首页> 外文期刊>Theoretical and Applied Genetics >Leymus EST linkage maps identify 4NsL–5NsL reciprocal translocation, wheat-Leymus chromosome introgressions, and functionally important gene loci
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Leymus EST linkage maps identify 4NsL–5NsL reciprocal translocation, wheat-Leymus chromosome introgressions, and functionally important gene loci

机译:羊草EST连锁图谱可鉴定4NsL-5NsL相互易位,小麦-羊草染色体基因渗入和功能重要的基因位点

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摘要

Allotetraploid (2n = 4x = 28) Leymus triticoides and Leymus cinereus are divergent perennial grasses, which form fertile hybrids. Genetic maps with n = 14 linkage groups (LG) comprised with 1,583 AFLP and 67 heterologous anchor markers were previously used for mapping quantitative trait loci (QTLs) in these hybrids, and chromosomes of other Leymus wildryes have been transferred to wheat. However, identifications of the x = 7 homoeologous groups were tenuous and genetic research has been encumbered by a lack of functional, conserved gene marker sequences. Herein, we mapped 350 simple sequence repeats and 26 putative lignin biosynthesis genes from a new Leymus EST library and constructed one integrated consensus map with 799 markers, including 375 AFLPs and 48 heterologous markers, spanning 2,381 centiMorgans. LG1b and LG6b were reassigned as LG6b* and LG1b*, respectively, and LG4Ns and LG4Xm were inverted so that all 14 linkage groups are aligned to the x = 7 Triticeae chromosomes based on EST alignments to barley and other reference genomes. Amplification of 146 mapped Leymus ESTs representing six of the seven homoeologous groups was shown for 17 wheat-Leymus chromosome introgression lines. Reciprocal translocations between 4L and 5L in both Leymus and Triticum monococcum were aligned to the same regions of Brachypodium chromosome 1. A caffeic acid O-methyltransferase locus aligned to fiber QTL peaks on Leymus LG7a and brown midrib mutations of maize and sorghum. Glaucousness genes on Leymus and wheat chromosome 2 were aligned to the same region of Brachypodium chromosome 5. Markers linked to the S self-incompatibility gene on Leymus LG1a cosegregated with markers on LG2b, possibly cross-linked by gametophytic selection. Homoeologous chromosomes 1 and 2 harbor the S and Z gametophytic self-incompatibility genes of Phalaris, Secale, and Lolium, but the Leymus chromosome-2 self-incompatibility gene aligns to a different region on Brachypodium chromosome 5. Nevertheless, cosegregation of self-incompatibility genes on Leymus presents a powerful system for mapping these loci.
机译:异源四倍体(2n = 4x = 28)羊草(Leymus triticoides)和灰羊草(Leymus cinereus)是多年生发散的禾本科草,形成肥沃的杂种。以前使用n = 14个连锁组(LG)的遗传图谱(包含1583个AFLP和67个异源锚定标记)来绘制这些杂种中的数量性状基因座(QTL),并且其他羊草野生种的染色体已转移至小麦。然而,x = 7同源组的鉴定是微不足道的,并且由于缺乏功能性的,保守的基因标记序列,基因研究受到了阻碍。在这里,我们从一个新的羊草EST文库中绘制了350个简单的序列重复序列和26个推定的木质素生物合成基因,并构建了一个包含799个标记(包括375个AFLP和48个异源标记)的整合共有图谱,涵盖了2,381厘摩。将LG1b和LG6b分别重新分配为LG6b *和LG1b *,并且将LG4Ns和LG4Xm颠倒,以便基于与大麦和其他参考基因组的EST比对,将所有14个连接基团与x = 7的小麦属染色体对齐。显示了针对17个小麦-羊草染色体基因渗入系的146个作图的羊草EST的扩增,代表七个同源组中的六个。羊草和小麦的4L和5L之间的相互易位与Brachypodium 1号染色体的相同区域对齐。咖啡酸O-甲基转移酶基因座与Leymus LG7a上的纤维QTL峰对齐以及玉米和高粱的棕色中肋突变。羊草和小麦第2号染色体上的glausness基因与短螺旋藻第5号染色体的同一区域对齐。与羊草LG1a上的S自交不亲和基因连锁的标记与LG2b上的标记共分离,可能通过配子体选择交联。同源染色体1和2包含Ph,Secale和黑麦草的S和Z配子体自交不亲和基因,但是羊草2号染色体自交不亲和基因与短枝梭菌5号染色体上的不同区域对齐。但是,自交不亲和的共聚羊草上的基因提供了一个强大的系统来定位这些基因座。

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  • 来源
    《Theoretical and Applied Genetics》 |2012年第1期|189-206|共18页
  • 作者单位

    US Department of Agriculture Agriculture Research Service Forage and Range Research Laboratory Utah State University Logan UT 84322-6300 USA;

    Kihara Institute for Biological Research Yokohama City University Yokohama 244-0813 Japan;

    Arid Land Research Center Tottori University Tottori 680-0001 Japan;

    US Department of Agriculture Agriculture Research Service Northern Crop Science Laboratory 1605 Albrecht Blvd Fargo ND 58102-2765 USA;

    Department of Agronomy Nangjing Agricultureal University Nangjing 210095 People’s Republic of China;

    US Department of Agriculture Agriculture Research Service Western Regional Research Center Albany CA 94710 USA;

    US Department of Agriculture Agriculture Research Service Forage and Range Research Laboratory Utah State University Logan UT 84322-6300 USA;

    US Department of Agriculture Agriculture Research Service Forage and Range Research Laboratory Utah State University Logan UT 84322-6300 USA;

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