Department of Agronomy and Plant Genetics, University of Minnesota, Saint Paul, MN 55108, USA.
Genetics. 2012 Jul;191(3):883-94. doi: 10.1534/genetics.112.138578. Epub 2012 Apr 27.
Chromosomal inversions are thought to play a special role in local adaptation, through dramatic suppression of recombination, which favors the maintenance of locally adapted alleles. However, relatively few inversions have been characterized in population genomic data. On the basis of single-nucleotide polymorphism (SNP) genotyping across a large panel of Zea mays, we have identified an ∼50-Mb region on the short arm of chromosome 1 where patterns of polymorphism are highly consistent with a polymorphic paracentric inversion that captures >700 genes. Comparison to other taxa in Zea and Tripsacum suggests that the derived, inverted state is present only in the wild Z. mays subspecies parviglumis and mexicana and is completely absent in domesticated maize. Patterns of polymorphism suggest that the inversion is ancient and geographically widespread in parviglumis. Cytological screens find little evidence for inversion loops, suggesting that inversion heterozygotes may suffer few crossover-induced fitness consequences. The inversion polymorphism shows evidence of adaptive evolution, including a strong altitudinal cline, a statistical association with environmental variables and phenotypic traits, and a skewed haplotype frequency spectrum for inverted alleles.
染色体倒位被认为在局部适应中起着特殊的作用,通过剧烈抑制重组,有利于维持局部适应的等位基因。然而,在群体基因组数据中,很少有倒位被描述过。基于对大量玉米单核苷酸多态性 (SNP) 基因分型的研究,我们在 1 号染色体短臂上发现了一个约 50Mb 的区域,该区域的多态性模式与一个多态性的旁倒位非常一致,该倒位捕获了 >700 个基因。与玉米属和三穗草属中的其他分类群相比,衍生的倒位状态仅存在于野生玉米亚种 parviglumis 和 mexicana 中,而在驯化的玉米中完全不存在。多态性模式表明,该倒位是古老的,在 parviglumis 中具有广泛的地理分布。细胞学筛选几乎没有发现倒位环的证据,这表明倒位杂合体可能很少受到交叉诱导的适应性后果。该倒位多态性显示出适应性进化的证据,包括强烈的海拔梯度、与环境变量和表型特征的统计学关联,以及倒位等位基因的偏态单倍型频率谱。