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Comparative Sequence Analysis of the Region Harboring the Hardness Locus in Barley and Its Colinear Region in Rice

机译:大麦硬度区及其共线性区的比较序列分析

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摘要

The ancestral shared synteny concept has been advocated as an approach to positionally clone genes from complex genomes. However, the unified grass genome model and the study of grasses as a single syntenic genome is a topic of considerable controversy. Hence, more quantitative studies of cereal colinearity at the sequence level are required. This study compared a contiguous 300-kb sequence of the barley (Hordeum vulgare) genome with the colinear region in rice (Oryza sativa). The barley sequence harbors genes involved in endosperm texture, which may be the subject of distinctive evolutionary forces and is located at the extreme telomeric end of the short arm of chromosome 5H. Comparative sequence analysis revealed the presence of five orthologous genes and a complex, postspeciation evolutionary history involving small chromosomal rearrangements, a translocation, numerous gene duplications, and extensive transposon insertion. Discrepancies in gene content and microcolinearity indicate that caution should be exercised in the use of rice as a surrogate for map-based cloning of genes from large genome cereals such as barley.
机译:祖先共享同构概念已被提倡作为一种从复杂基因组中克隆基因的方法。然而,统一的草基因组模型和将草作为单一同基因组基因进行研究是一个颇有争议的话题。因此,需要在序列水平上对谷物共线性进行更多的定量研究。这项研究比较了大麦(Hordeum vulgare)基因组的连续300 kb序列与水稻(Oryza sativa)的共线区域。大麦序列包含与胚乳质地有关的基因,胚乳质地可能是独特的进化力的对象,位于5H染色体短臂的端粒末端。比较序列分析揭示了五个直系同源基因的存在和复杂的,物种形成后的进化历史,涉及小的染色体重排,易位,大量基因重复和广泛的转座子插入。基因含量和微共线性的差异表明,在将水稻用作替代基于图谱的大基因组谷物如大麦基因的克隆时,应谨慎行事。

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