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Metagenomic Insights into Metabolic Capacities of the Gut Microbiota in a Fungus-Cultivating Termite (Odontotermes yunnanensis)

机译:真菌培养白蚁肠道菌群代谢能力的元基因组学洞察。

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摘要

Macrotermitinae (fungus-cultivating termites) are major decomposers in tropical and subtropical areas of Asia and Africa. They have specifically evolved mutualistic associations with both a Termitomyces fungi on the nest and a gut microbiota, providing a model system for probing host-microbe interactions. Yet the symbiotic roles of gut microbes residing in its major feeding caste remain largely undefined. Here, by pyrosequencing the whole gut metagenome of adult workers of a fungus-cultivating termite (Odontotermes yunnanensis), we showed that it did harbor a broad set of genes or gene modules encoding carbohydrate-active enzymes (CAZymes) relevant to plant fiber degradation, particularly debranching enzymes and oligosaccharide-processing enzymes. Besides, it also contained a considerable number of genes encoding chitinases and glycoprotein oligosaccharide-processing enzymes for fungal cell wall degradation. To investigate the metabolic divergence of higher termites of different feeding guilds, a SEED subsystem-based gene-centric comparative analysis of the data with that of a previously sequenced wood-feeding Nasutitermes hindgut microbiome was also attempted, revealing that SEED classifications of nitrogen metabolism, and motility and chemotaxis were significantly overrepresented in the wood-feeder hindgut metagenome, while Bacteroidales conjugative transposons and subsystems related to central aromatic compounds metabolism were apparently overrepresented here. This work fills up our gaps in understanding the functional capacities of fungus-cultivating termite gut microbiota, especially their roles in the symbiotic digestion of lignocelluloses and utilization of fungal biomass, both of which greatly add to existing understandings of this peculiar symbiosis.
机译:大白蚁(真菌栽培白蚁)是亚洲和非洲热带和亚热带地区的主要分解者。它们与巢上的Termmitomyces真菌和肠道菌群特别进化了相互关系,为探测宿主-微生物相互作用提供了模型系统。然而,肠道微生物在其主要的饲喂种姓中的共生作用在很大程度上尚不清楚。在这里,通过对真菌栽培白蚁(Odontotermes yunnanensis)的成年工人的整个肠道元基因组进行焦磷酸测序,我们发现它确实包含了编码与植物纤维降解相关的碳水化合物活性酶(CAZymes)的广泛基因或基因模块,特别是脱支酶和寡糖加工酶。此外,它还包含大量编码几丁质酶和糖蛋白寡糖加工酶的基因,这些酶用于真菌细胞壁降解。为了研究不同饲养协会的高等白蚁的代谢差异,还尝试了基于SEED子系统的以基因为中心的数据与先前测序的以木材为食的Nasutitermes后肠微生物组的数据进行比较分析,从而揭示了氮代谢的SEED分类,木材饲养者后肠元基因组中的运动和趋化性明显过高,而与中央芳香化合物代谢相关的细菌科共轭转座子和子系统在这里明显过高。这项工作填补了我们在理解真菌培养白蚁肠道菌群功能能力方面的空白,尤其是它们在木质纤维素共生消化和真菌生物质利用中的作用,这两者都极大地增进了人们对这种特殊共生的理解。

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