马铃薯tuberworm (Phthorimaea operculella)种群的肠道细菌以肠球菌(Enterococcus spp.)为主,这些细菌在碳水化合物代谢和宿主生长中起着重要作用

IF 4.1 1区 农林科学 Q1 ENTOMOLOGY
Mengdi Zhang, Junjie Yan, Jorge A. Zavala, Subba Reddy Palli, Guy Smagghe, Yulin Gao
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引用次数: 0

摘要

肠道菌群在维持昆虫宿主健康中的关键作用已经得到了广泛的研究。本研究的目的是确定马铃薯结核菌(Phthorimaea operculella)幼虫肠道中的微生物,并探讨它们在宿主发育、代谢、肠道结构完整性和免疫缺陷(Imd)中的作用。从中国主要马铃薯产区收集的标本进行鸟枪宏基因组测序,并进行主坐标分析,结果显示地理位置解释了细菌组成的大部分差异,但蒙地肠球菌在所有样品中都占主导地位。KEGG分析表明,碳水化合物代谢是P. operculella肠道微生物群的主要功能。随后,通过添加抗生素的人工饲料去除肠道微生物,特别是肠球菌属细菌显著减少。通常情况下,喂食抗生素的昆虫碳水化合物代谢较低,存活率较低,发育周期较长,繁殖力较差。代谢组学分析也证实,抗生素治疗对肠道代谢谱有显著影响,尤其是淀粉降解。此外,抗生素处理后,肠道内微生物群组成、代谢和肠道结构的平衡受到破坏。总之,我们的数据提供了证据,表明肠道微生物组与宿主昆虫的代谢和结构完整性之间存在复杂的相互作用,这对其生长发育至关重要。这些发现增强了我们对微生物群在昆虫中的功能的理解,并促进了对这种害虫的环境友好管理策略的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gut bacteria in potato tuberworm (Phthorimaea operculella) populations are dominated by Enterococcus spp. and these play a significant role in carbohydrate metabolism and host growth

The pivotal role of gut microbiota in maintaining the insect host’s well-being has been extensive researched. Here, our research objective was to determine the microbes in the gut of larvae of the potato tuberworm (Phthorimaea operculella) and to investigate the role they play in the host development, metabolism, gut structure integrity and immune deficiency (Imd). Shotgun metagenomics sequencing from specimens collected in major potato-producing regions in China, and principal coordinate analysis revealed that the geographic location explained much of the variance in bacterial composition, but Enterococcus mundtii was dominant in all samples. KEGG analysis demonstrated that carbohydrate metabolism was the major function of the P. operculella’s gut microbiome. Subsequently, with the use of artificial diet supplemented with antibiotics, the gut microbes were removed, especially the bacteria of the Enterococcus genus were significantly decreased. Typically, insects fed with antibiotics showed a lower carbohydrate metabolism, survival rate, longer developmental period and poorer fecundity. Metabolomics analysis also confirmed that the antibiotics treatment had a striking impact on the metabolic profile in the gut, especially for starch degradation. In addition, the gut homeostasis with its microbiota composition, metabolism and gut structure was damaged in the antibiotics-treated insects. In summary, our data provide evidence that a complex interaction exists between the microbiome of the gut and the metabolism and structure integrity of the host insect, which is essential for its growth and development. These findings enhance our comprehension of the microbiota's function in insects and facilitate the advancement of environmentally friendly management strategies for this pest.

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来源期刊
Journal of Pest Science
Journal of Pest Science 生物-昆虫学
CiteScore
10.40
自引率
8.30%
发文量
114
审稿时长
6-12 weeks
期刊介绍: Journal of Pest Science publishes high-quality papers on all aspects of pest science in agriculture, horticulture (including viticulture), forestry, urban pests, and stored products research, including health and safety issues. Journal of Pest Science reports on advances in control of pests and animal vectors of diseases, the biology, ethology and ecology of pests and their antagonists, and the use of other beneficial organisms in pest control. The journal covers all noxious or damaging groups of animals, including arthropods, nematodes, molluscs, and vertebrates. Journal of Pest Science devotes special attention to emerging and innovative pest control strategies, including the side effects of such approaches on non-target organisms, for example natural enemies and pollinators, and the implementation of these strategies in integrated pest management. Journal of Pest Science also publishes papers on the management of agro- and forest ecosystems where this is relevant to pest control. Papers on important methodological developments relevant for pest control will be considered as well.
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