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盐霉素和乙胺嘧啶对三种微生物群落的影响。 (原文结尾“and.”表述不完整,推测可能是这样的翻译,你可检查下原文是否准确)

Effects of salinomycin and ethanamizuril on the three microbial communities and .

作者信息

Cheng Xiaolei, Zheng Haihong, Wang Chunmei, Wang Xiaoyang, Fei Chenzhong, Zhou Wen, Zhang Keyu

机构信息

Key Laboratory of Veterinary Chemical Drugs and Pharmaceutics, Ministry of Agriculture and Rural Affairs, Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Shanghai, China.

出版信息

Front Microbiol. 2022 Aug 12;13:941259. doi: 10.3389/fmicb.2022.941259. eCollection 2022.

Abstract

The fate of a drug is not only the process of drug metabolism and but also the homeostasis of drug-exposed microbial communities may be disturbed. Anticoccidial drugs are widely used to combat the detrimental effects of protozoan parasites in the poultry industry. Salinomycin and ethanamizuril belong to two different classes of anticoccidial drugs. The effect of salinomycin and ethanamizuril on the microbiota of cecal content, manure compost, and soil remains unknown. Our results showed that although both salinomycin and ethanamizuril treatments suppressed some opportunistic pathogens, they failed to repair the great changes in chicken cecal microbial compositions caused by coccidia infection. Subsequently, the metabolite5 profiling of cecal content by LC-MS/MS analyses confirmed the great impact of coccidia infection on chicken cecum and showed that histidine metabolism may be the main action pathway of salinomycin, and aminoacyl tRNA biosynthesis may be the major regulatory mechanism of ethanamizuril. The microbial community of manure compost showed a mild response to ethanamizuril treatment, but ethanamizuril in soil could promote reproduction, which may inhibit other taxonomic bacteria. When the soil and manure were exposed to salinomycin, the abundance of microbial communities showed a significant increase, which suggested that salinomycin may improve the ability of the microbiota to utilize carbon sources. This hypothesis was confirmed by a BIOLOG ECO microplate analysis. In the animal model of coccidia infection, the treatment of salinomycin and ethanamizuril may reconstruct a new equilibrium of the intestinal microbiota. In an environment, the effect of ethanamizuril on composting and soil microbiota seems to be slight. However, salinomycin has a great impact on the microbial communities of manure composting and soil. In particular, the promoting effect of salinomycin on phylum should be further concerned. In general, salinomycin and ethanamizuril have diverse effects on various microbial communities.

摘要

药物的命运不仅在于药物代谢过程,而且暴露于药物的微生物群落的稳态也可能受到干扰。抗球虫药物广泛用于对抗家禽业中原生动物寄生虫的有害影响。盐霉素和乙胺嘧啶属于两类不同的抗球虫药物。盐霉素和乙胺嘧啶对盲肠内容物、粪肥堆肥和土壤微生物群的影响尚不清楚。我们的结果表明,虽然盐霉素和乙胺嘧啶处理都抑制了一些机会性病原体,但它们未能修复由球虫感染引起的鸡盲肠微生物组成的巨大变化。随后,通过LC-MS/MS分析对盲肠内容物进行代谢物谱分析,证实了球虫感染对鸡盲肠有重大影响,并表明组氨酸代谢可能是盐霉素的主要作用途径,氨酰基tRNA生物合成可能是乙胺嘧啶的主要调节机制。粪肥堆肥的微生物群落对乙胺嘧啶处理表现出轻微反应,但土壤中的乙胺嘧啶可促进繁殖,这可能会抑制其他分类细菌。当土壤和粪肥暴露于盐霉素时,微生物群落的丰度显著增加,这表明盐霉素可能提高微生物群利用碳源的能力。这一假设通过BIOLOG ECO微孔板分析得到了证实。在球虫感染的动物模型中,盐霉素和乙胺嘧啶的处理可能会重建肠道微生物群的新平衡。在环境中,乙胺嘧啶对堆肥和土壤微生物群的影响似乎很小。然而,盐霉素对粪肥堆肥和土壤的微生物群落有很大影响。特别是,盐霉素对门的促进作用应进一步关注。总的来说,盐霉素和乙胺嘧啶对各种微生物群落有不同的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdc3/9413843/4bb42386c2dc/fmicb-13-941259-g0001.jpg

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