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太平洋潜泥蛤幼贝对慢性和急性热暴露的转录组和代谢反应。

Transcriptomic and metabolic response to chronic and acute thermal exposure of juvenile geoduck clams Panopea globosa.

作者信息

Juárez Oscar E, Lafarga-De la Cruz Fabiola, Leyva-Valencia Ignacio, López-Landavery Edgar, García-Esquivel Zaúl, Díaz Fernando, Re-Araujo Denisse, Vadopalas Brent, Galindo-Sánchez Clara E

机构信息

Departamento de Biotecnología Marina, Centro de Investigación Científica y de Educación Superior de Ensenada, B. C. Carretera Tijuana-Ensenada 3918, Fraccionamiento Zona Playitas, 22860 Ensenada, Baja California, Mexico.

Departamento de Acuicultura, Centro de Investigación Científica y de Educación Superior de Ensenada, B. C. Carretera Tijuana-Ensenada 3918, Fraccionamiento Zona Playitas, 22860 Ensenada, Baja California, Mexico.

出版信息

Mar Genomics. 2018 Dec;42:1-13. doi: 10.1016/j.margen.2018.09.003. Epub 2018 Oct 4.

DOI:10.1016/j.margen.2018.09.003
PMID:30293673
Abstract

The Cortes geoduck Panopea globosa is a large bivalve with a high commercial value distributed from the southern Pacific coast of the Baja California Peninsula to the northern Gulf of California, inhabiting a wide range of subtropical temperatures. A new record of this species in shallower waters suggests that it can tolerate a warmer environment than previously thought. To better understand the whole-body and molecular response mechanisms to different temperatures, we assessed the metabolic rate of juvenile individuals exposed to chronic and acute thermal conditions and analyzed the transcriptomic response in ctenidial tissues. Whole-body metabolic rate measurements showed that juveniles were able to acclimate at least partially within three weeks from 20 °C (C20) to 29 °C (C29), while organisms acutely exposed to 29 °C (A29) significantly increased their metabolic rate. This was coincident with transcriptomic results, as similar gene expression patterns were found in clams chronically exposed to C29 and C20, but different from those acutely exposed to 29 °C (A29) and 31 °C (A31). High degree of expression of genes involved in DNA repair and transcription regulation were found in C29 juveniles, whereas protective genes against oxidative stress were highly expressed in A29 organisms. A high expression of genes involved in protein re-folding was also observed in A31 juveniles. In conclusion, the combined results of whole-body metabolism and transcriptomic expression patterns suggest that P. globosa juveniles have a high physiological plasticity and are well adapted to inhabit an environment with broad temperature fluctuations.

摘要

科尔特斯女神蛤(Panopea globosa)是一种大型双壳贝类,具有很高的商业价值,分布于下加利福尼亚半岛的南太平洋海岸至加利福尼亚湾北部,栖息于广泛的亚热带温度范围。该物种在较浅水域的新记录表明,它能耐受比之前认为的更温暖的环境。为了更好地了解其对不同温度的全身和分子反应机制,我们评估了暴露于慢性和急性热条件下的幼体的代谢率,并分析了鳃组织中的转录组反应。全身代谢率测量结果显示,幼体能够在三周内至少部分适应从20℃(C20)到29℃(C29)的温度变化,而急性暴露于29℃(A29)的个体代谢率显著增加。这与转录组结果一致,因为长期暴露于C29和C20的蛤类中发现了相似的基因表达模式,但与急性暴露于29℃(A29)和31℃(A31)的个体不同。在C29幼体中发现参与DNA修复和转录调控的基因高度表达,而在A29个体中抗氧化应激的保护基因高度表达。在A31幼体中也观察到参与蛋白质重折叠的基因高表达。总之,全身代谢和转录组表达模式的综合结果表明,女神蛤幼体具有很高的生理可塑性,能够很好地适应温度波动较大的环境。

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