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热应激和捕食风险引发潮间带蜗牛荔枝螺不同的转录组反应。

Thermal stress and predation risk trigger distinct transcriptomic responses in the intertidal snail Nucella lapillus.

作者信息

Chu Nathaniel D, Miller Luke P, Kaluziak Stefan T, Trussell Geoffrey C, Vollmer Steven V

机构信息

Marine Science Center, Northeastern University, Nahant, MA, 01908, USA.

出版信息

Mol Ecol. 2014 Dec;23(24):6104-13. doi: 10.1111/mec.12994. Epub 2014 Nov 21.

Abstract

Thermal stress and predation risk have profound effects on rocky shore organisms, triggering changes in their feeding behaviour, morphology and metabolism. Studies of thermal stress have shown that underpinning such changes in several intertidal species are specific shifts in gene and protein expression (e.g. upregulation of heat-shock proteins). But relatively few studies have examined genetic responses to predation risk. Here, we use next-generation RNA sequencing (RNA-seq) to examine the transcriptomic (mRNA) response of the snail Nucella lapillus to thermal stress and predation risk. We found that like other intertidal species, N. lapillus displays a pronounced genetic response to thermal stress by upregulating many heat-shock proteins and other molecular chaperones. In contrast, the presence of a crab predator (Carcinus maenas) triggered few significant changes in gene expression in our experiment, and this response showed no significant overlap with the snail's response to thermal stress. These different gene expression profiles suggest that thermal stress and predation risk could pose distinct and potentially additive challenges for N. lapillus and that genetic responses to biotic stresses such as predation risk might be more complex and less uniform across species than genetic responses to abiotic stresses such as thermal stress.

摘要

热应激和捕食风险对岩岸生物有着深远影响,引发它们在摄食行为、形态和新陈代谢方面的变化。热应激研究表明,几种潮间带物种的此类变化背后是基因和蛋白质表达的特定转变(例如热休克蛋白的上调)。但相对较少的研究考察了对捕食风险的遗传反应。在此,我们使用新一代RNA测序(RNA-seq)来研究滨螺对热应激和捕食风险的转录组(mRNA)反应。我们发现,与其他潮间带物种一样,滨螺通过上调许多热休克蛋白和其他分子伴侣对热应激表现出明显的遗传反应。相比之下,在我们的实验中,蟹类捕食者(平背蜞)的存在引发的基因表达变化很少,并且这种反应与滨螺对热应激的反应没有显著重叠。这些不同的基因表达谱表明,热应激和捕食风险可能给滨螺带来不同且可能叠加的挑战,而且与对热应激等非生物胁迫的遗传反应相比,对捕食风险等生物胁迫的遗传反应在物种间可能更复杂且更不一致。

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