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Quantitative PCR Analysis of Functional Genes in Iron-Rich Microbial Mats at an Active Hydrothermal Vent System (Lōihi Seamount Hawaii)

机译:主动热液通风系统(夏威夷洛伊希海山)富铁微生物垫中功能基因的定量PCR分析

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摘要

The chemolithotrophic Zetaproteobacteria represent a novel class of Proteobacteria which oxidize Fe(II) to Fe(III) and are the dominant bacterial population in iron-rich microbial mats. Zetaproteobacteria were first discovered at Lō'ihi Seamount, located 35 km southeast off the big island of Hawai'i, which is characterized by low-temperature diffuse hydrothermal venting. Novel nondegenerate quantitative PCR (qPCR) assays for genes associated with microbial nitrogen fixation, denitrification, arsenic detoxification, Calvin-Benson-Bassham (CBB), and reductive tricarboxylic acid (rTCA) cycles were developed using selected microbial mat community-derived metagenomes. Nitrogen fixation genes were not detected, but all other functional genes were present. This suggests that arsenic detoxification and denitrification processes are likely cooccurring in addition to two modes of carbon fixation. Two groups of microbial mat community types were identified by terminal restriction fragment length polymorphism (T-RFLP) and were further described based on qPCR data for zetaproteobacterial abundance and carbon fixation mode preference. qPCR variance was associated with mat morphology but not with temperature or sample site. Geochemistry data were significantly associated with sample site and mat morphology. Together, these qPCR assays constitute a functional gene signature for iron microbial mat communities across a broad array of temperatures, mat types, chemistries, and sampling sites at Lō'ihi Seamount.
机译:化石营养型轮状细菌代表一类新型的细菌,将Fe(II)氧化为Fe(III),并且是富铁微生物垫中的主要细菌种群。 Zetaproteobacteria最早发现于夏威夷大岛东南35公里处的洛伊希海山,其特征是低温扩散热液排放。使用选定的微生物垫群落衍生的元基因组开发了新颖的非简并定量PCR(qPCR)分析方法,用于与微生物固氮,反硝化,砷解毒,卡尔文-本森-巴瑟姆(CBB)和还原性三羧酸(rTCA)循环相关的基因。没有检测到固氮基因,但是存在所有其他功能基因。这表明除了两种固碳模式外,还可能同时发生砷的解毒和反硝化过程。通过末端限制性片段长度多态性(T-RFLP)鉴定了两组微生物垫群落类型,并基于qPCR数据进一步描述了zeta变形杆菌的丰度和碳固定模式的偏好。 qPCR差异与垫子形态有关,但与温度或样品位点无关。地球化学数据与样品位点和垫层形态显着相关。这些qPCR分析方法共同构成了L'ihi Seamount上广泛温度,垫子类型,化学物质和采样点的铁微生物垫群落的功能基因标记。

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