutant revealed that this specific self-compatible mutant mapped to the same location as the GSI-locus. Finally, 82 genotypes were identified whose parents putatively shared one S-allele in common from maternal halfsib families derived from two random mating populations in which paternal identity was determined using molecular markers. Unique S-allele identity in the two random mating populations was tentatively inferred based on haplotypes of two highly allelic linkage-group one SSR (RCS0810 and RCS4956), which were closely linked to each other and the GSI-locus. Paternally derived pollen haplotype linkage analysis of RCS0810 and RCS4956 SSR and the GSI-locus again revealed tight linkage at 2.5 and 4.7 cM between the GSI-locus and RCS0810 and RCS4956, respectively. The map-based location of the GSI-locus in red clover has many immediate applications to red clover plant breeding and could be useful in helping to sequence the GSI-locus.
机译:红三叶草是雌雄同体的同型二倍体(2n = 2x = 14),具有同型配子体自交不亲和(GSI)系统(Trifolium pratense L.)。对红三叶草GSI进行了长期的研究,认为GSI的遗传控制构成一个基因座。尽管已在其他物种中鉴定出GSI基因,但红三叶草GSI基因座的基因组位置仍然未知。这项研究的目的是使用基于映射的方法来识别与GSI基因座密切相关的简单序列重复(SSR)。为此,使用了先前公开的SSR标记(Sato等人,DNA Res 12:301-364,2005)。开始了双亲杂交,其中父母已知有一个共同的自我不相容等位基因(S-allele)。通过测试杂交和花粉相容性确定100个后代的S-等位基因基因型。伪F-1连锁分析在标记RCS5615,RCS0810和RCS3161的2.5 cM内分离出了红三叶草连锁组上的GSI基因座。杂合的自相容突变体的第二个256个子代作图testcross群体显示该特定的自相容突变体被映射到与GSI-基因座相同的位置。最后,鉴定出82个基因型,其父母推定共享来自两个随机交配群体的母体半同胞家族的一个S等位基因,其中两个随机交配群体使用分子标记确定父本。根据两个高度等位基因连锁的一组第一SSR(RCS0810和RCS4956)的单倍型,初步推断了两个随机交配群体中的独特S-等位基因身份,它们彼此紧密相连,且与GSI-基因座密切相关。 RCS0810和RCS4956 SSR与GSI-基因座的父本花粉单倍型连锁分析再次显示,GSI-基因座与RCS0810和RCS4956之间分别存在2.5和4.7 cM的紧密连锁。红三叶草中基于GSI-基因座的基于图的位置在红三叶草植物育种中具有许多直接的应用,并且可以用于帮助对GSI-基因座进行测序。

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