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首页> 外文期刊>Ecology and Evolution >Diversity and resilience of the wood-feeding higher termite Mironasutitermes shangchengensis gut microbiota in response to temporal and diet variations
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Diversity and resilience of the wood-feeding higher termite Mironasutitermes shangchengensis gut microbiota in response to temporal and diet variations

机译:进食白蚁的上海白蚁肠道微生物菌群对时间和饮食变化的响应和多样性

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Abstract Termites are considered among the most efficient bioreactors, with high capacities for lignocellulose degradation and utilization. Recently, several studies have characterized the gut microbiota of diverse termites. However, the temporal dynamics of the gut microbiota within a given termite with dietary diversity are poorly understood. Here, we employed 16S rDNA barcoded pyrosequencing analysis to investigate temporal changes in bacterial diversity and richness of the gut microbiota of wood-feeding higher termite Mironasutitermes shangchengensis under three lignocellulose content-based diets that feature wood, corn stalks, and filter paper. Compositions of the predominant termite gut residents were largely constant among the gut microbiomes under different diets, but each diet caused specific changes in the bacterial composition over time. Notably, microbial communities exhibited an unexpectedly strong resilience during continuous feeding on both corn stalks and filter paper. Members of five bacterial phyla, that is, Spirochaetes, Firmicutes, Actinobacteria, Tenericutes, and Acidobacteria, were strongly associated with the resilience. These findings provide insights into the stability of the gut microbiota in higher termites and have important implications for the future design of robust bioreactors for lignocellulose degradation and utilization.
机译:摘要白蚁被认为是最有效的生物反应器,具有很高的木质纤维素降解和利用能力。近来,一些研究已经表征了各种白蚁的肠道微生物群。然而,人们对具有饮食多样性的白蚁内肠道菌群的时间动态知之甚少。在这里,我们使用16S rDNA条形码焦磷酸测序分析来研究三种以木质纤维素含量为基础的,以木材,玉米秸秆和滤纸为食的,以木材为食的高级白蚁Mironasutitermes shangchengensis的细菌多样性和肠道菌群丰富度的时间变化。在不同饮食条件下,肠道微生物群落中主要的白蚁肠道居民的成分基本保持不变,但每种饮食都会导致细菌组成随时间的特定变化。值得注意的是,在连续饲喂玉米秸秆和滤纸的过程中,微生物群落表现出了出乎意料的强韧性。五个细菌门的成员,即螺旋棘,硬毛,放线菌,Tenericutes和酸菌,与回弹力密切相关。这些发现提供了对高白蚁中肠道菌群稳定性的见解,并对木质纤维素降解和利用的健壮生物反应器的未来设计具有重要意义。

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