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东非丽鱼科鱼类饮食转变期间的肠道微生物群动态

Gut Microbiota Dynamics during Dietary Shift in Eastern African Cichlid Fishes.

作者信息

Baldo Laura, Riera Joan Lluís, Tooming-Klunderud Ave, Albà M Mar, Salzburger Walter

机构信息

Zoological Institute, University of Basel, Basel, Switzerland; Ecology Department, University of Barcelona, Barcelona, Spain.

Ecology Department, University of Barcelona, Barcelona, Spain.

出版信息

PLoS One. 2015 May 15;10(5):e0127462. doi: 10.1371/journal.pone.0127462. eCollection 2015.

Abstract

The gut microbiota structure reflects both a host phylogenetic history and a signature of adaptation to the host ecological, mainly trophic niches. African cichlid fishes, with their array of closely related species that underwent a rapid dietary niche radiation, offer a particularly interesting system to explore the relative contribution of these two factors in nature. Here we surveyed the host intra- and interspecific natural variation of the gut microbiota of five cichlid species from the monophyletic tribe Perissodini of lake Tanganyika, whose members transitioned from being zooplanktivorous to feeding primarily on fish scales. The outgroup riverine species Astatotilapia burtoni, largely omnivorous, was also included in the study. Fusobacteria, Firmicutes and Proteobacteria represented the dominant components in the gut microbiota of all 30 specimens analysed according to two distinct 16S rRNA markers. All members of the Perissodini tribe showed a homogenous pattern of microbial alpha and beta diversities, with no significant qualitative differences, despite changes in diet. The recent diet shift between zooplantkon- and scale-eaters simply reflects on a significant enrichment of Clostridium taxa in scale-eaters where they might be involved in the scale metabolism. Comparison with the omnivorous species A. burtoni suggests that, with increased host phylogenetic distance and/or increasing herbivory, the gut microbiota begins differentiating also at qualitative level. The cichlids show presence of a large conserved core of taxa and a small set of core OTUs (average 13-15%), remarkably stable also in captivity, and putatively favoured by both restricted microbial transmission among related hosts (putatively enhanced by mouthbrooding behavior) and common host constraints. This study sets the basis for a future large-scale investigation of the gut microbiota of cichlids and its adaptation in the process of the host adaptive radiation.

摘要

肠道微生物群结构既反映了宿主的系统发育历史,也反映了对宿主生态位(主要是营养生态位)适应的特征。非洲丽鱼科鱼类拥有一系列密切相关的物种,它们经历了快速的食性生态位辐射,为探索这两个因素在自然界中的相对贡献提供了一个特别有趣的系统。在这里,我们调查了坦噶尼喀湖单系族Perissodini的五种丽鱼科鱼类肠道微生物群的种内和种间自然变异,其成员从以浮游动物为食转变为主要以鱼鳞为食。研究中还纳入了作为外群的河流物种布氏非鲫,它主要是杂食性。根据两种不同的16S rRNA标记,梭杆菌、厚壁菌门和变形菌门是所有30个分析样本肠道微生物群中的主要成分。尽管饮食发生了变化,但Perissodini族的所有成员都表现出微生物α和β多样性的同质模式,没有显著的定性差异。最近从以浮游动物为食到以鱼鳞为食的饮食转变仅反映在以鱼鳞为食的鱼类中梭菌属的显著富集,它们可能参与了鱼鳞代谢。与杂食性物种布氏非鲫的比较表明,随着宿主系统发育距离的增加和/或草食性的增加,肠道微生物群在定性水平上也开始分化。丽鱼科鱼类显示出存在大量保守的分类单元核心和一小部分核心OTU(平均13 - 15%),即使在圈养条件下也非常稳定,推测这受到相关宿主之间有限的微生物传播(推测通过口孵行为增强)和共同的宿主限制的青睐。这项研究为未来大规模研究丽鱼科鱼类的肠道微生物群及其在宿主适应性辐射过程中的适应奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4052/4433246/bb057f8dcd3a/pone.0127462.g001.jpg

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