Maltman Chris, Piercey-Normore Michele D, Yurkov Vladimir
Department of Microbiology, University of Manitoba, Winnipeg, MB, Canada.
Extremophiles. 2015 Sep;19(5):1013-9. doi: 10.1007/s00792-015-0776-8. Epub 2015 Aug 9.
The newly discovered strain CM-3, a Gram-negative, rod-shaped bacterium from gold mine tailings of the Central Mine in Nopiming Provincial Park, Canada, is capable of dissimilatory anaerobic reduction of tellurite, tellurate, and selenite. CM-3 possesses very high level resistance to these oxides, both aerobically and anaerobically. During aerobic growth, tellurite and tellurate resistance was up to 1500 and 1000 µg/ml, respectively. In the presence of selenite, growth occurred at the highest concentration tested, 7000 µg/ml. Under anaerobic conditions, resistance was decreased to 800 µg/ml for the Te oxides; however, much like under aerobic conditions, growth with selenite still took place at 7000 µg/ml. In the absence of oxygen, CM-3 couples oxide reduction to an increase in biomass. Following an initial drop in viable cells, due to switching from aerobic to anaerobic conditions, there was an increase in CFU/ml greater than one order of magnitude in the presence of tellurite (6.6 × 10(3)-8.6 × 10(4) CFU/ml), tellurate (4.6 × 10(3)-1.4 × 10(5) CFU/ml), and selenite (2.7 × 10(5)-5.6 × 10(6) CFU/ml). A control culture without metalloid oxides showed a steady decrease in CFU/ml with no recovery. ATP production was also increased in the presence of each oxide, further indicating anaerobic respiration. Partial 16S rRNA gene sequencing revealed a 99.0 % similarity of CM-3 to Pseudomonas reactans.
新发现的菌株CM - 3是一种革兰氏阴性、杆状细菌,从加拿大诺皮明省立公园中央矿的金矿尾矿中分离得到,能够异化厌氧还原亚碲酸盐、碲酸盐和亚硒酸盐。CM - 3对这些氧化物具有非常高的抗性,无论是在需氧还是厌氧条件下。在有氧生长期间,对亚碲酸盐和碲酸盐的抗性分别高达1500和1000μg/ml。在亚硒酸盐存在的情况下,在测试的最高浓度7000μg/ml时仍能生长。在厌氧条件下,对碲氧化物的抗性降至800μg/ml;然而,与有氧条件下非常相似,在7000μg/ml的亚硒酸盐存在下仍能生长。在无氧条件下,CM - 3将氧化物还原与生物量增加耦合。在从有氧条件切换到厌氧条件后,由于活细胞数量最初下降,在亚碲酸盐(6.6×10³ - 8.6×10⁴CFU/ml)、碲酸盐(4.6×10³ - 1.4×10⁵CFU/ml)和亚硒酸盐(2.7×10⁵ - 5.6×10⁶CFU/ml)存在的情况下,CFU/ml增加了一个多数量级。没有类金属氧化物的对照培养物显示CFU/ml稳步下降且没有恢复。在每种氧化物存在的情况下,ATP产量也增加,进一步表明存在厌氧呼吸。16S rRNA基因部分测序显示CM - 3与反应假单胞菌的相似性为99.0%。