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从bz位点的单倍型多样性推断玉米基因组结构的显著变异。

Remarkable variation in maize genome structure inferred from haplotype diversity at the bz locus.

作者信息

Wang Qinghua, Dooner Hugo K

机构信息

The Waksman Institute, Rutgers, The State University of New Jersey, Piscataway, NJ 08855, USA.

出版信息

Proc Natl Acad Sci U S A. 2006 Nov 21;103(47):17644-9. doi: 10.1073/pnas.0603080103. Epub 2006 Nov 13.

DOI:10.1073/pnas.0603080103
PMID:17101975
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1693800/
Abstract

Maize is probably the most diverse of all crop species. Unexpectedly large differences among haplotypes were first revealed in a comparison of the bz genomic regions of two different inbred lines, McC and B73. Retrotransposon clusters, which comprise most of the repetitive DNA in maize, varied markedly in makeup, and location relative to the genes in the region and genic sequences, later shown to be carried by two helitron transposons, also differed between the inbreds. Thus, the allelic bz regions of these Corn Belt inbreds shared only a minority of the total sequence. To investigate further the variation caused by retrotransposons, helitrons, and other insertions, we have analyzed the organization of the bz genomic region in five additional cultivars selected because of their geographic and genetic diversity: the inbreds A188, CML258, and I137TN, and the land races Coroico and NalTel. This vertical comparison has revealed the existence of several new helitrons, new retrotransposons, members of every superfamily of DNA transposons, numerous miniature elements, and novel insertions flanked at either end by TA repeats, which we call TAFTs (TA-flanked transposons). The extent of variation in the region is remarkable. In pairwise comparisons of eight bz haplotypes, the percentage of shared sequences ranges from 25% to 84%. Chimeric haplotypes were identified that combine retrotransposon clusters found in different haplotypes. We propose that recombination in the common gene space greatly amplifies the variability produced by the retrotransposition explosion in the maize ancestry, creating the heterogeneity in genome organization found in modern maize.

摘要

玉米可能是所有作物品种中多样性最高的。在对两个不同自交系McC和B73的bz基因组区域进行比较时,首次发现单倍型之间存在意想不到的巨大差异。反转录转座子簇构成了玉米中大部分的重复DNA,其组成、相对于该区域基因的位置以及基因序列均有显著差异,后来发现这些是由两个Helitron转座子携带的,在自交系之间也有所不同。因此,这些玉米带自交系的等位基因bz区域仅共享了总序列的一小部分。为了进一步研究反转录转座子、Helitron和其他插入元件引起的变异,我们分析了另外五个因地理和遗传多样性而选择的品种中bz基因组区域的组织:自交系A188、CML258和I137TN,以及地方品种Coroico和NalTel。这种纵向比较揭示了几个新的Helitron、新的反转录转座子、DNA转座子每个超家族的成员、众多微型元件以及两端由TA重复序列侧翼的新型插入元件,我们将其称为TAFTs(TA侧翼转座子)。该区域的变异程度显著。在八个bz单倍型的成对比较中,共享序列的百分比范围为25%至84%。鉴定出了嵌合单倍型,它们结合了不同单倍型中发现的反转录转座子簇。我们认为,共同基因空间中的重组极大地放大了玉米祖先中反转录转座爆炸产生的变异性,从而在现代玉米中产生了基因组组织的异质性。

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本文引用的文献

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Gene duplication and exon shuffling by helitron-like transposons generate intraspecies diversity in maize.类helitron转座子介导的基因复制和外显子改组产生玉米种内多样性。
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Helitrons contribute to the lack of gene colinearity observed in modern maize inbreds.转座子导致了现代玉米自交系中观察到的基因共线性缺失。
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Proc Natl Acad Sci U S A. 2005 Jun 21;102(25):9068-73. doi: 10.1073/pnas.0502923102. Epub 2005 Jun 10.
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