Zhang Xueshu, Zhang Linfang, Si Yiran, Wen Xue, Wang Lingling, Song Linsheng
Liaoning Key Laboratory of Marine Animal Immunology and Disease Control, Dalian Ocean University, Dalian, China.
Southern Laboratory of Ocean Science and Engineering, Zhuhai, Guangdong, China.
Front Physiol. 2023 Oct 25;14:1280553. doi: 10.3389/fphys.2023.1280553. eCollection 2023.
Ionotropic glutamate receptors (iGluRs), pivotal in mediating excitatory neurosignals within the central nervous system, are instrumental in environmental stress responses. In this investigation, 12 iGluRs identified in the Pacific oyster are herein designated as iGluRs, and further categorized into three distinct subfamilies based on their transmembrane domains. Cross-species evolutionary analysis unveiled a high degree of conservation in the sequence and structural attributes of these iGluRs. These receptors are ubiquitously distributed across various tissues, with pronounced expression in the oyster's mantle, labial palps, and gills, underlining their integral role in the oyster's environmental sensing mechanisms. Post the D-shaped larval stage, a marked upward trend in iGluRs expression was observed, denoting their critical involvement in oyster development beyond this phase. Exposure to five metals-cadmium (Cd), copper (Cu), zinc (Zn), mercury (Hg), and lead (Pb)-elicited a significant upregulation of GRIA4 expression, indicating a robust response to metal stress. A KEGG enrichment analysis on 142 genes, exhibiting parallel expression trends with GRIA4 under metal stress, suggests that GRIA4 could augment excitatory signal transmission by activating glutamatergic and dopaminergic synapses, thereby contributing to the metal stress response in the oyster. This inquiry not only bolsters our comprehension of the iGluRs gene family in metal stress response but also paves the way for future exploration of its cardinal role in cellular signaling and environmental adaptability.
离子型谷氨酸受体(iGluRs)在介导中枢神经系统内的兴奋性神经信号方面起着关键作用,对环境应激反应至关重要。在本研究中,在太平洋牡蛎中鉴定出的12种iGluRs在此被命名为iGluRs,并根据其跨膜结构域进一步分为三个不同的亚家族。跨物种进化分析揭示了这些iGluRs在序列和结构特征上具有高度保守性。这些受体广泛分布于各种组织中,在牡蛎的外套膜、唇瓣和鳃中表达明显,突显了它们在牡蛎环境感知机制中的重要作用。在D形幼虫阶段之后,观察到iGluRs表达有明显的上升趋势,表明它们在这一阶段之后对牡蛎发育至关重要。暴露于镉(Cd)、铜(Cu)、锌(Zn)、汞(Hg)和铅(Pb)这五种金属中会引起GRIA4表达的显著上调,表明对金属应激有强烈反应。对142个基因进行的KEGG富集分析显示,这些基因在金属应激下与GRIA4呈现平行表达趋势,这表明GRIA4可能通过激活谷氨酸能和多巴胺能突触来增强兴奋性信号传递,从而促进牡蛎对金属应激的反应。这项研究不仅加深了我们对iGluRs基因家族在金属应激反应中的理解,也为未来探索其在细胞信号传导和环境适应性中的核心作用铺平了道路。