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Transcriptomic profiling of the thermal tolerance in two subspecies of the bay scallop Argopecten irradians

扇贝 亚种 阿戈皮特恩辐射体 生物 转录组 海湾 人口 氧化应激 动物 遗传学 基因 生态学 基因表达 生物化学 医学 环境卫生 工程类 土木工程
作者
Kai Yu,Xinyu Song,J. Zhang,Rongjie Chen,Guilong Liu,Xin Xu,Xia Lu,Jing Ning,Bo Liu,Xiaolin Zhang,Fukai Wang,Yinchu Wang,Chunde Wang
出处
期刊:Comparative Biochemistry and Physiology Part D: Genomics and Proteomics [Elsevier BV]
卷期号:: 101246-101246
标识
DOI:10.1016/j.cbd.2024.101246
摘要

The bay scallop is a eurythermal species with high economic value and now represents the most cultured bivalve species in China. Two subspecies of the bay scallop, the northern subspecies Argopecten irradians irradians Korean population (KK) and the southern subspecies Argopecten irradians concentricus (MM), exhibited distinct adaptations to heat stress. However, the molecular mechanism of heat resistance of the two subspecies remains unclear. In this study, we compared the transcriptomic responses of the two subspecies to heat stress and identified the involved differentially expressed genes (DEGs) and pathways. More DEGs were found in the KK than in the MM when exposed to high temperatures, indicating elevated sensitivity to thermal stress in the KK. Enrichment analysis suggests that KK scallops may respond to heat stress more swiftly by regulating GTPase activity. Meanwhile, MM scallops exhibited higher resistance to heat stress mainly by effective activation of their antioxidant system. Chaperone proteins may play different roles in responses to heat stress in the two subspecies. In both subspecies, the expression levels of antioxidants such as GST were significantly increased; the glycolysis process regulated by PC and PCK1 was greatly intensified; and both apoptotic and anti-apoptotic systems were significantly activated. The pathways related to protein translation and hydrolysis, oxidoreductase activity, organic acid metabolism, and cell apoptosis may also play pivotal roles in the responses to heat stress. The results of this study may provide a theoretical basis for marker-assisted breeding of heat-resistant strains.

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