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高密度尖峰-ar(dsp.ar)图谱定位到大麦 7H 染色体的遗传着丝粒。

High resolution mapping of Dense spike-ar (dsp.ar) to the genetic centromere of barley chromosome 7H.

机构信息

Leibniz Institute of Plant Genetics and Crop Plant Research (IPK), Corrensstr. 3, 06466, Gatersleben, Germany.

出版信息

Theor Appl Genet. 2012 Feb;124(2):373-84. doi: 10.1007/s00122-011-1712-7. Epub 2011 Sep 30.

Abstract

Spike density in barley is under the control of several major genes, as documented previously by genetic analysis of a number of morphological mutants. One such class of mutants affects the rachis internode length leading to dense or compact spikes and the underlying genes were designated dense spike (dsp). We previously delimited two introgressed genomic segments on chromosome 3H (21 SNP loci, 35.5 cM) and 7H (17 SNP loci, 20.34 cM) in BW265, a BC(7)F(3) nearly isogenic line (NIL) of cv. Bowman as potentially containing the dense spike mutant locus dsp.ar, by genotyping 1,536 single nucleotide polymorphism (SNP) markers in both BW265 and its recurrent parent. Here, the gene was allocated by high-resolution bi-parental mapping to a 0.37 cM interval between markers SC57808 (Hv_SPL14)-CAPSK06413 residing on the short and long arm at the genetic centromere of chromosome 7H, respectively. This region putatively contains more than 800 genes as deduced by comparison with the collinear regions of barley, rice, sorghum and Brachypodium, Classical map-based isolation of the gene dsp.ar thus will be complicated due to the infavorable relationship of genetic to physical distances at the target locus.

摘要

大麦的穗密度受几个主要基因的控制,这在以前的一些形态突变体的遗传分析中已有记载。一类这样的突变体影响穗轴节间长度,导致穗密集或紧凑,这些基因被命名为密穗(dsp)。我们之前通过对 BW265 进行基因分型,将其定位在 3H 染色体上(21 个 SNP 标记,35.5 cM)和 7H 染色体上(17 个 SNP 标记,20.34 cM)的两个导入的基因组片段,该基因是 BC(7)F(3)近等基因系(NIL)的一部分,由 cv. Bowman 组成。通过对 BW265 及其轮回亲本的 1536 个单核苷酸多态性(SNP)标记进行基因分型,我们发现 BW265 中可能含有密穗突变体基因 dsp.ar。在这里,通过高分辨率双亲作图,将该基因定位于 7H 染色体短臂和长臂上的标记 SC57808(Hv_SPL14)-CAPSK06413 之间的 0.37 cM 区间。这个区域与大麦、水稻、高粱和拟南芥的共线性区域进行比较,推测包含 800 多个基因。因此,由于目标基因座的遗传与物理距离之间的不利关系,基于经典图谱的基因 dsp.ar 的分离将会很复杂。

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