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北极微藻(甲藻门)在盐度骤变后的应激反应的基因表达分析。

Stress responses in an Arctic microalga (Pelagophyceae) following sudden salinity change revealed by gene expression analysis.

机构信息

Department of Natural Resource Sciences, McGill University, Ste. Anne-de-Bellevue, QC, Canada.

Institut de Biologie Intégrative et des Systèmes, Université Laval, Québec, QC, Canada.

出版信息

Commun Biol. 2024 Sep 4;7(1):1084. doi: 10.1038/s42003-024-06765-7.

Abstract

Marine microbes that have for eons been adapted to stable salinity regimes are confronted with sudden decreases in salinity in the Arctic Ocean. The episodic freshening is increasing due to climate change with melting multi-year sea-ice and glaciers, greater inflows from rivers, and increased precipitation. To investigate algal responses to lowered salinity, we analyzed the responses and acclimatation over 24 h in a non-model Arctic marine alga (pelagophyte CCMP2097) following transfer to realistic lower salinities. Using RNA-seq transcriptomics, here we show rapid differentially expressed genes related to stress oxidative responses, proteins involved in the photosystem and circadian clock, and those affecting lipids and inorganic ions. After 24 h the pelagophyte adjusted to the lower salinity seen in the overexpression of genes associated with freezing resistance, cold adaptation, and salt tolerance. Overall, a suite of ancient widespread pathways is recruited enabling the species to adjust to the stress of rapid salinity change.

摘要

海洋微生物经过漫长的时间已经适应了稳定的盐度环境,但现在却面临着北冰洋盐度的突然下降。由于气候变化,多年海冰和冰川融化、河流流入量增加以及降水增加,这种间歇性的淡水化现象正在加剧。为了研究藻类对低盐度的反应,我们在将非模式北极海洋藻类(浮游植物 CCMP2097)转移到实际低盐度后,分析了它们在 24 小时内的反应和适应情况。使用 RNA-seq 转录组学,我们在这里展示了与应激氧化反应、参与光合作用和生物钟的蛋白质以及影响脂质和无机离子的相关的快速差异表达基因。24 小时后,浮游植物适应了在过表达与抗冻性、冷适应和耐盐性相关的基因时出现的低盐度。总的来说,一系列古老而广泛的途径被招募,使该物种能够适应快速盐度变化的压力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99fc/11375080/f9da15051a3c/42003_2024_6765_Fig1_HTML.jpg

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