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典型抗生素对黑水虻(双翅目:水虻科)幼虫肠道细菌微生物群特征的影响。

Characteristics of gut bacterial microbiota of black soldier fly (Diptera: Stratiomyidae) larvae effected by typical antibiotics.

机构信息

State Key Laboratory of Biocatalysis and Enzyme Engineering, School of Life Sciences, Hubei University, Wuhan 430062, China.

State Key Laboratory of Agricultural Microbiology, College of Life Science and Technology, National Engineering Research Centre of Microbial Pesticides, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Ecotoxicol Environ Saf. 2024 Jan 15;270:115861. doi: 10.1016/j.ecoenv.2023.115861. Epub 2023 Dec 27.

Abstract

As agents in an emerging technology, Hermetia illucens (Linnaeus, 1758) (Diptera: Stratiomyidae) larvae, black soldier fly, have shown exciting potential for degrading antibiotics in organic solid waste, a process for which gut microorganisms play an important role. This study investigated the characteristics of larval gut bacterial communities effected by typical antibiotics. Initially, antibiotics significantly reduced the diversity of gut bacterial species. After 8 days, diversity recovered to similar to that of the control group in the chlortetracycline, tylosin, and sulfamethoxazole groups. Proteobacteria, Firmicutes, and Actinobacteriota were the dominant phyla at the initial BSFL gut. However, after 4 days treatment, the proportion of Actinobacteriota significantly decreased, but Bacteroidota notably increased. During the conversion process, 18, 18, 17, 21, and 19 core genera were present in the chlortetracycline, sulfamethoxazole, tylosin, norfloxacin, and gentamicin groups, respectively. Pseudomonas, Actinomyces, Morganella, Providencia and Klebsiella might be the important genera with extraordinary resistance and degradation to antibiotics. Statistical analyses of COGs showed that antibiotics changed the microbial community functions of BSFL gut. Compared with the control group, (i) the chlortetracycline, sulfamethoxazole, and tylosin groups showed significant increase in the classification functions of transcription, RNA processing and modification,and so on, (ii) the norfloxacin and gentamicin groups showed significant increase in defense mechanisms and other functions. Note that we categorized the response mechanisms of these classification functions to antibiotics into resistance and degradation. This provides a new perspective to deeply understand the joint biodegradation behavior of antibiotics in environments, and serves as an important reference for further development and utilization of microorganisms-assisted larvae for efficient degradation of antibiotics.

摘要

作为一种新兴技术的媒介,Hermetia illucens(Linnaeus,1758)(双翅目:Stratiomyidae)幼虫,即黑水虻,在降解有机固体废物中的抗生素方面表现出了令人兴奋的潜力,而这一过程中肠道微生物发挥了重要作用。本研究调查了典型抗生素对幼虫肠道细菌群落特征的影响。最初,抗生素显著降低了肠道细菌种类的多样性。8 天后,在氯霉素、泰乐菌素和磺胺甲恶唑组中,多样性恢复到类似于对照组的水平。在初始 BSFL 肠道中,变形菌门、厚壁菌门和放线菌门是主要的门。然而,在 4 天的处理后,放线菌门的比例显著下降,而拟杆菌门的比例显著增加。在转化过程中,氯霉素、磺胺甲恶唑、泰乐菌素、诺氟沙星和庆大霉素组分别存在 18、18、17、21 和 19 个核心属。假单胞菌、放线菌、摩根菌属、普罗维登斯菌属和克雷伯菌属可能是对抗生素具有特殊抗性和降解能力的重要属。COGs 的统计分析表明,抗生素改变了 BSFL 肠道微生物群落的功能。与对照组相比,(i)氯霉素、磺胺甲恶唑和泰乐菌素组在转录、RNA 加工和修饰等分类功能上表现出显著增加,(ii)诺氟沙星和庆大霉素组在防御机制和其他功能上表现出显著增加。需要注意的是,我们将这些分类功能对抗生素的响应机制分为抗性和降解。这为深入了解抗生素在环境中的联合生物降解行为提供了新的视角,并为进一步开发和利用微生物辅助幼虫高效降解抗生素提供了重要参考。

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