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生物源金纳米颗粒对丽蝇从幼虫到蛹转变过程中肠道微生物群组成的影响

Effect of Biogenic Gold Nanoparticles on Gut Microbiota Composition during Larval-to-Pupal Transition in L.

作者信息

Biswas Trishanjan, Bhattacharya Rajarshi, Mondal Rittick, Kurt Halil, Islam Md Majharul, Shaw Shubhajit, Mandal Pankaj, Dam Paulami, Gangopadhyay Debnirmalya, Husen Azamal, Panda Amiya Kumar, Sadat Abdul, Ertas Yavuz Nuri, Mandal Amit Kumar

机构信息

Department of Sericulture, Raiganj University, North Dinajpur, Raiganj, West Bengal 733134, India.

Centre for Molecular Neuroscience, Kasturba Medical College, Manipal Academy of Higher Education, Manipal 576104, India.

出版信息

ACS Omega. 2025 Jun 30;10(27):29317-29330. doi: 10.1021/acsomega.5c02279. eCollection 2025 Jul 15.

Abstract

This study investigates the effects of biogenic gold nanoparticles (Au NPs), synthesized using an aqueous leaf extract of , as a feed supplement on the gut microbiota of . The synthesized Au NPs displayed a characteristic peak absorbance at 545 nm in the UV-vis spectrum, indicative of surface plasmon resonance (SPR), a phenomenon typical of Au NPs. Fourier-transform infrared (FTIR) spectra revealed the functional groups responsible for the reduction of Au-(III) to Au(0). The crystallinity of the synthesized Au NPs was checked using TEM and XRD analysis. TEM micrographs further exhibited the quasi-spherical, monodispersed, well-scattered nature of the Au NPs with an average particle size of 34.15 ± 9.45 nm. The presence of (111), (200), (220), and (311) planes in Bragg's reflections confirmed the face-centered-cubic (fcc) crystalline nature of elemental gold. The LC-MS/MS study revealed that the presence of two zwitterionic species (mainly betaine) stabilizes the Au NPs by the formation of positive sol micelles. Biogenic Au NPs at 40-60 ppm concentrations significantly improved larval growth, effective rearing rate (ERR), filament length, and cocoon quality without affecting silk fineness. Doses below 40 ppm were biologically ineffective, while concentrations above 60 ppm triggered oxidative stress and cytotoxicity. Similarly, gut microbiota analysis revealed notable compositional shifts at the phylum, class, family, and genus levels. There was a decrease in the relative abundance of the phylum , concomitant with a significant enrichment of stress-resilient taxa, including , , , and . Predictive functional profiling using PICRUSt indicated enhanced microbial pathways linked to metabolism, stress response, and detoxification. These results suggest that biogenic Au NPs influence host-microbiome interactions, facilitating improved nutrient assimilation and silk production. However, further research is required to evaluate the long-term safety and ecological impact before widespread use in sericulture.

摘要

本研究调查了使用[植物名称]叶片水提取物合成的生物源金纳米颗粒(Au NPs)作为饲料添加剂对[蚕品种名称]肠道微生物群的影响。合成的Au NPs在紫外可见光谱中于545 nm处显示出特征峰吸光度,表明存在表面等离子体共振(SPR),这是Au NPs的典型现象。傅里叶变换红外(FTIR)光谱揭示了负责将Au-(III)还原为Au(0)的官能团。使用透射电子显微镜(TEM)和X射线衍射(XRD)分析检查了合成的Au NPs的结晶度。TEM显微照片进一步显示了Au NPs的准球形、单分散、良好分散的性质,平均粒径为34.15±9.45 nm。布拉格反射中(111)、(200)、(220)和(311)晶面的存在证实了元素金的面心立方(fcc)晶体性质。液相色谱-串联质谱(LC-MS/MS)研究表明,两种两性离子物质(主要是甜菜碱)的存在通过形成正溶胶胶束来稳定Au NPs。浓度为40 - 60 ppm的生物源Au NPs显著提高了幼虫生长、有效饲养率(ERR)、丝长和茧质量,而不影响丝的细度。低于40 ppm的剂量在生物学上无效,而高于60 ppm的浓度会引发氧化应激和细胞毒性。同样,肠道微生物群分析显示在门、纲、科和属水平上有明显的组成变化。[门名称]的相对丰度降低,同时包括[应激抗性分类群名称1]、[应激抗性分类群名称2]、[应激抗性分类群名称3]和[应激抗性分类群名称4]在内的应激抗性分类群显著富集。使用PICRUSt进行的预测功能分析表明,与代谢、应激反应和解毒相关的微生物途径增强。这些结果表明,生物源Au NPs影响宿主-微生物群相互作用,促进营养吸收和蚕丝生产的改善。然而,在蚕桑养殖中广泛使用之前,需要进一步研究以评估其长期安全性和生态影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a8c/12268452/f6a51c8b9d3a/ao5c02279_0001.jpg

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