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Construction of an integrated genetic linkage map for the A genome of Brassica napus using SSR markers derived from sequenced BACs in B. rapa

机译:利用来源于油菜双歧杆菌序列BAC的SSR标记构建甘蓝型油菜A基因组整合遗传连锁图谱

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Background The Multinational Brassica rapa Genome Sequencing Project (BrGSP) has developed valuable genomic resources, including BAC libraries, BAC-end sequences, genetic and physical maps, and seed BAC sequences for Brassica rapa. An integrated linkage map between the amphidiploid B. napus and diploid B. rapa will facilitate the rapid transfer of these valuable resources from B. rapa to B. napus (Oilseed rape, Canola). Results In this study, we identified over 23,000 simple sequence repeats (SSRs) from 536 sequenced BACs. 890 SSR markers (designated as BrGMS) were developed and used for the construction of an integrated linkage map for the A genome in B. rapa and B. napus. Two hundred and nineteen BrGMS markers were integrated to an existing B. napus linkage map (BnaNZDH). Among these mapped BrGMS markers, 168 were only distributed on the A genome linkage groups (LGs), 18 distrubuted both on the A and C genome LGs, and 33 only distributed on the C genome LGs. Most of the A genome LGs in B. napus were collinear with the homoeologous LGs in B. rapa, although minor inversions or rearrangements occurred on A2 and A9. The mapping of these BAC-specific SSR markers enabled assignment of 161 sequenced B. rapa BACs, as well as the associated BAC contigs to the A genome LGs of B. napus. Conclusion The genetic mapping of SSR markers derived from sequenced BACs in B. rapa enabled direct links to be established between the B. napus linkage map and a B. rapa physical map, and thus the assignment of B. rapa BACs and the associated BAC contigs to the B. napus linkage map. This integrated genetic linkage map will facilitate exploitation of the B. rapa annotated genomic resources for gene tagging and map-based cloning in B. napus, and for comparative analysis of the A genome within Brassica species.
机译:背景跨国芸苔属基因组测序项目(BrGSP)开发了宝贵的基因组资源,包括芸苔属植物的BAC文库,BAC末端序列,遗传和物理图谱以及种子BAC序列。二倍体油菜和二倍体油菜之间的整合连锁图将促进这些有价值的资源从油菜快速转移到油菜(油菜,油菜籽)。结果在这项研究中,我们从536个测序的BAC中鉴定出23,000个简单序列重复(SSR)。开发了890个SSR标记(称为BrGMS)并将其用于构建油菜和油菜中A基因组的整合连锁图谱。 219个BrGMS标记已整合到现有的甘蓝型油菜连锁图谱(BnaNZDH)。在这些绘制的BrGMS标记中,只有168个分布在A基因组连锁组(LGs)上,有18个分布在A和C基因组LGs上,有33个仅分布在C基因组LGs上。甘蓝型油菜中的大多数A基因组LG与甘蓝型油菜中的同源LG共线,尽管在A2和A9上发生了较小的倒置或重排。这些BAC特定SSR标记的映射可以将161个测序的B. rapa BAC以及相关的BAC重叠群分配给B. napus的A基因组LG。结论通过对B. rapa中BAC测序的SSR标记进行遗传图谱分析,可以建立B. napus连锁图谱与B. rapa物理图谱之间的直接链接,从而确定B. rapa BAC和相关BAC重叠群的分配。 B. napus连锁图。这种综合的遗传连锁图谱将促进利用双歧杆菌注释的基因组资源进行油菜双歧杆菌的基因标记和基于图谱的克隆,以及对芸苔属中的A基因组进行比较分析。

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