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Exploration of immune response mechanisms in cadmium and copper co-exposed juvenile golden cuttlefish (Sepia esculenta) based on transcriptome profiling

Frontiers in Immunology 2022 22 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 50 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Xipan Chen, Weijun Wang, Xiumei Liu, Weijun Wang, Weijun Wang, Xiaokai Bao, Xiumei Liu, Xiaokai Bao, Xipan Chen, Xiumei Liu, Xiumei Liu, Xiaokai Bao, Weijun Wang, Weijun Wang, Weijun Wang, Jianmin Yang, Jianmin Yang, Xiaokai Bao, Zan Li, Zan Li, Xiaokai Bao, Xiaokai Bao, Jianmin Yang Weijun Wang, Xipan Chen, Zan Li, Weijun Wang, Weijun Wang, Xipan Chen, Xiaokai Bao, Xiaokai Bao, Guohua Sun, Xiaokai Bao, Xiaokai Bao, Yanwei Feng, Jianmin Yang Jianmin Yang Jianmin Yang, Jianmin Yang, Yanwei Feng, Xiaohui Xu, Zan Li, Jianmin Yang Xiumei Liu, Jianmin Yang, Guohua Sun, Zan Li, Zan Li, Xiaohui Xu, Bin Li, Xiumei Liu, Zan Li, Jianmin Yang Zan Li, Jianmin Yang, Jianmin Yang, Zan Li, Jianmin Yang

Summary

Researchers used transcriptome analysis to explore immune responses in juvenile golden cuttlefish co-exposed to cadmium and copper, identifying 15 key immune-regulating genes and evidence of inflammatory and innate immune activation.

Body Systems
Study Type Environmental

<i>Sepia esculenta</i> is a popular economic cephalopod with high yield, delicious meat, and rich nutrition. With the rapid development of heavy industry and medical industry, a large amount of waste has been released into the ocean recklessly in recent years, inducing a significant increase in the content of heavy metals, especially cadmium (Cd) and copper (Cu), in the ocean. This phenomenon significantly affects the growth and development of <i>S. esculenta</i>, causing a serious blow to its artificial breeding. In this study, transcriptome analysis is used to initially explore immune response mechanisms of Cd and Cu co-exposed juvenile <i>S. esculenta</i>. The results show that 1,088 differentially expressed genes (DEGs) are identified. And DEGs functional enrichment analysis results suggests that co-exposure may promote inflammatory and innate immune responses in juvenile <i>S. esculenta</i>. Fifteen key genes that might regulate the immunity of <i>S. esculenta</i> are identified using protein-protein interaction (PPI) network and KEGG enrichment analyses, of which the three genes with the highest number of interactions or involve in more KEGG pathways are identified as hub genes that might significantly affect the immune response processes. Comprehensive analysis of PPI network and KEGG signaling pathway is used for the first time to explore co-exposed <i>S. esculenta</i> juvenile immune response processes. Our results preliminarily reveal immune response mechanisms of cephalopods exposed to heavy metals and provide a valuable resource for further understanding of mollusk immunity.

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