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Ecophysiology of lithotrophic sulfur-oxidizing Sphaerotilus species from sulfide springs in the Northern Caucasus

机译:高加索北部硫化物泉中的岩石营养型硫氧化球藻物种的生态生理学

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摘要

Six strains of sulfur-oxidizing bacteria of the known organotrophic species Sphaerotilus natans were isolated from two North Caucasian sulfide springs. Similar to known colorless sulfur bacteria, all the strains accumulated elemental sulfur when grown in media with sulfide. Unlike previously isolated S. natans strains, new isolates had higher temperature growth optimum (33-37A degrees C) and variable metabolism. All the strains were capable of organotrophic, lithoheterotrophic, and mixotrophic growth with sulfur compounds as electron donors for energy metabolism. Variable metabolism of new Sphaerotilus isolates is a highly important adaptation mechanism which facilitates extension of their geographic range and supports their mass development in new habitats, e.g. sulfide springs. Within the cluster of new isolates, the physiological heterogeneity was shown to result from the inducible nature of the enzymes of oxidative sulfur metabolism and from their resistance to aerobic cultivation.
机译:从两个北高加索硫化物泉水中分离出六种已知的有机营养种类纳豆菌(Sphaerotilus natans)的硫氧化细菌菌株。与已知的无色硫细菌相似,当所有菌株在含有硫化物的培养基中生长时,所有菌株都会积累元素硫。与以前分离的纳丹链球菌菌株不同,新分离株具有更高的最佳温度生长温度(33-37A摄氏度)和可变代谢。所有菌株都能够以硫化合物作为能量代谢的电子供体,进行有机营养,石营养和混合营养的生长。新球形藻分离物的可变代谢是高度重要的适应机制,其有助于扩大其地理范围并支持其在新的生境中的大规模发育,例如硫化物弹簧。在新分离株的群集中,生理异质性是由于氧化硫代谢酶的可诱导性质及其对需氧培养的抗性所致。

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