首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Microsatellite mapping of genes that determine supernumerary spikelets in wheat (T. aestivum) and rye (S. cereale)
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Microsatellite mapping of genes that determine supernumerary spikelets in wheat (T. aestivum) and rye (S. cereale)

机译:确定小麦(T. aestivum)和黑麦(S.谷物)中多余小穗的基因的微卫星作图

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摘要

The wheat and rye spike normally bears one spikelet per rachis node, and the appearance of supernumerary spikelets is rare. The loci responsible for the 'multirow spike' or MRS trait in wheat, and the 'monstrosum spike' trait in rye were mapped by genotyping F populations with microsatellite markers. Both MRS and the 'monstrosum' trait are under the control of a recessive allele at a single locus. The Mrs1 locus is located on chromosome 2DS, co-segregating with the microsatellite locus Xwmc453. The placement of flanking microsatellite loci into chromosome deletion bin 2DS-5 (FL 0.47-1.0) delimited the physical location of Mrs1 to the distal half of chromosome arm 2DS, within the gene rich region 2S0.8. The Mo1 locus maps about 10 cM from the centromere on chromosome arm 2RS. The similar effect on phenotype of mo1 and mrs1, together with their presence in regions of conserved synteny, suggest that they may well be members of an orthologous set of Triticeae genes governing spike branching. The practical importance of the MRS spike is that it produces more spikelets per spike, and thereby enhances the sink capacity of wheat, which is believed to limit the yield potential of the crop.
机译:小麦和黑麦穗状花序通常每个穗轴结节带有一个穗状花序,很少出现穗状花序。通过使用微卫星标记对F群体进行基因分型,可以定位小麦的“多行穗”或MRS性状以及黑麦中的“负尖峰”性状的基因座。 MRS和“ monstrosum”性状都在单个位点处隐性等位基因的控制下。 Mrs1基因座位于染色体2DS上,与微卫星基因座Xwmc453共分离。在富含基因的区域2S0.8中,将侧翼微卫星基因座放置在染色体缺失区2DS-5(FL 0.47-1.0)中,将Mrs1的物理位置限定在染色体臂2DS的远端一半。 Mo1基因座在染色体臂2RS上距着丝粒约10 cM。对mo1和mrs1表型的类似影响,以及它们在保守同义区域中的存在,表明它们很可能是支配穗状分支的小麦基因的直系同源序列的成员。 MRS穗的实际重要性在于,每个穗产生更多的穗,从而增强了小麦的库容能力,这被认为会限制作物的单产潜力。

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