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The gut of the finch: uniqueness of the gut microbiome of the Galápagos vampire finch

机译:雀雀的肠道:Galápagos吸血鬼雀的肠道微生物的唯一性

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摘要

Darwin's finches are a clade of 19 species of passerine birds native to the Galápagos Islands, whose biogeography, specialized beak morphologies, and dietary choices-ranging from seeds to blood-make them a classic example of adaptive radiation. While these iconic birds have been intensely studied, the composition of their gut microbiome and the factors influencing it, including host species, diet, and biogeography, has not yet been explored. We characterized the microbial community associated with 12 species of Darwin's finches using high-throughput 16S rRNA sequencing of fecal samples from 114 individuals across nine islands, including the unusual blood-feeding vampire finch (Geospiza septentrionalis) from Darwin and Wolf Islands. The phylum-level core gut microbiome for Darwin's finches included the Firmicutes, Gammaproteobacteria, and Actinobacteria, with members of the Bacteroidetes at conspicuously low abundance. The gut microbiome was surprisingly well conserved across the diversity of finch species, with one exception-the vampire finch-which harbored bacteria that were either absent or extremely rare in other finches, including Fusobacterium, Cetobacterium, Ureaplasma, Mucispirillum, Campylobacter, and various members of the Clostridia-bacteria known from the guts of carnivorous birds and reptiles. Complementary stable isotope analysis of feathers revealed exceptionally high δ15N isotope values in the vampire finch, resembling top marine predators. The Galápagos archipelago is also known for extreme wet and dry seasons, and we observed a significant seasonal shift in the gut microbial community of five additional finch species sampled during both seasons. This study demonstrates the overall conservatism of the finch gut microbiome over short (?1?Ma) divergence timescales, except in the most extreme case of dietary specialization, and elevates the evolutionary importance of seasonal shifts in driving not only species adaptation, but also gut microbiome composition.
机译:达尔文的雀属于19种帕拉帕戈斯群岛的Pasererine鸟类,其生物地理,专门的喙形态和饮食选择 - 从种子到血液 - 使它们成为适应性辐射的经典例子。虽然这些标志性的鸟类已经深入研究,但尚未探讨其肠道微生物组的组成以及影响其宿主物种,饮食和生物地理的因素。我们的特征在于使用来自九个岛屿的114个个体的高通量16s rRNA测序,包括来自九个岛屿的114个个体的高通量16s rRNA测序的微生物群体,包括来自达尔文和狼群岛的不寻常的血液喂养吸血鬼雀(Geospiza Septentrionyis)。达尔文雀的门级核心肠道微生物组包括在显着低丰度下的菌丝成员的核心,γ曲线杆菌和肌动菌。肠道微生物胺令人惊讶地节省了雀科物种的多样性,其中一个例外 - 吸血鬼雀雀 - 其在其他雀缺乏或极其罕见的斑纹细菌,包括血曲,甲基杆菌,泌尿瓣,粘膜孢子,弯曲杆菌和各种成员从食肉鸟类和爬行动物的肠道中熟知的梭菌细菌。羽毛的互补稳定同位素分析显示了吸血鬼雀的异常高Δ15n同位素值,类似于顶部海洋捕食者。 Galápagos群岛也是以极端潮湿和干燥的季节而闻名,我们观察到在两个季节中采样的五种额外的雀类物种的肠道微生物群落中观察到显着的季节性转变。本研究表明,除了膳食专业化最极端的情况下,雀肠杆微生物组的整体保守主义,除了最极端的饮食专业情况,并提升季节性转变的进化重要性,不仅是物种适应性,还提升了驾驶的季节性变化肠道微生物组成。

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