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首页> 外文期刊>Science of the total environment >Response of gut microbiota and immune function to hypoosmotic stress in the yellowfin seabream (Acanthopagrus latus)
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Response of gut microbiota and immune function to hypoosmotic stress in the yellowfin seabream (Acanthopagrus latus)

机译:肠道微生物症和免疫功能在黄鳍鲷(Acanthopagrus Latus)中对低管胁迫的影响

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摘要

Osmotic stress is associated with heightened immune functions and altered microbiota in the fish intestine. In this study, we explored the effects of hypoosmotic stress on the intestine of euryhaline yellowfin seabream (Acanthopagrus latus) after acute exposure to brackish water, low-saline water, and freshwater environments. The results showed that hypoosmotic stress reshaped the composition of the microbial community and altered the gene expression in the intestine. Probiotics Lactobacillus and Pseudomonas showed higher relative abundance in a brackish water environment, whereas pathogenic bacteria, including Vibrio and Aeromonas, were more abundant in the freshwater environment. At the transcriptional level, osmoregulation-related genes were identified as up/down regulated differentially expressed genes (DEGs) as well as a series of immune-related DEGs associated with pathogen recognition, antimicrobial ability, pro-inflammatory cytokines, cell apoptosis, and antioxidant defense. Physiological analysis showed that Na~+ K~+-ATPase activity was significantly inhibited by hypoosmotic stress in freshwater. Meanwhile, the intestinal antioxidant defense system of yellowfin seabream was challenged. Correlation network analysis demonstrated the close interactions among intestinal microbes, differentially expressed genes, and physiological parameters. This study provides the critical insights into the function of the intestine fish encountering hypoosmotic stress.
机译:渗透应激与在鱼肠中的免疫功能和微生物瘤改变相关。在这项研究中,我们探讨了急性暴露于咸水,盐水和淡水环境后肠道黄粉河流(Acanthopagrus Latus)肠道肠道肠道肠道的影响。结果表明,低血压应力重塑了微生物群落的组成,改变了肠道中的基因表达。益生菌乳酸杆菌和假单胞菌在咸水环境中表现出更高的相对丰度,而淡水环境中的致病细菌在包括弧菌和航空孢子中更丰富。在转录水平上,鉴定Osmoregulation相关基因作为上/下调差异表达基因(DEGS)以及一系列与病原体识别,抗微生物能力,促炎细胞因子,细胞凋亡和抗氧化剂相关的一系列免疫相关的DEG。防御。生理分析表明,淡水中低管应激显着抑制Na + k〜+ + -AtPase活性。同时,黄粉河河滨的肠抗氧化防御系统受到挑战。相关网络分析证明肠道微生物,差异表达基因和生理参数的密切相互作用。本研究提供了遇到遇到低渗压力的肠鱼功能的关键见解。

著录项

  • 来源
    《Science of the total environment》 |2020年第25期|140976.1-140976.12|共12页
  • 作者单位

    School of Marine Sciences Sun Yat-sen University Zhuhai 519082 China;

    School of Marine Sciences Sun Yat-sen University Zhuhai 519082 China;

    School of Marine Sciences Sun Yat-sen University Zhuhai 519082 China;

    School of Marine Sciences Sun Yat-sen University Zhuhai 519082 China;

    School of Marine Sciences Sun Yat-sen University Zhuhai 519082 China;

    School of Marine Sciences Sun Yat-sen University Zhuhai 519082 China;

    School of Marine Sciences Sun Yat-sen University Zhuhai 519082 China;

    School of Marine Sciences Sun Yat-sen University Zhuhai 519082 China Southern Marine Science and Engineering Guangdong Laboratory (Zhuhai) Zhuhai 519080 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hypoosmotic stress; Osmoregulation; Immune responses; Intestinal microbiota; Gene expression; Yellowfin seabream;

    机译:低渗压力;OsmoreGulation;免疫反应;肠道微生物群;基因表达;yellowfin海鲷;

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