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一种属于副球菌属的新型根际细菌对硫代硫酸盐、连四硫酸盐和硫氰酸盐的化能无机自养氧化作用

Chemolithoautotrophic oxidation of thiosulfate, tetrathionate and thiocyanate by a novel rhizobacterium belonging to the genus Paracoccus.

作者信息

Ghosh Wriddhiman, Roy Pradosh

机构信息

Department of Microbiology, Bose Institute, Kolkata, India.

出版信息

FEMS Microbiol Lett. 2007 May;270(1):124-31. doi: 10.1111/j.1574-6968.2007.00670.x. Epub 2007 Feb 26.

Abstract

Two tropical leguminous-rhizospheric strains, SST and JT 001, phylogenetically closest to Paracoccus thiocyanatus and Paracoccus pantotrophus, respectively, were isolated on reduced sulfur compounds as sole energy and electron sources. While SST had versatile chemolithotrophic abilities to oxidize thiosulfate, tetrathionate, thiocyanate, sulfide and elemental sulfur, JT 001 could oxidize thiosulfate, soluble sulfide, elemental sulfur and a relatively lesser amount of tetrathionate. Positive hybridization signals were detected for JT 001 but not SST, when their genomic DNAs were probed with DIG-labeled sulfur oxidation genes amplified from the chemolithotrophic alphaproteobacterium Pseudaminobacter salicylatoxidans KCT001. Though the new isolate SST exhibited high 16S rRNA gene sequence similarity with the monotypic species P. thiocyanatus, it was found to be considerably distinct from the latter in terms of phenotypic and chemotaxonomic characteristics. Polyphasic systematic analysis, however, confirmed that JT 001 was a strain of P. pantotrophus.

摘要

从热带豆科植物根际分离出两株菌株,SST和JT 001,它们在系统发育上分别与硫氰酸副球菌和泛养副球菌最为接近,这两株菌是以还原态硫化合物作为唯一能量和电子来源分离得到的。SST具有多种化能无机营养能力,能够氧化硫代硫酸盐、连四硫酸盐、硫氰酸盐、硫化物和元素硫,而JT 001能够氧化硫代硫酸盐、可溶性硫化物、元素硫以及相对少量的连四硫酸盐。当用从化能无机营养型α-变形菌水杨酸盐氧化假氨基杆菌KCT001扩增得到的、经地高辛标记的硫氧化基因探测它们的基因组DNA时,JT 001检测到了阳性杂交信号,而SST没有。尽管新分离的SST与单型种硫氰酸副球菌具有较高的16S rRNA基因序列相似性,但在表型和化学分类特征方面发现它与后者有很大不同。然而,多相系统分析证实JT 001是泛养副球菌的一个菌株。

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