4.6 Article

Lactic acid bacteria that activate immune gene expression in Caenorhabditis elegans can antagonise Campylobacter jejuni infection in nematodes, chickens and mice

期刊

BMC MICROBIOLOGY
卷 21, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s12866-021-02226-x

关键词

Lactic acid bacteria; Campylobacter jejuni; Caenorhabditis elegans; Life-span; Immune gene

资金

  1. National Natural Science Foundation of China [31671839, 31972052, 31820103010, 31601444, 31301407]
  2. Fundamental Research Funds for the Central Universities [JUSRP22006, JUSRP51501]
  3. national first-class discipline program of Food Science and Technology [JUFSTR20180102]
  4. Program of Collaborative Innovation Centre of Food Safety and Quality Control in Jiangsu Province
  5. Hunan Provincial Natural Science Foundation of China [2019JJ50014]

向作者/读者索取更多资源

This study established a lifespan model of C. elegans to counter C. jejuni infection, revealing different abilities of LAB in protecting C. elegans against infection and identifying potential protective mechanisms of certain LAB strains. The reliability of the C. elegans lifespan model was verified using mice and chickens infected with C. jejuni.
BackgroundCampylobacter jejuni is the major micro-bacillary pathogen responsible for human coloenteritis. Lactic acid bacteria (LAB) have been shown to protect against Campylobacter infection. However, LAB with a good ability to inhibit the growth of C. jejuni in vitro are less effective in animals and animal models, and have the disadvantages of high cost, a long cycle, cumbersome operation and insignificant immune response indicators. Caenorhabditis elegans is increasingly used to screen probiotics for their anti-pathogenic properties. However, no research on the use of C. elegans to screen for probiotic candidates antagonistic to C. jejuni has been conducted to date.ResultsThis study established a lifespan model of C. elegans, enabling the preselection of LAB to counter C. jejuni infection. A potential protective mechanism of LAB was identified. Some distinct LAB species offered a high level of protection to C. elegans against C. jejuni. The LAB strains with a high protection rate reduced the load of C. jejuni in C. elegans. The transcription of antibacterial peptide genes, MAPK and Daf-16 signalling pathway-related genes was elevated using the LAB isolates with a high protection rate. The reliability of the lifespan model of C. elegans was verified using mice and chickens infected with C. jejuni.ConclusionsThe results showed that different LAB had different abilities to protect C. elegans against C. jejuni. C. elegans provides a reliable model for researchers to screen for LAB that are antagonistic to C. jejuni on a large scale.

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