Molecular underpinnings of plasticity and supergene-mediated polymorphism in fire ant queens.

IF 2.1 3区 生物学 Q3 ECOLOGY
Alex H Waugh, Michael A Catto, Samuel V Arsenault, Sasha Kay, Kenneth G Ross, Brendan G Hunt
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Abstract

Characterizing molecular underpinnings of plastic traits and balanced polymorphisms represent two important goals of evolutionary biology. Fire ant gynes (pre-reproductive queens) provide an ideal system to study potential links between these phenomena because they exhibit both supergene-mediated polymorphism and nutritional plasticity in weight and colony-founding behavior. Gynes with the inversion supergene haplotype are lightweight and depend on existing workers to initiate reproduction. Gynes with only the ancestral, non-inverted gene arrangement accumulate more nutrient reserves as adults and, in a distinct colony-founding behavior, initiate reproduction without help from workers. However, when such gynes overwinter in the natal nest they develop an environmentally induced lightweight phenotype and colony-founding behavior, similar to gynes with the inversion haplotype that have not overwintered. To evaluate the extent of shared mechanisms between plasticity and balanced polymorphism in fire ant gyne traits, we assessed whether genes with expression variation linked to overwintering plasticity may be affected by evolutionary divergence between supergene haplotypes. To do so, we first compared transcriptional profiles of brains and ovaries from overwintered and non-overwintered gynes to identify plasticity-associated genes. These genes were enriched for metabolic and behavioral functions. Next, we compared plasticity-associated genes to those differentially expressed by supergene genotype, revealing a significant overlap of the two sets in ovarian tissues. We also identified sequence substitutions between supergene variants of multiple plasticity-associated genes, consistent with a scenario in which an ancestrally plastic phenotype responsive to an environmental condition became increasingly genetically regulated.

火蚁蚁后可塑性和超基因介导多态性的分子基础。
表征可塑性性状的分子基础和平衡多态性是进化生物学的两个重要目标。火蚁群(繁殖前的蚁后)为研究这些现象之间的潜在联系提供了一个理想的系统,因为它们在体重和群体建立行为中表现出超基因介导的多态性和营养可塑性。具有倒置超基因单倍型的Gynes重量轻,依赖于现有的工蜂开始繁殖。只有祖先的非反向基因排列的雌虫在成年后积累了更多的营养储备,并且以一种独特的群体建立行为,在没有工蜂帮助的情况下开始繁殖。然而,当这些雌性在出生巢越冬时,它们会发展出一种环境诱导的轻量级表型和殖民地建立行为,类似于具有反转单倍型的雌性没有越冬。为了评估火蚁可塑性和平衡多态性之间的共享机制程度,我们评估了与越冬可塑性相关的表达变异基因是否可能受到超基因单倍型之间进化差异的影响。为此,我们首先比较了越冬雌性和非越冬雌性的大脑和卵巢的转录谱,以确定与可塑性相关的基因。这些基因丰富了代谢和行为功能。接下来,我们将可塑性相关基因与那些由超基因基因型差异表达的基因进行了比较,发现这两组基因在卵巢组织中存在显著的重叠。我们还发现了多个可塑性相关基因的超基因变体之间的序列替换,这与一种对环境条件有反应的祖先可塑性表型越来越受到遗传调控的情况相一致。
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
Journal of Evolutionary Biology
Journal of Evolutionary Biology 生物-进化生物学
CiteScore
4.20
自引率
4.80%
发文量
152
审稿时长
3-6 weeks
期刊介绍: It covers both micro- and macro-evolution of all types of organisms. The aim of the Journal is to integrate perspectives across molecular and microbial evolution, behaviour, genetics, ecology, life histories, development, palaeontology, systematics and morphology.
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