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Novel Forms of Structural Integration between Microbes and a Hydrothermal Vent Gastropod from the Indian Ocean

机译:微生物与印度洋热液通风腹足动物之间结构整合的新形式

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摘要

Here we describe novel forms of structural integration between endo- and episymbiotic microbes and an unusual new species of snail from hydrothermal vents in the Indian Ocean. The snail houses a dense population of {gamma}-proteobacteria within the cells of its greatly enlarged esophageal gland. This tissue setting differs from that of all other vent mollusks, which harbor sulfur-oxidizing endosymbionts in their gills. The significantly reduced digestive tract, the isotopic signatures of the snail tissues, and the presence of internal bacteria suggest a dependence on chemoautotrophy for nutrition. Most notably, this snail is unique in having a dense coat of mineralized scales covering the sides of its foot, a feature seen in no other living metazoan. The scales are coated with iron sulfides (pyrite and greigite) and heavily colonized by {epsilon}- and {delta}-proteobacteria, likely participating in mineralization of the sclerites. This novel metazoan-microbial collaboration illustrates the great potential of organismal adaptation in chemically and physically challenging deep-sea environments.
机译:在这里,我们描述了内生和共生微生物之间的结构整合的新形式,以及印度洋热液喷口中一种不寻常的新蜗牛。蜗牛的食管腺细胞大大扩张,里面聚集着密集的{proteobacteria}细菌。该组织设置不同于所有其他通风vent软体动物,后者在其g中带有硫氧化内共生体。消化道的明显减少,蜗牛组织的同位素特征以及内部细菌的存在表明对化学自养的营养依赖性。最值得注意的是,这种蜗牛的独特之处在于,其脚的侧面有一层致密的矿化鳞片,这是其他活生生动物所没有的特征。鳞片上涂有硫化铁(黄铁矿和钙铁矿),并被ε-和δ-变形杆菌大量定殖,可能参与了钙锰矿的矿化。这种新颖的后生动物与微生物的合作说明了在化学和物理挑战性深海环境中生物适应的巨大潜力。

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