首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Syntenic relationships among legumes revealed using a gene-based genetic linkage map of common bean (Phaseolus vulgaris L.).
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Syntenic relationships among legumes revealed using a gene-based genetic linkage map of common bean (Phaseolus vulgaris L.).

机译:利用基于基因的普通豆(Phaseolus vulgaris L.)的遗传连锁图谱揭示了豆类之间的同构关系。

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Molecular linkage maps are an important tool for gene discovery and cloning, crop improvement, further genetic studies, studies on diversity and evolutionary history, and cross-species comparisons. Linkage maps differ in both the type of marker and type of population used. In this study, gene-based markers were used for mapping in a recombinant inbred (RI) population of Phaseolus vulgaris L. P. vulgaris, common dry bean, is an important food source, economic product, and model organism for the legumes. Gene-based markers were developed that corresponded to genes controlling mutant phenotypes in Arabidopsis thaliana, genes undergoing selection during domestication in maize, and genes that function in a biochemical pathway in A. thaliana. Sequence information, including introns and 3' UTR, was generated for over 550 genes in the two genotypes of P. vulgaris. Over 1,800 single nucleotide polymorphisms and indels were found, 300 of which were screened in the RI population. The resulting LOD 2.0 map is 1,545 cM in length and consists of 275 gene-based and previously mapped core markers. An additional 153 markers that mapped at LOD <1.0 were placed in genetic bins. By screening the parents of other mapping populations, it was determined that the markers were useful for other common Mesoamerican x Andean mapping populations. The location of the mapped genes relative to their homologs in Arabidopsis thaliana (At), Medicago truncatula (Mt), and Lotus japonicus (Lj) were determine by using a tblastx analysis with the current pseduochromosome builds for each of the species. While only short blocks of synteny were observed with At, large-scale macrosyntenic blocks were observed with Mt and Lj. By using Mt and Lj as bridging species, the syntenic relationship between the common bean and peanut was inferred.Digital Object Identifier http://dx.doi.org/10.1007/s00122-010-1375-9
机译:分子连锁图谱是基因发现和克隆,作物改良,进一步的遗传研究,多样性和进化史研究以及种间比较的重要工具。连锁图谱在标记的类型和使用的种群类型上都不同。在这项研究中,基于基因的标记被用于在菜豆中的重组近交(RI)群体中作图。寻常的干豆寻常型是豆类的重要食物来源,经济产品和模型生物。开发了基于基因的标记,这些标记对应于控制拟南芥中突变表型的基因,在玉米驯化过程中进行选择的基因以及在iA中的生化途径中起作用的基因。拟南芥。为 P的两个基因型中的550多个基因生成了包括内含子和3'UTR在内的序列信息。寻常。发现了超过1800个单核苷酸多态性和插入缺失,其中在RI群体中筛选了其中的300个。生成的LOD 2.0图长为1,545 cM,由275个基于基因的和先前定位的核心标记组成。将另外153个LOD <1.0的标记置于遗传箱中。通过筛选其他作图种群的亲本,确定标记物对其他常见的中美洲x安第斯作图种群有用。拟南芥(i),t(Medicago truncatula)(Mt)和 Lotus japonicus (Lj)中定位基因相对于其同源物的位置通过使用tblastx分析确定每个物种的当前伪染色体构建体。当用At观察到短的句法块时,用Mt和Lj观察到大规模的大句法块。通过使用Mt和Lj作为桥连物种,推断了普通豆和花生之间的同构关系。数字对象标识符http://dx.doi.org/10.1007/s00122-010-1375-9

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