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Autecology of an Arsenite Chemolithotroph: Sulfide Constraints on Function and Distribution in a Geothermal Spring

机译:砷化石的营养学:地热泉中硫化物对功能和分布的限制

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Previous studies in an acid-sulfate-chloride spring in Yellowstone National Park found that microbial arsenite [As(III)] oxidation is absent in regions of the spring outflow channel where H2S exceeds ~5 μM and served as a backdrop for continued efforts in the present study. Ex situ assays with microbial mat samples demonstrated immediate As(III) oxidation activity when H2S was absent or at low concentrations, suggesting the presence of As(III) oxidase enzymes that could be reactivated if H2S is removed. Cultivation experiments initiated with mat samples taken from along the H2S gradient in the outflow channel resulted in the isolation of an As(III)-oxidizing chemolithotroph from the low-H2S region of the gradient. The isolate was phylogenetically related to Acidicaldus and was characterized in vitro for spring-relevant properties, which were then compared to its distribution pattern in the spring as determined by denaturing gradient gel electrophoresis and quantitative PCR. While neither temperature nor oxygen requirements appeared to be related to the occurrence of this organism within the outflow channel, H2S concentration appeared to be an important constraint. This was verified by in vitro pure-culture modeling and kinetic experiments, which suggested that H2S inhibition of As(III) oxidation is uncompetitive in nature. In summary, the studies reported herein illustrate that H2S is a potent inhibitor of As(III) oxidation and will influence the niche opportunities and population distribution of As(III) chemolithotrophs.
机译:先前在黄石国家公园的硫酸-硫酸盐-氯化物春季研究发现,在春季流出通道中H2S超过〜5μM的区域不存在微生物亚砷酸盐[As(III)]的氧化,这为在该区域继续努力提供了背景。目前的学习。用微生物垫样品进行的异位分析表明,当不存在H2S或浓度较低时,As(III)会立即产生氧化活性,这表明存在As(III)氧化酶,如果去除H2S可以重新活化。从沿流出通道中沿H2S梯度采集的垫子样品开始的培养实验导致从梯度的低H2S区域分离出As(III)氧化型化营养生物。该分离物在系统发育上与Acidicaldus相关,并在体外表征了与春季相关的特性,然后将其与通过变性梯度凝胶电泳和定量PCR确定的春季分布特征进行了比较。虽然温度和氧气需求似乎都与该生物在流出通道内的发生无关,但H2S浓度似乎是重要的限制因素。体外纯培养模型和动力学实验证实了这一点,这表明H2S抑制As(III)氧化本质上是不竞争的。总而言之,本文报道的研究表明H2S是As(III)氧化的有效抑制剂,将影响As(III)的化营养生物的利基机会和种群分布。

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