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A whole-genome snapshot of 454 sequences exposes the composition of the barley genome and provides evidence for parallel evolution of genome size in wheat and barley

机译:454个序列的全基因组快照揭示了大麦基因组的组成,并提供了小麦和大麦基因组大小平行进化的证据

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摘要

The genomes of barley and wheat, two of the world's most important crops, are very large and complex due to their high content of repetitive DNA. In order to obtain a whole-genome sequence sample, we performed two runs of 454 (GS20) sequencing on genomic DNA of barley cv. Morex, which yielded approximately 1% of a haploid genome equivalent. Almost 60% of the sequences comprised known transposable element (TE) families, and another 9% represented novel repetitive sequences. We also discovered high amounts of low-complexity DNA and non-genic low-copy DNA. We identified almost 2300 protein coding gene sequences and more than 660 putative conserved non-coding sequences. Comparison of the 454 reads with previously published genomic sequences suggested that TE families are distributed unequally along chromosomes. This was confirmed by in situ hybridizations of selected TEs. A comparison of these data for the barley genome with a large sample of publicly available wheat sequences showed that several TE families that are highly abundant in wheat are absent from the barley genome. This finding implies that the TE composition of their genomes differs dramatically, despite their very similar genome size and their close phylogenetic relationship.
机译:大麦和小麦这两种世界上最重要的农作物的基因组非常大且复杂,原因是它们的重复DNA含量很高。为了获得全基因组序列样品,我们对大麦简历的基因组DNA进行了两次454(GS20)测序。 Morex,产生约1%的单倍体基因组当量。几乎60%的序列包含已知的转座因子(TE)家族,另外9%代表新颖的重复序列。我们还发现了大量的低复杂度DNA和非基因的低拷贝DNA。我们鉴定了将近2300个蛋白质编码基因序列和660多个保守的非编码保守序列。 454读数与以前发表的基因组序列的比较表明,TE家族沿着染色体分布不均。通过选择的TE的原位杂交证实了这一点。将大麦基因组的这些数据与大量公开的小麦序列样本进行比较后,发现大麦基因组中缺少几个小麦中高度丰富的TE家族。这一发现暗示,尽管它们的基因组大小非常相似并且它们之间的亲缘关系很密切,但它们基因组的TE组成却有很大的不同。

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