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对一条抗条锈病的小麦(普通小麦)-美洲沙丘草(滨麦)易位系的分子细胞遗传学鉴定

Molecular cytogenetic identification of a wheat (Triticum aestivum)-American dune grass (Leymus mollis) translocation line resistant to stripe rust.

作者信息

Bao Y, Wang J, He F, Ma H, Wang H

机构信息

Agronomy College, State Key Laboratory of Crop Science, Shandong Key Laboratory of Crop Science, Tai'an Subcenter of National Wheat Improvement Center, Shandong Agricultural University, Tai'an, China.

出版信息

Genet Mol Res. 2012 May 22;11(3):3198-206. doi: 10.4238/2012.May.22.2.

Abstract

Leymus mollis, a perennial allotetraploid (2n = 4x = 28), known as American dune grass, is a wild relative of wheat that could be useful for cultivar improvement. Shannong0096, developed from interspecific hybridization between common wheat cv. Yannong15 and L. mollis, was analyzed with cytological procedures, genomic in situ hybridization, stripe-rust resistance screening and molecular marker analysis. We found that Shannong0096 has 42 chromosomes in the root-tip cells at mitotic metaphase and 21 bivalents in the pollen mother cells at meiotic metaphase I, demonstrating cytogenetic stability. Genomic in situ hybridization probed with total genomic DNA from L. mollis gave strong hybridization signals in the distal region of two wheat chromosome arms. A single dominant Yr gene, derived from L. mollis and temporarily designated as YrSn0096, was found on the long arm of chromosome 4A of Shannong0096. YrSn0096 should be a novel Yr gene because none of the previously reported Yr genes on chromosome 4A are related to L. mollis. This gene was found to be closely linked to the loci Xbarc236 and Xksum134 with genetic distances of 5.0 and 4.8 cM, respectively. Based on data from 267 F(2) plants of Yannong15/Huixianhong, the linkage map of YrSn0096, using the two molecular markers, was established in the order Xbarc236-YrSn0096-Xksum134. Shannong0096 appeared to be a unique wheat-L. mollis translocation with cryptic alien introgression. Cytogenetic stability, a high level of stripe-rust resistance, the common wheat background, and other positive agronomic traits make it a desirable donor for introducing novel alien resistance genes in wheat breeding programs, with the advantage of molecular markers that can be used to confirm introgression.

摘要

羊草(Leymus mollis)是一种多年生异源四倍体植物(2n = 4x = 28),也被称为美洲沙丘草,它是小麦的野生近缘种,对小麦品种改良具有重要价值。本研究以普通小麦品种烟农15与羊草种间杂交育成的山农0096为材料,通过细胞学观察、基因组原位杂交、条锈病抗性鉴定及分子标记分析等方法对其进行了研究。结果表明,山农0096有丝分裂中期根尖细胞染色体数目为42条,减数分裂中期Ⅰ花粉母细胞染色体构型为21个二价体,细胞遗传学稳定。以羊草基因组总DNA为探针进行基因组原位杂交,在小麦两条染色体臂的末端区域出现强烈杂交信号。在山农0096的4A染色体长臂上发现了一个来自羊草的显性抗条锈病基因,暂命名为YrSn0096。由于此前报道的位于4A染色体上的抗条锈病基因均与羊草无关,因此YrSn0096应为一个新的抗条锈病基因。该基因与分子标记Xbarc236和Xksum134紧密连锁,遗传距离分别为5.0 cM和4.8 cM。利用烟农15/辉县红组合的267个F₂单株构建了YrSn0096基因的连锁图谱,标记顺序为Xbarc236-YrSn0096-Xksum134。山农0096可能是一个具有隐匿外源渐渗的独特小麦-羊草易位系。其细胞遗传学稳定、高抗条锈病、背景为普通小麦以及具有其他优良农艺性状,使其成为小麦育种中导入外源新抗性基因的理想供体,并具有可用于鉴定渐渗的分子标记优势。

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