Effect of arsenic stress on the intestinal structural integrity and intestinal flora abundance of Cyprinus carpio

被引:32
作者
Shi, Xiaodan [1 ,2 ]
Xu, Wei [1 ]
Che, Xinghua [1 ]
Cui, Jiawen [3 ]
Shang, Xinchi [1 ]
Teng, Xiaohua [3 ]
Jia, Zhiying [1 ,2 ]
机构
[1] Chinese Acad Fishery Sci, Heilongjiang River Fisheries Res Inst, Harbin, Peoples R China
[2] Chinese Acad Fishery Sci, Heilongjiang Fisheries Res Inst, Key Lab Freshwater Aquat Biotechnol & Breeding, Minist Agr & Rural Affairs, Harbin, Peoples R China
[3] Northeast Agr Univ, Coll Anim Sci & Technol, Harbin, Peoples R China
关键词
arsenic; accumulation; intestinal microbiota; LPS; tight junction; COMMON CARP; MICROBIOTA; EXPOSURE;
D O I
10.3389/fmicb.2023.1179397
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Aquatic organisms such as fish can accumulate high concentrations of arsenic (As), which has toxic effects on fish. However, whether the intestinal flora are involved in As damage to fish intestinal tissues and the underlying process are unclear. Common carp (Cyprinus carpio) were exposed to As (2.83 mg/L) in water for 30 days, and blood, muscle, intestine, and intestine samples were collected. Intestinal pathological sections were observed, and the lipopolysaccharide (LPS) levels in serum and the levels of As accumulation and tight junction-related factors in intestinal tissues were measured. The gut microbiota was analysed by 16S rRNA sequencing. The results showed that As treatment decreased the abundance of microbiota, increased the number of harmful bacteria, and decreased the number of beneficial bacteria in the intestine. In our experiment, the top 30 harmful and beneficial bacteria with the highest relative abundance were identified. Among the top 30 harmful and beneficial bacteria, As treatment resulted in a significant (P < 0.05) increase in harmful bacteria (such as Fusobacteriota, Bacteroidota (LPS-producing bacteria), Verrucomicrobiota, Bacteroides, Aeromonas, and Stenotrophomonas) and a significant (P < 0.05) decrease in beneficial bacteria (such as Actinobacteriota, Planctomycetota, Firmicutes, Reyranella, Akkermansia, and Pseudorhodobacter), which further demonstrated that As affects the abundance of intestinal flora. In addition, As exposure increased the LPS level in serum and the abundance of Bacteroidota (LPS-producing bacteria) in the intestine. Bacteroidota exhibits the six highest relative abundance at the phylum level, which indicates that LPS produced by Bacteroidota can increase the LPS level in serum. Additionally, the protein and gene levels of the tight junction markers ZO-1 and occludin in the intestine were reduced by As treatment, which further indicated that As exposure impaired the structural integrity of the intestine. In conclusion, the results obtained in our study indicate that the intestinal flora, LPS, and tight junctions participate in the impairment of the structural integrity of the common carp intestine resulting from As exposure.
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页数:11
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共 49 条
  • [1] Actinobacteria: Current research and perspectives for bioremediation of pesticides and heavy metals
    Alvarez, Analia
    Maria Saez, Juliana
    Davila Costa, Jose Sebastian
    Leticia Colin, Veronica
    Soledad Fuentes, Maria
    Antonio Cuozzo, Sergio
    Susana Benimeli, Claudia
    Alejandra Polti, Marta
    Julia Amoroso, Maria
    [J]. CHEMOSPHERE, 2017, 166 : 41 - 62
  • [2] Interaction of junctional adhesion molecule with the tight junction components ZO-1, cingulin, and occludin
    Bazzoni, G
    Martínez-Estrada, OM
    Orsenigo, F
    Cordenonsi, M
    Citi, S
    Dejana, E
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (27) : 20520 - 20526
  • [3] Toll-like receptor 2 enhances ZO-1-associated intestinal epithelial barrier integrity via protein kinase C
    Cario, E
    Gerken, G
    Podolsky, DK
    [J]. GASTROENTEROLOGY, 2004, 127 (01) : 224 - 238
  • [4] Serum amyloid A promotes LPS clearance and suppresses LPS-induced inflammation and tissue injury
    Cheng, Ni
    Liang, Yurong
    Du, Xiaoping
    Ye, Richard D.
    [J]. EMBO REPORTS, 2018, 19 (10)
  • [5] The gut microbiome is required for full protection against acute arsenic toxicity in mouse models
    Coryell, Michael
    McAlpine, Mark
    Pinkham, Nicholas V.
    McDermott, Timothy R.
    Walk, Seth T.
    [J]. NATURE COMMUNICATIONS, 2018, 9
  • [6] Nano-selenium protects grass carp hepatocytes against 4-tert-butylphenol-induced mitochondrial apoptosis and necroptosis via suppressing ROS-PARP1 axis
    Cui, Jiawen
    Qiu, Minna
    Liu, Yuhang
    Liu, Yuhao
    Tang, You
    Teng, Xiaohua
    Li, Shu
    [J]. FISH & SHELLFISH IMMUNOLOGY, 2023, 135
  • [7] 4-tert-butylphenol triggers common carp hepatocytes ferroptosis via oxidative stress, iron overload, SLC7A11/GSH/GPX4 axis, and ATF4/ HSPA5/GPX4 axis
    Cui, Jiawen
    Zhou, Qin
    Yu, Meijin
    Liu, Yuhao
    Teng, Xiaohua
    Gu, Xianhong
    [J]. ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, 2022, 242
  • [8] Akkermansia muciniphila and improved metabolic health during a dietary intervention in obesity: relationship with gut microbiome richness and ecology
    Dao, Maria Carlota
    Everard, Amandine
    Aron-Wisnewsky, Judith
    Sokolovska, Nataliya
    Prifti, Edi
    Verger, Eric O.
    Kayser, Brandon D.
    Levenez, Florence
    Chilloux, Julien
    Hoyles, Lesley
    Dumas, Marc-Emmanuel
    Rizkalla, Salwa W.
    Dore, Joel
    Cani, Patrice D.
    Clement, Karine
    [J]. GUT, 2016, 65 (03) : 426 - 436
  • [9] Evaluation of Taraxacum mongolicum flavonoids in diets for Channa argus based on growth performance, immune responses, apoptosis and antioxidant defense system under lipopolysaccharide stress
    Du, Jia-Hua
    Xu, Meng-Yue
    Wang, Yi
    Lei, Zhao
    Yu, Zhe
    Li, Mu-Yang
    [J]. FISH & SHELLFISH IMMUNOLOGY, 2022, 131 : 1224 - 1233
  • [10] Elemental imbalance elicited by arsenic and copper exposures leads to oxidative stress and immunotoxicity in chicken gizzard, activating the protective effects of heat shock proteins
    Guo, Menghao
    Zhao, Hongjing
    Wang, Yu
    Liu, Juanjuan
    Fei, Dongxue
    Yang, Xin
    Mu, Mengyao
    Xing, Mingwei
    [J]. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH, 2019, 26 (36) : 36343 - 36353