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向日葵(Helianthus annuus L.)中基于PET1的F1杂种恢复花粉育性的Rf1基因的分子定位。

Molecular mapping of the Rf1 gene restoring pollen fertility in PET1-based F1 hybrids in sunflower (Helianthus annuus L.).

作者信息

Horn R, Kusterer B, Lazarescu E, Prüfe M, Friedt W

机构信息

Institut für Pflanzenbau und Pflanzenzüchtung I, Justus-Liebig-Universität Giessen, Heinrich-Buff-Ring 26-32, Germany.

出版信息

Theor Appl Genet. 2003 Feb;106(4):599-606. doi: 10.1007/s00122-002-1078-y. Epub 2002 Sep 4.

Abstract

Up to now a single cytoplasmic male sterility (CMS) source, PET1, is used worldwide for hybrid breeding in sunflower. Introgression of the restorer gene Rf1, responsible for fertility restoration, into new breeding material requires tightly linked markers to perform an efficient marker-assisted selection. A survey of 520 decamer primers by bulked segregant analyses identified five RAPD markers linked to the restorer gene Rf1. In a F(2) population of 183 individuals one of the RAPD markers, OPK13_454, mapped 0.8 cM from Rf1, followed by OPY10_740 with 2 cM. Bulked segregant analyses using 48 AFLP primer combinations identified 17 polymorphisms, which could be mapped in the same linkage group as Rf1. E33M61_136, and E41M48_113 were mapped 0.3 cM and 1.6 cM from the gene, respectively. Conversion of E41M48_113 into a sequence-specific marker resulted in a monomorphic pattern. However, two of the RAPD markers, OPK13_454 and OPY10_740, were successfully converted into SCAR markers, HRG01 and HRG02, which are now available for marker-assisted selection. To investigate the utility of these SCAR markers in other cross-combinations they were tested in a set of 20 lines. Comparison of the patterns of 11 restorer and nine maintainer lines of PET1 demonstrated that the markers OPK13_454/HRG01 and HRG02 were absent in all maintainer lines but present in all restorer lines, apart from the high oleic line RHA348 and the dwarf line Gio55. In addition, restorer lines developed from the interspecific hybrids Helianthus annuus x Helianthus mollis and H. annuus x Helianthus rigidus gave the same characteristic amplification products.

摘要

到目前为止,全球范围内在向日葵杂交育种中都使用单一的细胞质雄性不育(CMS)源PET1。将负责育性恢复的恢复基因Rf1导入新的育种材料中,需要紧密连锁的标记来进行高效的标记辅助选择。通过混合分组分析法对520个十聚体引物进行筛选,鉴定出5个与恢复基因Rf1连锁的RAPD标记。在一个由183个个体组成的F(2)群体中,其中一个RAPD标记OPK13_454与Rf1的遗传距离为0.8 cM,其次是OPY10_740,遗传距离为2 cM。使用48对AFLP引物组合进行混合分组分析,鉴定出17个多态性位点,这些位点可定位在与Rf1相同的连锁群中。E33M61_136和E41M48_113与该基因的遗传距离分别为0.3 cM和1.6 cM。将E41M48_113转化为序列特异性标记后得到了单态模式。然而,其中两个RAPD标记OPK13_454和OPY10_740成功转化为SCAR标记HRG01和HRG,但现在可用于标记辅助选择。为了研究这些SCAR标记在其他杂交组合中的实用性,在一组20个品系中对它们进行了测试。对PETI的11个恢复系和9个保持系的模式进行比较表明,标记OPK13_454/HRG01和HRG02在所有保持系中均不存在,但在所有恢复系中均存在,除了高油酸品系RHA348和矮化品系Gio55。此外,由种间杂种向日葵×软毛向日葵和向日葵×硬毛向日葵培育出的恢复系产生了相同的特征性扩增产物。

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