首页> 外文期刊>Applied and Environmental Microbiology >The Termite Gut Microflora as an Oxygen Sink: Microelectrode Determination of Oxygen and pH Gradients in Guts of Lower and Higher Termites.
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The Termite Gut Microflora as an Oxygen Sink: Microelectrode Determination of Oxygen and pH Gradients in Guts of Lower and Higher Termites.

机译:作为氧气槽的白蚁肠道菌群:用微电极测定上下白蚁肠道中的氧气和pH梯度。

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摘要

Clark-type oxygen microelectrodes and glass pH microelectrodes, each with a tip diameter of 10) and then to the P3 segment (paunch; pH (apprx=)7). The latter transition occurred at the short enteric valve (P2 segment) and within a distance of less than 500 (mu)m. In contrast, R. flavipes, which lacks a readily distinguishable P1 segment, did not possess a markedly alkaline region, and the pH around the midgut-hindgut junction was circumneutral. The oxic status of the peripheral hindgut lumen and its substantial oxygen consumption, together with previous reports of large numbers of aerobic and facultatively anaerobic bacteria in the hindgut microflora, challenge the notion that termite hindguts are a purely anoxic environment and, together with the steep axial pH gradients in higher termites, refine our concept of this tiny microbial habitat.
机译:Clark型氧气微电极和玻璃pH微电极,每个微电极的尖端直径为10),然后到达P3段(冲孔; pH(apprx =)7)。后一个转变发生在短肠瓣膜(P2段)处,且距离小于500μm。相反,缺乏易于区分的P1片段的黄萎病菌不具有明显的碱性区域,中肠-后肠连接点周围的pH处于中性。周围后肠腔的有氧状态及其大量的氧气消耗,以及先前关于后肠微生物区系中大量需氧和兼性厌氧细菌的报道,对白蚁后肠是纯缺氧环境以及陡峭的轴向环境提出了质疑。高白蚁中的pH梯度完善了我们对这种微小微生物栖息地的概念。

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