Li Jiaxing, Wei Xianqin, Huang Dawei, Xiao Jinhua
College of Life Sciences, Nankai University, Tianjin, China.
Front Microbiol. 2022 Feb 14;12:800190. doi: 10.3389/fmicb.2021.800190. eCollection 2021.
Microbial communities can be critical for many metazoans, which can lead to the observation of phylosymbiosis with phylogenetically related species sharing similar microbial communities. Most of the previous studies on phylosymbiosis were conducted across the host families or genera. However, it is unclear whether the phylosymbiosis signal is still prevalent at lower taxonomic levels. In this study, 54 individuals from six species of the fig wasp genus (Hymenoptera: Agaonidae) collected from nine natural populations and their associated microbiota were investigated. The fig wasp species were morphologically identified and further determined by mitochondrial CO1 gene fragments and nuclear ITS2 sequences, and the V4 region of 16S rRNA gene was sequenced to analyze the bacterial communities. The results suggest a significant positive correlation between host genetic characteristics and microbial diversity characteristics, indicating the phylosymbiosis signal between the phylogeny of insect hosts and the associated microbiota in the lower classification level within a genus. Moreover, we found that the endosymbiotic carried by fig wasps led to a decrease in bacterial diversity of host-associated microbial communities. This study contributes to our understanding of the role of host phylogeny, as well as the role of endosymbionts in shaping the host-associated microbial community.
微生物群落对许多后生动物至关重要,这可能导致观察到系统共生现象,即系统发育相关的物种共享相似的微生物群落。先前关于系统共生的大多数研究是在宿主科或属之间进行的。然而,尚不清楚系统共生信号在较低分类水平上是否仍然普遍存在。在本研究中,对从九个自然种群收集的榕小蜂属(膜翅目:榕小蜂科)六个物种的54个个体及其相关微生物群进行了调查。通过线粒体CO1基因片段和核ITS2序列对榕小蜂物种进行形态学鉴定和进一步确定,并对16S rRNA基因的V4区域进行测序以分析细菌群落。结果表明宿主遗传特征与微生物多样性特征之间存在显著正相关,表明在属内较低分类水平上昆虫宿主系统发育与相关微生物群之间存在系统共生信号。此外,我们发现榕小蜂携带的内共生体导致宿主相关微生物群落的细菌多样性降低。本研究有助于我们理解宿主系统发育的作用,以及内共生体在塑造宿主相关微生物群落中的作用。