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转录组和生活史对蜉蝣 Neocloeon triangulifer 慢性昼夜热挑战的响应。

Transcriptomic and life history responses of the mayfly Neocloeon triangulifer to chronic diel thermal challenge.

机构信息

Graduate Toxicology Program, Department of Biological Sciences, North Carolina State University, 850 Main Campus Drive, Rm1112, Raleigh, NC, 27695, USA.

Center of Human Health and the Environment, North Carolina State University, Raleigh, NC, 27695, USA.

出版信息

Sci Rep. 2020 Nov 5;10(1):19119. doi: 10.1038/s41598-020-75064-y.

Abstract

To better understand the effects of transient thermal stress in an aquatic insect, we first identified static temperatures associated with fitness deficits, and then reared larvae from egg hatch to adulthood under diurnally variable regimens including daily forays into deleterious temperatures. We sampled mature larvae at the coolest and warmest portions of their respective regimens for RNA-seq analysis. Few transcripts (28) were differentially expressed when larvae oscillated between favorable temperatures, while 614 transcripts were differentially expressed when experiencing daily transient thermal stress. Transcripts associated with N-glycan processing were downregulated while those associated with lipid catabolism and chitin turnover were significantly upregulated in heat stressed larvae. An across-regimen comparison of differentially expressed transcripts among organisms sampled at comparable temperatures demonstrated that the effects of daily thermal stress persisted even when larvae were sampled at a more optimal temperature (806 differentially expressed transcripts). The chronically stressed population had reduced expression of transcripts related to ATP synthesis, mitochondrial electron chain functions, gluconeogenesis and glycolytic processes while transcripts associated with cell adhesion, synaptic vesicle transport, regulation of membrane potential and lipid biosynthesis increased. Comparisons of constant vs. variable temperatures revealed that the negative consequences of time spent at stressful temperatures were not offset by more time spent at optimal temperatures.

摘要

为了更好地理解水生昆虫瞬态热应激的影响,我们首先确定了与适应力下降相关的静态温度,然后让幼虫从卵孵化到成年在包括每日进入有害温度的昼夜变化方案下生长。我们在各自方案的最凉爽和最温暖部分采集成熟幼虫进行 RNA-seq 分析。当幼虫在有利温度之间波动时,很少有转录本(28 个)表现出差异表达,而当经历每日瞬态热应激时,有 614 个转录本表现出差异表达。在受热胁迫的幼虫中,与 N-聚糖加工相关的转录本下调,而与脂质分解代谢和几丁质周转相关的转录本显著上调。在比较以类似温度采样的生物体之间差异表达转录本的方案间比较中,即使幼虫在更理想的温度(806 个差异表达转录本)下采样,每日热应激的影响也持续存在。慢性应激种群中与 ATP 合成、线粒体电子链功能、糖异生和糖酵解过程相关的转录本表达减少,而与细胞黏附、突触小泡运输、膜电位调节和脂质生物合成相关的转录本表达增加。恒温和变温的比较表明,在应激温度下花费的时间的负面后果不能通过在最佳温度下花费更多时间来抵消。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43aa/7644658/c8fb35d8f8aa/41598_2020_75064_Fig1_HTML.jpg

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