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Molecular genetic description of the cryptic wheat-Aegilops geniculata introgression carrying rust resistance genes Lr57 and Yr40 using wheat ESTs and synteny with rice

机译:利用小麦ESTs和水稻的同源性,对带有防锈基因Lr57和Yr40的小麦-小麦隐孢子菌基因渗入的分子遗传学描述

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摘要

The cryptic wheat–alien translocation T5DL-5DS-5MgS(0.95), with leaf rust and stripe rust resistance genes Lr57 and Yr40 transferred from Aegilops geniculata (UgMg) into common wheat, was further analyzed. Molecular genetic analysis using physically mapped ESTs showed that the alien segment in T5DL-5DS-5M gS(0.95) represented only a fraction of the wheat deletion bin 5DS2-0.78-1.00 and was less than 3.3 cM in length in the diploid wheat genetic map. Comparative genomic analysis indicated a high level of colinearity between the distal region of the long arm of chromosome 12 of rice and the genomic region spanning the Lr57 and Yr40 genes in wheat. The alien segment with genes Lr57 and Yr40 corresponds to fewer than four overlapping BAC or PAC clones of the syntenic rice chromosome arm 12L. The wheat–alien translocation breakpoint in T5DL-5DS-5M g S(0.95) was further localized to a single BAC clone of the syntenic rice genomic sequence. The small size of the terminal wheat–alien translocation, as established precisely with respect to Chinese Spring deletion bins and the syntenic rice genomic sequence, further confirmed the escaping nature of cryptic wheat–alien translocations in introgressive breeding. The molecular genetic resources and information developed in the present study will facilitate further fine-scale physical mapping and map-based cloning of the Lr57 and Yr40 genes.
机译:进一步分析了小麦-异种易位T5DL-5DS-5MgS(0.95),其具有从锈皮草(UgMg)转移到普通小麦中的叶锈病和条锈病抗性基因Lr57和Yr40。使用物理图谱EST进行的分子遗传分析表明,T5DL-5DS-5M gS(0.95)中的外源片段仅代表小麦缺失区5DS2-0.78-1.00的一部分,在二倍体小麦遗传图中长度小于3.3 cM 。比较基因组分析表明,水稻第12号染色体长臂的远端区域与跨越小麦Lr57和Yr40基因的基因组区域之间存在较高的共线性。具有基因Lr57和Yr40的外来区段对应于同义水稻染色体臂12L的少于四个重叠的BAC或PAC克隆。 T5DL-5DS-5M g S(0.95)中的小麦-外源易位断点进一步定位于同系水稻基因组序列的单个BAC克隆。终端小麦-异源易位的小巧,正是针对中国春季删除区和同基因水稻基因组序列确定的,进一步证实了隐性小麦-异源易位在渐进育种中的逃避特性。在本研究中开发的分子遗传资源和信息将促进进一步的精细规模的物理作图和Lr57和Yr40基因的基于图的克隆。

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