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北极昆虫温度耐受性和基因表达的时间调控

Temporal regulation of temperature tolerances and gene expression in an arctic insect.

作者信息

Noer Natasja Krog, Nielsen Kåre Lehmann, Sverrisdóttir Elsa, Kristensen Torsten Nygaard, Bahrndorff Simon

机构信息

Department of Chemistry and Bioscience, Aalborg University, Aalborg 9220, Denmark.

出版信息

J Exp Biol. 2023 Jun 1;226(11). doi: 10.1242/jeb.245097. Epub 2023 Jun 7.

Abstract

Terrestrial arthropods in the Arctic are exposed to highly variable temperatures that frequently reach cold and warm extremes. Yet, ecophysiological studies on arctic insects typically focus on the ability of species to tolerate low temperatures, whereas studies investigating physiological adaptations of species to periodically warm and variable temperatures are few. In this study, we investigated temporal changes in thermal tolerances and the transcriptome in the Greenlandic seed bug Nysius groenlandicus, collected in the field across different times and temperatures in Southern Greenland. We found that plastic changes in heat and cold tolerances occurred rapidly (within hours) and at a daily scale in the field, and that these changes are correlated with diurnal temperature variation. Using RNA sequencing, we provide molecular underpinnings of the rapid adjustments in thermal tolerance across ambient field temperatures and in the laboratory. We show that transcriptional responses are sensitive to daily temperature changes, and days characterized by high temperature variation induced markedly different expression patterns than thermally stable days. Further, genes associated with laboratory-induced heat responses, including expression of heat shock proteins and vitellogenins, were shared across laboratory and field experiments, but induced at time points associated with lower temperatures in the field. Cold stress responses were not manifested at the transcriptomic level.

摘要

北极的陆生节肢动物面临着高度多变的温度,这些温度常常会达到寒冷和温暖的极端值。然而,关于北极昆虫的生态生理学研究通常集中在物种耐受低温的能力上,而研究物种对周期性变暖和多变温度的生理适应的却很少。在这项研究中,我们调查了格陵兰岛南部不同时间和温度下在野外采集的格陵兰籽蝽(Nysius groenlandicus)的热耐受性和转录组的时间变化。我们发现,热耐受性和冷耐受性的可塑性变化在野外迅速发生(数小时内)且呈每日尺度变化,并且这些变化与昼夜温度变化相关。通过RNA测序,我们提供了在野外环境温度和实验室中热耐受性快速调整的分子基础。我们表明转录反应对每日温度变化敏感,与温度稳定的日子相比,以高温变化为特征的日子诱导出明显不同的表达模式。此外,与实验室诱导的热反应相关的基因,包括热休克蛋白和卵黄蛋白原的表达,在实验室和野外实验中是相同的,但在野外与较低温度相关的时间点被诱导。冷应激反应在转录组水平上未表现出来。

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