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《热带食谱:白蚁饮食与系统发育学——跨越地理起源——驱动巢穴的微生物组和功能基因结构》

The tropical cookbook: Termite diet and phylogenetics-Over geographical origin-Drive the microbiome and functional genetic structure of nests.

作者信息

González Plaza Juan José, Hradecký Jaromír

机构信息

Faculty of Forestry and Wood Sciences, Czech University of Life Sciences Prague, Prague, Czechia.

出版信息

Front Microbiol. 2023 Mar 14;14:1089525. doi: 10.3389/fmicb.2023.1089525. eCollection 2023.

Abstract

Termites are key decomposers of dead plant material involved in the organic matter recycling process in warm terrestrial ecosystems. Due to their prominent role as urban pests of timber, research efforts have been directed toward biocontrol strategies aimed to use pathogens in their nest. However, one of the most fascinating aspects of termites is their defense strategies that prevent the growth of detrimental microbiological strains in their nests. One of the controlling factors is the nest allied microbiome. Understanding how allied microbial strains protect termites from pathogen load could provide us with an enhanced repertoire for fighting antimicrobial-resistant strains or mining for genes for bioremediation purposes. However, a necessary first step is to characterize these microbial communities. To gain a deeper understanding of the termite nest microbiome, we used a multi-omics approach for dissecting the nest microbiome in a wide range of termite species. These cover several feeding habits and three geographical locations on two tropical sides of the Atlantic Ocean known to host hyper-diverse communities. Our experimental approach included untargeted volatile metabolomics, targeted evaluation of volatile naphthalene, a taxonomical profile for bacteria and fungi through amplicon sequencing, and further diving into the genetic repertoire through a metagenomic sequencing approach. Naphthalene was present in species belonging to the genera and . We investigated the apparent differences in terms of bacterial community structure and discovered that feeding habits and phylogenetic relatedness had a greater influence than geographical location. The phylogenetic relatedness among nests' hosts influences primarily bacterial communities, while diet influences fungi. Finally, our metagenomic analysis revealed that the gene content provided both soil-feeding genera with similar functional profiles, while the wood-feeding genus showed a different one. Our results indicate that the nest functional profile is largely influenced by diet and phylogenetic relatedness, irrespective of geographical location.

摘要

白蚁是温暖陆地生态系统中参与有机物质循环过程的死植物材料的关键分解者。由于它们作为木材城市害虫的突出作用,研究工作一直致力于旨在利用其巢穴中的病原体的生物防治策略。然而,白蚁最引人入胜的方面之一是它们的防御策略,这些策略可防止有害微生物菌株在其巢穴中生长。其中一个控制因素是巢穴相关微生物群。了解相关微生物菌株如何保护白蚁免受病原体侵害,可为我们提供更多对抗抗菌抗性菌株或挖掘用于生物修复目的基因的方法。然而,必要的第一步是对这些微生物群落进行特征描述。为了更深入地了解白蚁巢穴微生物群,我们采用了多组学方法来剖析广泛的白蚁物种的巢穴微生物群。这些物种涵盖了几种摄食习性以及大西洋两侧两个热带地区的三个地理位置,这些地区以拥有高度多样化的群落而闻名。我们的实验方法包括非靶向挥发性代谢组学、挥发性萘的靶向评估、通过扩增子测序获得细菌和真菌的分类概况,以及通过宏基因组测序方法进一步深入研究基因库。萘存在于属于 属和 属的物种中。我们研究了细菌群落结构方面的明显差异,发现摄食习性和系统发育相关性比地理位置的影响更大。巢穴宿主之间的系统发育相关性主要影响细菌群落,而饮食影响真菌。最后,我们的宏基因组分析表明,土壤取食属的基因含量提供了相似的功能概况,而木材取食属则显示出不同的功能概况。我们的结果表明,巢穴功能概况在很大程度上受饮食和系统发育相关性的影响,而与地理位置无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73f4/10043212/7d86325436de/fmicb-14-1089525-g0001.jpg

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