Resistance role of Lactobacillus sp. and Lactococcus sp. to copper ions in healthy children’s intestinal microorganisms

微生物学 乳酸菌 戒毒(替代医学) 乳球菌 毒性 细菌 微生物群 化学 肠道菌群 乳酸乳球菌 生物 食品科学 生物化学 乳酸 医学 遗传学 替代医学 有机化学 病理
作者
Lili Zhao,Xinlei li,Yibin Wang,Qingxiang Yang,Xiaobing Jiang,Ruixiang Zhao,Hong Chen,Yiping Zhang,Junjian Ran,Wanrong Chen,Zihan Wei,Hailei Wang
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:469: 134059-134059 被引量:3
标识
DOI:10.1016/j.jhazmat.2024.134059
摘要

Heavy metal exposure is closely associated with gut microbe function and tolerance. However, intestinal microbe responses in children to different copper ion (Cu2+) concentrations have not yet been clarified. Here, in vitro cultivation systems were established for fecal microbe control and Cu2+-treated groups in healthy children. 16S rDNA high-throughput sequencing, meta-transcriptomics and metabolomics were used here to identify toxicity resistance mechanisms at microbiome levels. The results showed that Lactobacillus sp. and Lactococcus sp. exerted protective effects against Cu2+ toxicity, but these effects were limited by Cu2+ concentration. When the Cu2+ concentration was ≥ 4 mg/L, the abundance of Lactobacillus sp. and Lactococcus sp. significantly decreased, and the pathways of antioxidant activity and detoxification processes were enriched at 2 mg/L Cu2+, and beneficial metabolites accumulated. However, at high concentrations of Cu2+ (≥4 mg/L), the abundance of potential pathogen increased, and was accompanied by a downregulation of genes in metabolism and detoxification pathways, which meant that the balance of gut microbiota was disrupted and toxicity resistance decreased. From these observations, we identified some probiotics that are tolerant to heavy metal Cu2+, and warn that only when the concentration limit of Cu2+ in food is 2 mg/L, then a balanced gut microbiota can be guaranteed in children, thereby providing protection for their health.
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