Genomic insights into variation in thermotolerance between hybridizing swordtail fishes.

IF 4.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Molecular Ecology Pub Date : 2024-12-01 Epub Date: 2022-05-27 DOI:10.1111/mec.16489
Cheyenne Payne, Richard Bovio, Daniel L Powell, Theresa R Gunn, Shreya M Banerjee, Victoria Grant, Gil G Rosenthal, Molly Schumer
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引用次数: 0

Abstract

Understanding how organisms adapt to changing environments is a core focus of research in evolutionary biology. One common mechanism is adaptive introgression, which has received increasing attention as a potential route to rapid adaptation in populations struggling in the face of ecological change, particularly global climate change. However, hybridization can also result in deleterious genetic interactions that may limit the benefits of adaptive introgression. Here, we used a combination of genome-wide quantitative trait locus mapping and differential gene expression analyses between the swordtail fish species Xiphophorus malinche and X. birchmanni to study the consequences of hybridization on thermotolerance. While these two species are adapted to different thermal environments, we document a complicated architecture of thermotolerance in hybrids. We identify a region of the genome that contributes to reduced thermotolerance in individuals heterozygous for X. malinche and X. birchmanni ancestry, as well as widespread misexpression in hybrids of genes that respond to thermal stress in the parental species, particularly in the circadian clock pathway. We also show that a previously mapped hybrid incompatibility between X. malinche and X. birchmanni contributes to reduced thermotolerance in hybrids. Together, our results highlight the challenges of understanding the impact of hybridization on complex ecological traits and its potential impact on adaptive introgression.

剑尾鱼杂交间耐热性变异的基因组学启示。
了解生物如何适应不断变化的环境是进化生物学研究的核心重点。适应性引种是其中一种常见的机制,它作为在生态变化(尤其是全球气候变化)中挣扎的种群快速适应环境的潜在途径,受到越来越多的关注。然而,杂交也可能导致有害的遗传相互作用,从而限制适应性引种的益处。在这里,我们结合使用了剑尾鱼种 Xiphophorus malinche 和 X. birchmanni 之间的全基因组数量性状位点图谱和差异基因表达分析来研究杂交对耐热性的影响。虽然这两个物种适应不同的热环境,但我们记录了杂交种耐热性的复杂结构。我们确定了基因组的一个区域,该区域会导致 X. malinche 和 X. birchmanni 祖先杂合个体耐热性的降低,以及亲本物种中响应热应力的基因在杂交种中的广泛错误表达,特别是在昼夜节律时钟通路中。我们还发现,以前绘制的 X. malinche 和 X. birchmanni 之间的杂交不相容性导致杂交种的耐热性降低。我们的研究结果凸显了理解杂交对复杂生态性状的影响及其对适应性引种的潜在影响所面临的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Ecology
Molecular Ecology 生物-进化生物学
CiteScore
8.40
自引率
10.20%
发文量
472
审稿时长
1 months
期刊介绍: Molecular Ecology publishes papers that utilize molecular genetic techniques to address consequential questions in ecology, evolution, behaviour and conservation. Studies may employ neutral markers for inference about ecological and evolutionary processes or examine ecologically important genes and their products directly. We discourage papers that are primarily descriptive and are relevant only to the taxon being studied. Papers reporting on molecular marker development, molecular diagnostics, barcoding, or DNA taxonomy, or technical methods should be re-directed to our sister journal, Molecular Ecology Resources. Likewise, papers with a strongly applied focus should be submitted to Evolutionary Applications. Research areas of interest to Molecular Ecology include: * population structure and phylogeography * reproductive strategies * relatedness and kin selection * sex allocation * population genetic theory * analytical methods development * conservation genetics * speciation genetics * microbial biodiversity * evolutionary dynamics of QTLs * ecological interactions * molecular adaptation and environmental genomics * impact of genetically modified organisms
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