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高温加剧了缺氧对中华绒螯蟹幼蟹肠道的毒性作用。

High temperature aggravated hypoxia-induced intestine toxicity on juvenile Chinese mitten crab (Eriocheir sinensis).

作者信息

Deng Dunqian, Hu Shengyu, Lin Ziqi, Geng Jiayin, Qian Ziang, Zhang Kai, Ning Xianhui, Cheng Yongxu, Zhang Cong, Yin Shaowu

机构信息

College of Marine Science and Engineering, Nanjing Normal University, Jiangsu Province Engineering Research Center for Aquatic Animals Breeding and Green Efficient Aquacultural Technology, Nanjing 210023, China.

Key Laboratory of Integrated Rice-Fish Farming Ecosystem, Ministry of Agriculture and Rural Affairs, Shanghai Ocean University, Shanghai 201306, China.

出版信息

Comp Biochem Physiol Part D Genomics Proteomics. 2024 Dec;52:101288. doi: 10.1016/j.cbd.2024.101288. Epub 2024 Jul 9.

Abstract

High temperature and hypoxia in water due to global warming threaten the growth and development of aquatic animals. In natural or cultured environments, stress usually does not occur independently, whereas the synergistic effect of high temperature and hypoxia on Chinese mitten crab (Eriocheir sinensis) are rarely reported. In this study, 450 juvenile crabs were equally divided into control group (24 °C ± 0.5 °C, DO 6.8 ± 0.1 mg/L), hypoxia stress group (24 °C ± 0.5 °C, DO 1 ± 0.1 mg/L) and combined stress group (30 °C ± 0.5 °C, DO 1 ± 0.1 mg/L), and the intestinal health status, microbial diversity and metabolite profiles were evaluated for 24 h treatment. The results showed that hypoxia stress induced the expression level of pro-inflammatory related genes were significantly up-regulated in intestine of juvenile E. sinensis, and intestinal peritrophic membrane factor related genes were significantly down-regulated. High temperature further amplified the effects of hypoxia on pro-inflammatory and peritrophic membrane factor-related genes. Interesting, hypoxia stress induced a significant up-regulated of intestinal antioxidant-related genes, whereas high temperature reversed this trend. In addition, single stress or/and combined stress led to changes in intestinal microbiota diversity and abundance, and intestinal metabolite profiles. Compared with hypoxia stress, the synergistic effect of high temperature and hypoxia led to an increase in the abundance of pathogenic bacteria and a decrease in the abundance of probiotic bacteria. Moreover, intestinal metabolic pathways were significantly changed, especially amino acid metabolism and glycerophospholipid metabolism. Therefore, the results indicated that hypoxia stress could induce intestinal inflammatory response and oxidative stress, and lead to abnormal changes in intestinal microbiota and metabolic profiles, whereas high temperature further aggravate the toxic effects of hypoxia on the intestine. This study preliminarily revealed the synergistic toxic effects of high temperature and hypoxia on the intestine of juvenile E. sinensis.

摘要

全球变暖导致水体高温和低氧,威胁着水生动物的生长和发育。在自然或养殖环境中,应激通常不会单独发生,而高温和低氧对中华绒螯蟹的协同作用鲜有报道。本研究将450只幼蟹平均分为对照组(24℃±0.5℃,溶解氧6.8±0.1mg/L)、低氧应激组(24℃±0.5℃,溶解氧1±0.1mg/L)和复合应激组(30℃±0.5℃,溶解氧1±0.1mg/L),处理24小时后评估肠道健康状况、微生物多样性和代谢物谱。结果表明,低氧应激诱导中华绒螯蟹幼蟹肠道中促炎相关基因的表达水平显著上调,而肠道围食膜因子相关基因显著下调。高温进一步放大了低氧对促炎和围食膜因子相关基因的影响。有趣的是,低氧应激诱导肠道抗氧化相关基因显著上调,而高温则逆转了这一趋势。此外,单一应激或/和复合应激导致肠道微生物群多样性和丰度以及肠道代谢物谱发生变化。与低氧应激相比,高温和低氧的协同作用导致病原菌丰度增加,益生菌丰度降低。此外,肠道代谢途径发生显著变化,尤其是氨基酸代谢和甘油磷脂代谢。因此,结果表明低氧应激可诱导肠道炎症反应和氧化应激,并导致肠道微生物群和代谢谱异常变化,而高温进一步加剧低氧对肠道的毒性作用。本研究初步揭示了高温和低氧对中华绒螯蟹幼蟹肠道的协同毒性作用。

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