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南极关键物种对因快速气候变化导致的沉降的分子响应。

Molecular responses of a key Antarctic species to sedimentation due to rapid climate change.

机构信息

Instituto de Diversidad y Ecología Animal (IDEA) CONICET, Córdoba, Argentina; Universidad Nacional de Córdoba, Facultad de Ciencias Exactas Físicas y Naturales, Departamento de Diversidad Biológica y Ecología, Ecología Marina, Córdoba, Argentina.

Department of Environmental Science, Stockholm University, Stockholm, Sweden.

出版信息

Mar Environ Res. 2022 Sep;180:105720. doi: 10.1016/j.marenvres.2022.105720. Epub 2022 Aug 10.

Abstract

Rapid regional warming causing glacial retreat and melting of ice caps in Antarctica leads benthic filter-feeders to be exposed to periods of food shortage and high respiratory impairment as a consequence of seasonal sediment discharge in the West Antarctic Peninsula coastal areas. The molecular physiological response and its fine-tuning allow species to survive acute environmental stress and are thus a prerequisite to longer-term adaptation to changing environments. Under experimental conditions, we analyzed here the metabolic response to changes in suspended sediment concentrations, through transcriptome sequencing and enzymatic measurements in a highly abundant Antarctic ascidian. We found that the mechanisms underlying short-term response to sedimentation in Cnemidocarpa verrucosa sp. A involved apoptosis, immune defense, and general metabolic depression. These mechanisms may be understood as an adaptive protection against sedimentation caused by glacial retreat. This process can strongly contribute to the structuring of future benthic filter-feeder communities in the face of climate change.

摘要

快速的区域变暖导致南极洲的冰川消退和冰盖融化,使得底栖滤食性动物在南极半岛沿海地区季节性泥沙排放期间,面临食物短缺和呼吸损伤加剧的时期。分子生理反应及其精细调节使物种能够在急性环境压力下生存,因此是适应不断变化的环境的长期前提。在实验条件下,我们在这里通过高通量测序和酶测量分析了高度丰富的南极尾索动物在悬浮泥沙浓度变化下的代谢反应。我们发现,Cnemidocarpa verrucosa sp. A 对沉降的短期反应的机制涉及细胞凋亡、免疫防御和一般代谢抑制。这些机制可以被理解为对冰川退缩引起的沉降的适应性保护。在气候变化面前,这个过程可以极大地影响未来底栖滤食性动物群落的结构。

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