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首页> 外文期刊>Frontiers in Marine Science >Blow Your Nose, Shrimp! Unexpectedly Dense Bacterial Communities Occur on the Antennae and Antennules of Hydrothermal Vent Shrimp
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Blow Your Nose, Shrimp! Unexpectedly Dense Bacterial Communities Occur on the Antennae and Antennules of Hydrothermal Vent Shrimp

机译:炸鼻子,虾!出乎意料的是,热液通风口虾的触角和触角上有细菌密集的群落。

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摘要

In crustaceans, as in other animals, perception of environmental cues is of key importance for a wide range of interactions with the environment and congeners. Chemoreception involves mainly the antennae and antennules, which carry sensilla that detect water-borne chemicals. The functional importance of these as exchange surfaces in the shrimp's sensory perception requires them to remain free of any microorganism and deposit that could impair the fixation of odorant molecules on sensory neurons. We report here the occurrence of an unexpected dense bacterial colonization on surface of the antennae and antennules of four hydrothermal vent shrimp species. Microscopic observation, qPCR and 16S rRNA barcoding reveal the abundance, diversity and taxonomic composition of these bacterial communities, that are compared with those found on a related coastal shrimp. Bacterial abundances vary among species. Bacteria are almost absent in coastal shrimp, meanwhile they fully cover the antennal flagella in some hydrothermal vent species. Epsilon- and Gammaproteobacteria dominate the hydrothermal shrimp-associated communities, whereas Alphaproteobacteria and Bacteroidetes are dominant in the coastal ones. Bacteria associated with vent shrimp species are most similar to known chemoautotrophic sulfur-oxidizers. Potential roles of these bacteria on the hydrothermal shrimp antennae and antennules and on sensory functions are discussed.
机译:与其他动物一样,在甲壳动物中,对环境线索的感知对于与环境和同类物的广泛相互作用至关重要。化学感受器主要涉及触角和触角,这些触角和触角带有检测水生化学物质的感官。这些物质在虾的感官知觉中作为交换表面的功能重要性要求它们保持不含任何微生物和沉积物,这些微生物和沉积物可能会破坏气味分子在感觉神经元上的固定。我们在此报告了四种热液喷发对虾物种触角和触角表面上意想不到的致密细菌定植的发生。显微镜观察,qPCR和16S rRNA条形码揭示了这些细菌群落的丰度,多样性和分类学组成,并将其与相关沿海虾中发现的进行了比较。细菌丰度因物种而异。沿海虾几乎不存在细菌,同时它们完全覆盖了某些热液喷口物种的触角鞭毛。 Epsilon和γ变形杆菌占主导地位的是热液虾相关的群落,而Alpha变形杆菌和拟杆菌属在沿海虾群落中占主导地位。与排泄虾物种有关的细菌与已知的化学自养硫氧化剂最相似。讨论了这些细菌在热液虾触角和触角以及感觉功能上的潜在作用。

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