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Inaugural Article: Pattern of diversity in the genomic region near the maize domestication gene tb1

机译:开幕文章:玉米驯化基因tb1附近的基因组区域中的多样性模式

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摘要

Domesticated maize and its wild ancestor (teosinte) differ strikingly in morphology and afford an opportunity to examine the connection between strong selection and diversity in a major crop species. The tb1 gene largely controls the increase in apical dominance in maize relative to teosinte, and a region of the tb1 locus 5′ to the transcript sequence was a target of selection during maize domestication. To better characterize the impact of selection at a major “domestication” locus, we have sequenced the upstream tb1 genomic region and systematically sampled nucleotide diversity for sites located as far as 163 kb upstream to tb1. Our analyses define a selective sweep of ≈60–90 kb 5′ to the tb1 transcribed sequence. The selected region harbors a mixture of unique sequences and large repetitive elements, but it contains no predicted genes. Diversity at the nearest 5′ gene to tb1 is typical of that for neutral maize loci, indicating that selection at tb1 has had a minimal impact on the surrounding chromosomal region. Our data also show low intergenic linkage disequilibrium in the region and suggest that selection has had a minor role in shaping the pattern of linkage disequilibrium that is observed. Finally, our data raise the possibility that maize-like tb1 haplotypes are present in extant teosinte populations, and our findings also suggest a model of tb1 gene regulation that differs from traditional views of how plant gene expression is controlled.
机译:驯化的玉米及其野生祖先(teosinte)在形态上截然不同,并提供了一个机会来研究主要作物物种中强选择与多样性之间的联系。相对于teosinte,tb1基因在很大程度上控制了玉米的顶端优势,并且tb1基因座5'到转录序列的区域是玉米驯化期间选择的目标。为了更好地表征选择在主要“驯养”基因座上的影响,我们对了上游tb1基因组区域进行了测序,并系统性地采样了位于tb1上游163 kb处的核苷酸多样性。我们的分析定义了对tb1转录序列的约60–90 kb 5'选择性扫描。所选区域包含独特序列和大型重复元件的混合物,但不包含预测基因。距tb1最近的5'基因处的多样性是中性玉米基因座的典型多样性,这表明tb1处的选择对周围染色体区域的影响最小。我们的数据还显示该区域内的基因间连锁不平衡程度较低,表明选择在塑造观察到的连锁不平衡模式方面起了很小的作用。最后,我们的数据提高了现存的teosinte群体中存在玉米样tb1单倍型的可能性,我们的发现还提出了tb1基因调控的模型,该模型不同于传统的植物基因表达控制方式。

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