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Haplotype structure strongly affects recombination in a maize genetic interval polymorphic for Helitron and retrotransposon insertions

机译:单倍型结构强烈影响玉米基因间隔多态性的Helitron和反转录转座子插入的重组

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摘要

We have asked here how the remarkable variation in maize haplotype structure affects recombination. We compared recombination across a genetic interval of 9S in 2 highly dissimilar heterozygotes that shared 1 parent. The genetic interval in the common haplotype is ≈100 kb long and contains 6 genes interspersed with gene-fragment-bearing Helitrons and retrotransposons that, together, comprise 70% of its length. In one heterozygote, most intergenic insertions are homozygous, although polymorphic, enabling us to determine whether any recombination junctions fall within them. In the other, most intergenic insertions are hemizygous and, thus, incapable of homologous recombination. Our analysis of the frequency and distribution of recombination in the interval revealed that: (i) Most junctions were circumscribed to the gene space, where they showed a highly nonuniform distribution. In both heterozygotes, more than half of the junctions fell in the stc1 gene, making it a clear recombination hotspot in the region. However, the genetic size of stc1 was 2-fold lower when flanked by a hemizygous 25-kb retrotransposon cluster. (ii) No junctions fell in the hypro1 gene in either heterozygote, making it a genic recombination coldspot. (iii) No recombination occurred within the gene fragments borne on Helitrons nor within retrotransposons, so neither insertion class contributes to the interval's genetic length. (iv) Unexpectedly, several junctions fell in an intergenic region not shared by all 3 haplotypes. (v) In general, the ability of a sequence to recombine correlated inversely with its methylation status. Our results show that haplotypic structural variability strongly affects the frequency and distribution of recombination events in maize.
机译:我们在这里询问了玉米单倍型结构的显着变化如何影响重组。我们比较了共享1个亲本的2个高度不同的杂合子在9S遗传间隔内的重组。常见单倍型的遗传间隔长约100 kb,包含6个基因,散布有携带基因片段的Helitrons和逆转座子,共占其长度的70%。在一个杂合子中,大多数基因间插入是纯合的,尽管是多态的,使我们能够确定是否有任何重组连接落入其中。另一方面,大多数基因间插入是半合子的,因此不能进行同源重组。我们对间隔中重组频率和分布的分析表明:(i)大多数连接都限制在基因空间内,在那里它们表现出高度不均匀的分布。在这两个杂合子中,超过一半的连接点都落在了stc1基因中,这使其成为该区域一个明确的重组热点。但是,stc1的遗传大小比半合子25kb的反转录转座子簇低2倍。 (ii)任一杂合子的hypro1基因均无连接处掉落,使其成为基因重组冷点。 (iii)在Helitron上携带的基因片段内或在反转录转座子内均未发生重组,因此,插入类别均不会影响间隔的遗传长度。 (iv)出乎意料的是,几个交界处落在不是所有3个单倍型共有的一个基因间区域。 (v)一般而言,序列重组的能力与其甲基化状态成反比。我们的结果表明,单倍型结构变异性强烈影响玉米重组事件的频率和分布。

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    He, Limei; Dooner, Hugo K.;

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  • 年度 2009
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