Eck Institute for Global Health and Department of Biological Sciences, University of Notre Dame, Notre Dame, Indiana.
Department of Computer Science, Indiana University, Bloomington, Indiana.
Mol Ecol. 2019 Mar;28(6):1333-1342. doi: 10.1111/mec.14880. Epub 2018 Oct 22.
Inversion polymorphisms are responsible for many ecologically important phenotypes and are often found under balancing selection. However, the same features that ensure their large role in local adaptation-especially reduced recombination between alternate arrangements-mean that uncovering the precise loci within inversions that control these phenotypes is unachievable using standard mapping approaches. Here, we take advantage of long-term balancing selection on a pair of inversions in the mosquito Anopheles gambiae to map desiccation tolerance via pool-GWAS. Two polymorphic inversions on chromosome 2 of this species (denoted 2La and 2Rb) are associated with arid and hot conditions in Africa and are maintained in spatially and temporally heterogeneous environments. After measuring thousands of wild-caught individuals for survival under desiccation stress, we used phenotypically extreme individuals homozygous for alternative arrangements at the 2La inversion to construct pools for whole-genome sequencing. Genomewide association mapping using these pools revealed dozens of significant SNPs within both 2La and 2Rb, many of which neighboured genes controlling ion channels or related functions. Our results point to the promise of similar approaches in systems with inversions maintained by balancing selection and provide a list of candidate genes underlying the specific phenotypes controlled by the two inversions studied here.
倒位多态性是许多具有重要生态意义的表型的基础,并且经常在平衡选择下被发现。然而,确保它们在局部适应中发挥重要作用的相同特征——特别是在交替排列之间减少重组——意味着使用标准的作图方法无法揭示控制这些表型的倒位的确切位置。在这里,我们利用蚊子 Anopheles gambiae 中一对倒位的长期平衡选择,通过池 GWAS 来映射耐旱性。该物种 2 号染色体上的两个多态性倒位(分别表示为 2La 和 2Rb)与非洲的干旱和炎热条件有关,并在时空异质的环境中得到维持。在测量了数千只在干旱胁迫下生存的野生捕获个体后,我们使用在 2La 倒位上具有替代排列的纯合表型极端个体来构建全基因组测序的池。使用这些池进行全基因组关联作图揭示了 2La 和 2Rb 内的数十个显著 SNP,其中许多 SNP 位于控制离子通道或相关功能的基因附近。我们的结果表明,在由平衡选择维持的具有倒位的系统中,类似的方法具有前景,并提供了控制这里研究的两个倒位的特定表型的候选基因列表。