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一种专性蝇类适应新生态位过程中的进化与可塑性基因表达

Evolved and Plastic Gene Expression in Adaptation of a Specialist Fly to a Novel Niche.

作者信息

Steward Rachel A, Ortega Giménez Jesús, Choudhary Shruti, Moss Oliver, Su Yi, Van Aken Olivier, Runemark Anna

机构信息

Department of Biology, Lund University, Lund, Sweden.

Cavanilles Institute of Biodiversity and Evolutionary Biology, Universidad de Valencia, Paterna, Spain.

出版信息

Mol Ecol. 2025 Feb;34(4):e17653. doi: 10.1111/mec.17653. Epub 2025 Jan 9.

Abstract

How gene expression evolves to enable divergent ecological adaptation and how changes in gene expression relate to genomic architecture are pressing questions for understanding the mechanisms enabling adaptation and ecological speciation. Furthermore, how plasticity in gene expression can both contribute to and be affected by the process of ecological adaptation is crucial to understanding gene expression evolution, colonisation of novel niches and response to rapid environmental change. Here, we investigate the role of constitutive and plastic gene expression differences between host races, or host-specific ecotypes, of the peacock fly Tephritis conura, a thistle bud specialist. By cross-fostering larvae to new buds of their natal host plant or the alternative, novel host plant, we uncover extensive constitutive differences in gene expression between the host races, especially genes associated with processing of host plant chemicals. However, evidence for expression plasticity was minimal and limited to the ancestral host race. Genes with host race-specific expression are found more often than expected within a large inversion in the T. conura genome, adding to evidence that inversions are important for enabling diversification in the face of gene flow and underscores that altered gene expression may be key to understanding the evolutionary consequences of inversions.

摘要

基因表达如何进化以实现不同的生态适应,以及基因表达的变化如何与基因组结构相关,是理解适应和生态物种形成机制的紧迫问题。此外,基因表达的可塑性如何既促进生态适应过程又受到该过程的影响,对于理解基因表达进化、新生态位的定殖以及对快速环境变化的响应至关重要。在这里,我们研究了孔雀蝇Tephritis conura(一种蓟芽专性昆虫)的寄主种族或寄主特异性生态型之间组成型和可塑性基因表达差异的作用。通过将幼虫交叉寄养到其原生寄主植物或替代的新寄主植物的新芽上,我们发现寄主种族之间在基因表达上存在广泛的组成型差异,尤其是与寄主植物化学物质加工相关的基因。然而,表达可塑性的证据很少,且仅限于祖先寄主种族。在T. conura基因组的一个大倒位中,具有寄主种族特异性表达的基因比预期更频繁地被发现,这进一步证明倒位对于在基因流存在的情况下实现多样化很重要,并强调基因表达的改变可能是理解倒位进化后果的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2f9/11789552/8ec1c04618a2/MEC-34-e17653-g002.jpg

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