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首页> 外文期刊>Molecular genetics and genomics: MGG >Genome-wide identification of novel genetic markers from RNA sequencing assembly of diverse Aegilops tauschii accessions
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Genome-wide identification of novel genetic markers from RNA sequencing assembly of diverse Aegilops tauschii accessions

机译:全基因组识别新的遗传标记,从不同的节节AE的RNA测序组装

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摘要

The wild species in the Triticeae tribe are tremendous resources for crop breeding due to their abundant natural variation. However, their huge and highly repetitive genomes have hindered the establishment of physical maps and the completeness of their genome sequences. To develop molecular markers for the efficient utilization of their valuable traits while avoiding their genome complexity, we assembled RNA sequences of ten representative accessions of Aegilops tauschii, the progenitor of the wheat D genome, and estimated single nucleotide polymorphisms (SNPs) and insertions/deletions (indels). The deduced unigenes were anchored to the chromosomes of Ae. tauschii and barley. The SNPs and indels in the anchored unigenes, covering entire chromosomes, were sufficient for linkage map construction, even in combinations between the genetically closest accessions. Interestingly, the resolution of SNP and indel distribution on barley chromosomes was slightly higher than on Ae. tauschii chromosomes. Since barley chromosomes are regarded as virtual chromosomes of Triticeae species, our strategy allows capture of genetic markers arranged on the chromosomes in order based on the conserved synteny. The resolution of these genetic markers will be comparable to that of the Ae. tauschii whose draft genome sequence is available. Our procedure should be applicable to marker development for Triticeae species, which have no draft sequences available.
机译:小麦属部落的野生物种由于其丰富的自然变异而成为农作物育种的巨大资源。但是,它们庞大且高度重复的基因组阻碍了物理图谱的建立和基因组序列的完整性。为了开发分子标记以有效利用其宝贵性状,同时避免其基因组复杂性,我们组装了十个代表性小麦(Aegilops tauschii),小麦D基因组的祖先的RNA序列,并估算了单核苷酸多态性(SNP)和插入/缺失(行业)。推导的单基因锚定到Ae的染色体上。陶希和大麦。覆盖整个染色体的锚定单基因中的SNP和插入缺失足以构成连锁图谱,即使在遗传上最接近的种质之间也是如此。有趣的是,大麦染色体上SNP的分辨率和插入/缺失分布略高于Ae。 tauschii染色体。由于大麦染色体被视为小麦属物种的虚拟染色体,因此我们的策略允许根据保守的同义顺序捕获排列在染色体上的遗传标记。这些遗传标记的分辨率将与Ae相当。可获得基因组草图序列的tauschii。我们的程序应适用于没有可用序列草案的黑麦属植物的标记开发。

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