Impacts of Body Colour, Symbionts and Genomic Regions on the Pea Aphid Wing Plasticity Variation

IF 4.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Lauren E. Gregory, Rose M. H. Driscoll, Benjamin J. Parker, Jennifer A. Brisson
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引用次数: 0

Abstract

Adaptive phenotypic plasticity describes the phenomenon in which a single genotype can produce a variety of phenotypes that match their environments. Like any trait, plasticity is a phenotype that can exhibit variation, but despite the ecological importance of plasticity variation, little is known about its genetic basis. Here we use the pea aphid to investigate the genetic basis of wing plasticity variation. Previous reports have suggested an ecological association between body coloration and wing plasticity strength in the pea aphid, so we tested the hypothesis that the body colour determination locus (tor) associated with wing plasticity variation. We discover that there is no relationship between body colour and wing plasticity in natural populations or in a genetic mapping population. We also localise the tor locus to the third autosome, whereas it was previously thought to be on the first autosome, a finding that will be important for future studies of the locus. We find that the presence of the bacterial symbiont Regiella is associated with higher levels of wing plasticity. Genome-wide association analysis of wing plasticity variation did not reveal an impact of the tor locus, consistent with independence of body colour and wing plasticity. This analysis implicated one possible candidate gene—a Hox gene, abdominal-A—underlying wing plasticity variation, although SNPs do not reach the level of genome-wide significance and therefore will require further study. Our study highlights that plasticity variation is complex, impacted by a bacterial symbiont and genetic variation, but not influenced by body colour.

体色、共生体和基因组区域对豌豆蚜虫翅膀可塑性变异的影响。
适应性表型可塑性描述了一种现象,在这种现象中,一个基因型可以产生多种与其环境相匹配的表型。像任何性状一样,可塑性是一种可以表现出变异的表型,但尽管可塑性变异具有生态重要性,但对其遗传基础知之甚少。本文以豌豆蚜虫为研究对象,探讨了豌豆蚜虫翅膀可塑性变异的遗传基础。先前的研究已经提出豌豆蚜虫的体色与翅膀可塑性强度之间存在生态关联,因此我们验证了体色决定位点(tor)与翅膀可塑性变化有关的假设。我们发现,在自然种群或遗传作图种群中,身体颜色和翅膀可塑性之间没有关系。我们还将tor基因座定位在第三个常染色体上,而之前认为它位于第一个常染色体上,这一发现将对该基因座的未来研究很重要。我们发现细菌共生体Regiella的存在与更高水平的翅膀可塑性有关。翅膀可塑性变异的全基因组关联分析未发现tor位点的影响,与体色和翅膀可塑性的独立性一致。该分析暗示了一个可能的候选基因- Hox基因,腹部a -潜在的翅膀可塑性变异,尽管snp尚未达到全基因组意义的水平,因此需要进一步研究。我们的研究强调可塑性变化是复杂的,受细菌共生体和遗传变异的影响,但不受身体颜色的影响。
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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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