除氧
转录组
生物
海底地带
海洋酸化
糖酵解
底栖鱼
生态学
细胞生物学
远洋带
基因表达
基因
生物化学
气候变化
新陈代谢
垂钓
催化作用
作者
Akira Iguchi,Masahiro Hayashi,Makiko Yorifuji,Miyuki Nishijima,Kodai Gibu,Taiga Kunishima,Tomoko Bell,Atsushi Suzuki,Tsuneo Ono
标识
DOI:10.1016/j.scitotenv.2023.169484
摘要
Ocean acidification and deoxygenation co-occur in marine environments, causing deterioration of marine ecosystems. However, effects of compound stresses on marine organisms and their physiological coping mechanisms are largely unknown. Here, we show how high pCO2 and low dissolved oxygen (DO) cause transcriptomic changes in eggs of a demersal fish (Sillago japonica), which are fully exposed to such stresses in natural environment. Overall gene expression was affected more strongly by low DO than by high pCO2. Enrichment analysis detected significant stress responses such as glycolytic processes in response to low DO. Increased expression of a group of glycolytic genes under low DO conditions is presumably because oxygen depletion disables the electron transfer pathway, complementing ATP production in the glycolytic pathway. Contrary to expectations, apparent mitigation of gene expression changes was dominant under combined stress conditions, and may represent an innate fish adaptive trait for severe environments.
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