The impact of carvacrol on the larval gut bacterial structure and function of Lymantria dispar

IF 4 2区 生物学 Q2 MICROBIOLOGY Frontiers in Microbiology Pub Date : 2024-09-18 DOI:10.3389/fmicb.2024.1417598
Jing Yang, Yun-Ze Chen, Guo-Cai Zhang
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Abstract

IntroductionThe gut bacteria of insects play an important role in regulating their metabolism, immune system and metabolizing pesticides. Our previous results indicate that carvacrol has certain gastric toxic activity on Lymantria dispar larvae and affects their detoxification metabolism at the mRNA level. However, the impact of carvacrol on the gut bacteria of L. dispar larvae has been unclear.MethodsIn this study, the 16S rRNA sequencing technology was used to sequence and analyze the gut bacteria of the larvae which were exposed with sublethal concentration (0.297 mg/mL) and median lethal concentration (1.120 mg/mL), respectively.ResultsA total of 10 phyla, 16 classes, 47 orders, 72 families, 103 genera, and 135 species were obtained by using a 97% similarity cutoff level. The dominant bacterial phyla in the gut of the L. dispar larvae are Firmicutes and Proteobacteria. The treatment with carvacrol can significantly affect the structure of gut bacteria in the larvae of the L. dispar. At both doses, carvacrol can shift the dominant gut bacteria of the larvae from Proteobacteria to Firmicutes. At the genus level, two doses of carvacrol can significantly enhance the relative abundance of probiotic Lactobacillus in the gut of L. dispar larvae (p ≤ 0.01). Additionally, significant differences were observed among the five bacterial genera Burkholderia-Caballeronia-Paraburkholderia, Anoxybacillus, Pelomonas, Mesorhizobium (p ≤ 0.05). The analysis of α-diversity and β-diversity indicates that the treatment with carvacrol at two doses significantly affect the bacterial richness and diversity in the larvae. However, the results of functional classification prediction (PICRUSt) indicate that carvacrol significantly down-regulate 7 functions, including Energy metabolism, Cell growth and death, and up-regulate 2 functions, including Carbohydrate metabolism and Membrane transport. The network analysis indicates that the correlation between gut bacteria also has been changed. In addition, the insecticidal activity results of carvacrol against L. dispar larvae with gut bacteria elimination showed that gut bacteria can reduce the insecticidal activity of carvacrol against L. dispar larvae.DiscussionThis study provides a theoretical foundation for understanding the role of gut bacteria in detoxifying plant toxins and conferring pesticide resistance.
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香芹酚对飞燕草幼虫肠道细菌结构和功能的影响
引言 昆虫的肠道细菌在调节其新陈代谢、免疫系统和代谢杀虫剂方面发挥着重要作用。之前的研究结果表明,香芹酚对飞燕幼虫具有一定的胃毒活性,并在 mRNA 水平上影响其解毒代谢。方法 本研究采用 16S rRNA 测序技术,分别对亚致死浓度(0.297 mg/mL)和中位致死浓度(1.120 mg/mL)下幼虫的肠道细菌进行了测序和分析。结果 以 97% 的相似度为临界值,共得到 10 个门、16 个类、47 个目、72 个科、103 个属和 135 个种。蝇蛆幼虫肠道中的优势细菌门为固着菌门和变形菌门。用香芹酚处理能显著影响悬钩子幼虫肠道细菌的结构。两种剂量的香芹酚都能使幼虫肠道中的优势菌从变形菌转变为固着菌。在菌属水平上,两种剂量的香芹酚都能显著提高悬铃木幼虫肠道中益生菌乳酸杆菌的相对丰度(p ≤ 0.01)。此外,还观察到 Burkholderia-Caballeronia-Paraburkholderia, Anoxybacillus, Pelomonas, Mesorhizobium 这五种细菌属之间存在显著差异(p ≤ 0.05)。α-多样性和β-多样性分析表明,两种剂量的香芹酚处理对幼虫体内细菌的丰富度和多样性有显著影响。然而,功能分类预测(PICRUSt)结果表明,香芹酚显著下调了能量代谢、细胞生长和死亡等 7 项功能,上调了碳水化合物代谢和膜转运等 2 项功能。网络分析表明,肠道细菌之间的相关性也发生了变化。讨论 本研究为理解肠道细菌在植物毒素解毒和赋予农药抗性中的作用提供了理论基础。
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来源期刊
CiteScore
7.70
自引率
9.60%
发文量
4837
审稿时长
14 weeks
期刊介绍: Frontiers in Microbiology is a leading journal in its field, publishing rigorously peer-reviewed research across the entire spectrum of microbiology. Field Chief Editor Martin G. Klotz at Washington State University is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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