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红平红球菌的两株脱硫分离株与特征明确的红平红球菌菌株IGTS8之间的表型和遗传特征比较研究。

Comparative studies of phenotypic and genetic characteristics between two desulfurizing isolates of Rhodococcus erythropolis and the well-characterized R. erythropolis strain IGTS8.

作者信息

Santos Silvia C C, Alviano Daniela S, Alviano Celuta S, Goulart Fátima R V, de Pádula Marcelo, Leitão Alvaro C, Martins Orlando B, Ribeiro Claudia M S, Sassaki Mônica Y M, Matta Carla P S, Bevilaqua Juliana, Sebastián Gina V, Seldin Lucy

机构信息

Laboratório de Genética Microbiana, Departamento de Microbiologia Geral, Instituto de Microbiologia Prof. Paulo de Góes (IMPPG), Centro de Ciências da Saúde (CCS), Universidade Federal do Rio de Janeiro (UFRJ), Rio de Janeiro, RJ, Brazil.

出版信息

J Ind Microbiol Biotechnol. 2007 Jun;34(6):423-31. doi: 10.1007/s10295-007-0214-8. Epub 2007 Feb 27.

Abstract

Two Rhodococcus erythropolis isolates, named A66 and A69, together with the well-characterized R. erythropolis strain IGTS8 were compared biochemically and genetically. Both isolates, like strain IGTS8, desulfurized DBT to 2-hydroxybiphenyl (2-HBP), following the 4S pathway of desulfurization. Strain IGTS8 showed the highest (81.5%) desulfurization activity in a medium containing DBT at 30 degrees C. Strain A66 showed approximately the same desulfurization activity either when incubated at 30 degrees C or at 37 degrees C, while strain A69 showed an increase of desulfurization efficiency (up to 79%) when incubated at 37 degrees C. Strains A66 and A69 were also able to grow using various organosulfur or organonitrogen-compounds as the sole sulfur or nitrogen sources. The biological responses of A66, A69 and IGTS8 strains to a series of mutagens and environmental agents were evaluated, trying to mimic actual circumstances involved in exposure/handling of microorganisms during petroleum biorefining. The results showed that strains A69 and IGTS8 were much more resistant to UVC treatment than A66. The three desulfurization genes (dszA, dszB and dszC) present in strains A66 and A69 were partially characterized. They seem to be located on a plasmid, not only in the strain IGTS8, but also in A66 and A69. PCR amplification was observed using specific primers for dsz genes in all the strains tested; however, no amplification product was observed using primers for carbazole (car) or quinoline (qor) metabolisms. All this information contributes to broaden our knowledge concerning both the desulfurization of DBT and the degradation of organonitrogen compounds within the R. erythropolis species.

摘要

对两株名为A66和A69的红平红球菌分离株,以及特征明确的红平红球菌菌株IGTS8进行了生化和基因方面的比较。与菌株IGTS8一样,这两株分离株均按照4S脱硫途径将二苯并噻吩(DBT)脱硫生成2-羟基联苯(2-HBP)。在含有DBT的培养基中,菌株IGTS8在30℃时表现出最高的脱硫活性(81.5%)。菌株A66在30℃或37℃培养时表现出大致相同的脱硫活性,而菌株A69在37℃培养时脱硫效率有所提高(高达79%)。菌株A66和A69也能够利用各种有机硫或有机氮化合物作为唯一的硫源或氮源生长。评估了A66、A69和IGTS8菌株对一系列诱变剂和环境因子的生物学反应,试图模拟石油生物精炼过程中微生物暴露/处理所涉及的实际情况。结果表明,菌株A69和IGTS8比A66对紫外线C处理的耐受性更强。对菌株A66和A69中存在的三个脱硫基因(dszA、dszB和dszC)进行了部分表征。它们似乎位于一个质粒上,不仅在菌株IGTS8中如此,在A66和A69中也是如此。在所测试的所有菌株中,使用dsz基因的特异性引物进行PCR扩增时均观察到扩增;然而,使用咔唑(car)或喹啉(qor)代谢的引物时未观察到扩增产物。所有这些信息有助于拓宽我们对红平红球菌属内DBT脱硫和有机氮化合物降解的认识。

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