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在害虫绿豆象(鞘翅目:叶甲科)中,对温度和资源复合环境变化的非线性转录组反应

Nonlinear transcriptomic responses to compounded environmental changes across temperature and resources in a pest beetle, Callosobruchus maculatus (Coleoptera: Chrysomelidae).

作者信息

McCaw Beth A, Leonard Aoife M, Lancaster Lesley T

机构信息

School of Biological Sciences, University of Aberdeen, Aberdeen, UK.

Department of Ecoscience, Aarhus University, 4000 Roskilde, Denmark.

出版信息

J Insect Sci. 2024 Nov 1;24(6). doi: 10.1093/jisesa/ieae106.

Abstract

Many species are experiencing drastic and multidimensional changes to their environment due to anthropogenic events. These multidimensional changes may act nonadditively on physiological and life history responses, and thus may not be predicted by responses to single dimensional environmental changes. Therefore, work is needed to understand species' responses to multiple aspects of change. We used whole-transcriptomic RNA-Sequencing and life history assays to uncover responses to singly-applied shifts in resource or temperature environmental dimensions, in comparison to combined, multidimensional change, in the crop pest seed beetle, Callosobruchus maculatus. We found that multidimensional change caused larger fecundity, developmental period and offspring viability life history changes than predicted by additive effects of 1-dimensional changes. In addition, there was little overlap between genes differentially expressed under multidimensional treatment versus under altered resource or temperature conditions alone. Moreover, 115 genes exhibited significant resource × temperature interaction effects on expression, including those involved in energy metabolism, detoxification, and enhanced formation of cuticle structural components. We conclude that single dimensional changes alone cannot determine life history and transcriptomic responses to multidimensional environmental change. These results highlight the importance of studying multidimensional environmental change for understanding the molecular and phenotypic responses that may allow organisms including insects to rapidly adapt simultaneously to multiple aspects of environmental change.

摘要

由于人为活动,许多物种正在经历其环境的剧烈和多维度变化。这些多维度变化可能以非相加的方式作用于生理和生活史反应,因此可能无法通过对单维度环境变化的反应来预测。因此,需要开展工作来了解物种对变化多个方面的反应。我们使用全转录组RNA测序和生活史分析,以揭示在作物害虫黄斑豆象(Callosobruchus maculatus)中,与单一应用资源或温度环境维度的变化以及多维度变化组合相比,对单一应用变化的反应。我们发现,多维度变化导致的繁殖力、发育时期和后代活力等生活史变化,比一维变化的相加效应所预测的要大。此外,在多维度处理下与仅在资源或温度条件改变下差异表达的基因之间几乎没有重叠。而且,115个基因在表达上表现出显著的资源×温度相互作用效应,包括那些参与能量代谢、解毒以及角质层结构成分形成增强的基因。我们得出结论,仅一维变化不能决定生活史和转录组对多维度环境变化的反应。这些结果凸显了研究多维度环境变化对于理解分子和表型反应的重要性,这些反应可能使包括昆虫在内的生物体能够迅速同时适应环境变化的多个方面。

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