首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genetic mapping and transcription analyses of resistance gene loci in potato using NBS profiling.
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Genetic mapping and transcription analyses of resistance gene loci in potato using NBS profiling.

机译:使用NBS谱分析马铃薯抗病基因位点的遗传图谱和转录分析。

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NBS profiling is a method for the identification of resistance gene analog (RGA) derived fragments. Here we report the use of NBS profiling for the genome wide mapping of RGA loci in potato. NBS profiling analyses on a minimal set of F1 genotypes of the diploid mapping population previously used to generate the ultra dense (UHD) genetic map of potato, allowed us to efficiently map polymorphic RGA fragments relative to 10,000 existing AFLP markers. In total, 34 RGA loci were mapped, of which only 13 contained RGA sequences homologous to RGAs genetically positioned at approximately similar positions in potato or tomato. The remaining RGA loci mapped either at approximate chromosomal regions previously shown to contain RGAs in potato or tomato without sharing homology to these RGAs, or mapped at positions not yet identified as RGA-containing regions. In addition to markers representing RGAs with unknown functions, segregating markers were detected that were closely linked to four functional R genes that segregate in the UHD mapping population. To explore the potential of NBS profiling in RGA transcription analyses, RNA isolated from different tissues was used as template for NBS profiling. Of all the fragments amplified approximately 15% showed putative intensity or absent/present differences between different tissues suggesting putative tissue specific RGA or R gene transcription. Putative absent/present differences between individuals were also found. In addition to being a powerful tool for generating candidate gene markers linked to R gene loci, NBS profiling, when applied to cDNA, can be instrumental in identifying those members of an R gene cluster that are transcribed, and thus putatively functional.
机译:NBS分析是一种鉴定抗性基因类似物(RGA)衍生片段的方法。在这里,我们报告了使用NBS分析进行马铃薯RGA基因座的全基因组定位。 NBS对以前用于生成马铃薯超高密度(UHD)遗传图谱的二倍体定位群体的F1基因型的最小集合进行分析,这使我们能够相对于10,000个现有AFLP标记有效地定位多态性RGA片段。总共绘制了34个RGA位点,其中只有13个包含与遗传定位在马铃薯或番茄中近似相似位置的RGA同源的RGA序列。其余的RGA基因座位于先前显示为在马铃薯或番茄中含有RGA的近似染色体区域,与这些RGA没有相同的同源性,或者位于尚未鉴定为包含RGA的区域。除了代表功能未知的RGA的标记外,还检测到与在UHD作图群体中分离的四个功能性R基因密切相关的分离标记。为了探索在RGA转录分析中进行NBS分析的潜力,将从不同组织中分离的RNA用作NBS分析的模板。在扩增的所有片段中,大约15%的片段在不同组织之间显示出推测的强度或不存在/存在差异,表明推测的组织特异性RGA或R基因转录。还发现了个体之间的假定的缺失/存在差异。 NBS分析不仅是一种强大的工具,可用于生成与R基因位点相关的候选基因标记,而且在应用于cDNA时,还可用于鉴定转录的R基因簇的那些成员,从而推定其功能。

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