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Microelectrode Studies of Interstitial Water Chemistry and Photosynthetic Activity in a Hot Spring Microbial Mat

机译:温泉微生物垫中间隙水化学和光合活性的微电极研究

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摘要

Microelectrodes were used to measure oxygen, pH, and oxygenic photosynthetic activity in a hot spring microbial mat (Octopus Spring, Yellowstone National Park), where the cyanobacterium Synechococcus lividus and the filamentous bacterium Chloroflexus aurantiacus are the only known phototrophs. The data showed very high biological activities in the topmost layers of the microbial mat, resulting in extreme values for oxygen and pH. At a 1-mm depth at a 55°C site, oxygen and pH reached 900 μM and 9.4, respectively, just after solar noon, whereas anoxic conditions with a pH of 7.2 were measured before sunrise. Although diurnal changes between these extremes occurred over hours during a diurnal cycle, microbial activity was great enough to give the same response in 1 to 2 min after artificial shading. Oxygenic photosynthesis was confined to a 0.5- to 1.1-mm layer at sites with temperatures at or above about 50°C, with maximum activities in the 55 to 60°C region. The data suggest that S. lividus is the dominant primary producer of the mat.
机译:微电极用于测量温泉微生物垫(章鱼温泉,黄石国家公园)中的氧气,pH和氧气的光合作用,其中蓝藻Synechococcus lividus和丝状细菌Chloroflexus aurantiacus是唯一已知的光养生物。数据显示,微生物垫的最顶层具有很高的生物活性,导致氧气和pH值极高。正好在太阳正午之后,在55℃位置的1毫米深度处,氧气和pH分别达到900μM和9.4,而日出前测量的pH值为7.2的缺氧条件。尽管这些极端之间的昼夜变化发生在昼夜周期中的数小时内,但微生物活性足以在人工遮阴后的1至2分钟内产生相同的响应。在温度在约50°C或更高的温度下,有氧光合作用被限制在0.5-1.1mm的层内,最大活性在55-60°C范围内。数据表明,S。lividus是该垫的主要主要生产者。

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