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      Hemocytes transcriptomes reveal metabolism changes and detoxification mechanisms in response to ammonia stress in Octopus minor.

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          Abstract

          Ammonia is one of the major aquatic environmental pollutants that can bring detrimental effects to the growth and survival of aquatic organisms. However, the molecular mechanisms of ammonia toxicity and ammonia excretion in marine invertebrates especially mollusks are still poorly understood. Cephalopods are exclusively ammonotelic with high protein metabolism and ammonia excretion rate, making this taxonomic group an ideal specimen to explore the ammonia detoxification mechanism. In this study, comparative transcriptomes were employed to investigate the transcriptional changes of O. minor in responses to acute ammonia exposure. A total of 63,237 unigenes with an average length of 811 bp were discovered and 25,708 unigenes were successfully annotated. The transcription of 1845 genes were significantly changed after ammonia stress, including 315 up-regulated genes and 1530 down-regulated genes. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) enrichment analysis based on differentially expressed genes (DEGs) revealed that 44 GO terms and 55 KEGG pathways were over-represented. Notably, a large number of genes involved in immune defense, citric acid (TCA) cycle, oxidative phosphorylation and amino acid metabolisms were significantly down-regulated, indicating the decelerated energy production and amino acid rate in response to acute ammonia stress. These results provide new insights into the potential molecular mechanism of ammonia detoxification on transcriptomic level and will facilitate further mechanism studies on mollusks.

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          Author and article information

          Journal
          Ecotoxicology
          Ecotoxicology (London, England)
          Springer Science and Business Media LLC
          1573-3017
          0963-9292
          Nov 2020
          : 29
          : 9
          Affiliations
          [1 ] Institute of Evolution and Marine Biodiversity, Ocean University of China, Yushan Road 5, 266003, Qingdao, China.
          [2 ] Key Laboratory of Mariculture, Ocean University of China, Yushan Road 5, 266003, Qingdao, China.
          [3 ] Institute of Evolution and Marine Biodiversity, Ocean University of China, Yushan Road 5, 266003, Qingdao, China. xdzheng@ouc.edu.cn.
          [4 ] Key Laboratory of Mariculture, Ocean University of China, Yushan Road 5, 266003, Qingdao, China. xdzheng@ouc.edu.cn.
          Article
          10.1007/s10646-020-02279-0
          10.1007/s10646-020-02279-0
          32945976
          5df6c82d-f234-4ba2-9745-2317171ae1e5
          History

          Ammonia toxicity,Immune defense,Metabolic changes,Octopus minor,Transcriptome

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