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Macrobdella decora: Old World Leech Gut Microbial Community Structure Conserved in a New World Leech

机译:Macrobdella decora:旧世界水蛭肠道微生物群落结构在新世界水蛭中保存

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Leeches are found in terrestrial, aquatic, and marine habitats on all continents. Sanguivorous leeches have been used in medicine for millennia. Modern scientific uses include studies of neurons, anticoagulants, and gut microbial symbioses. Hirudo verbana, the European medicinal leech, maintains a gut community dominated by two bacterial symbionts, Aeromonas veronii and Mucinivorans hirudinis, which sometimes account for as much as 97 of the total crop microbiota. The highly simplified gut anatomy and microbiome of H. verbana make it an excellent model organism for studying gut microbial dynamics. The North American medicinal leech, Macrobdella decora, is a hirudinid leech native to Canada and the northern United States. In this study, we show that M. decora symbiont communities are very similar to those in H. verbana. We performed an extensive study using field-caught M. decora and purchased H. verbana from two suppliers. Deep sequencing of the V4 region of the 16S rRNA gene allowed us to determine that the core microbiome of M. decora consists of Bacteroides, Aeromonas, Proteocatella, and Butyricicoccus. The analysis revealed that the compositions of the gut microbiomes of the two leech species were significantly different at all taxonomic levels. The R2 value was highest at the genus and amplicon sequence variant (ASV) levels and much lower at the phylum, class, and order levels. The gut and bladder microbial communities were distinct. We propose that M. decora is an alternative to H. verbana for studies of wild-caught animals and provide evidence for the conservation of digestive-tract and bladder symbionts in annelid models. IMPORTANCE Building evidence implicates the gut microbiome in critical animal functions such as regulating digestion, nutrition, immune regulation, and development. Simplified, phylogenetically diverse models for hypothesis testing are necessary because of the difficulty of assigning causative relationships in complex gut microbiomes. Prev
机译:水蛭存在于各大洲的陆地、水生和海洋栖息地。几千年来,血食性水蛭一直被用于医学。现代科学用途包括神经元、抗凝剂和肠道微生物共生的研究。Hirudo verbana 是欧洲药用水蛭,其肠道群落由两种细菌共生体 Aeromonas veronii 和 Mucinivorans hirudinis 主导,它们有时占作物微生物群总数的 97%。马鞭草高度简化的肠道解剖结构和微生物组使其成为研究肠道微生物动力学的优秀模式生物。北美药用水蛭,Macrobdella decora,是一种原产于加拿大和美国北部的水蛭。在这项研究中,我们发现 M. decora 共生体群落与马鞭草中的共生群落非常相似。我们使用田间捕获的 M. decora 进行了广泛的研究,并从两家供应商处购买了 H. verbana。对 16S rRNA 基因的 V4 区域进行深度测序,使我们能够确定 M. decora 的核心微生物组由拟杆菌属、气单胞菌属、变形菌属和丁酸球菌属组成。分析表明,两种水蛭的肠道微生物组组成在所有分类水平上均存在显著差异。R2值在属和扩增子序列变异(ASV)水平上最高,在门、类和目水平上要低得多。肠道和膀胱微生物群落是不同的。我们建议 M.decora 是 H. verbana 的替代品,用于研究野生捕获的动物,并为环节动物模型中消化道和膀胱共生体的保存提供了证据。重要性 建立证据表明肠道微生物组与关键的动物功能有关,例如调节消化、营养、免疫调节和发育。由于难以在复杂的肠道微生物组中分配因果关系,因此需要简化的、系统发育多样化的假设检验模型。昨日

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