Juteau Pierre, Côté Valérie, Duckett Marie-France, Beaudet Réjean, Lépine François, Villemur Richard, Bisaillon Jean-Guy
INRS - Institut Armand-Frappier, Université du Québec, 531 boulevard des Prairies, Laval, Quebec, Canada H7V 1B7.
Int J Syst Evol Microbiol. 2005 Jan;55(Pt 1):245-250. doi: 10.1099/ijs.0.02914-0.
An anaerobic bacterium that transforms phenol and 4-hydroxybenzoate (4-OHB) into benzoate, strain LR7.2T, was isolated from a culture originating from a mixture of swamp water, sewage sludge, swine waste and soil. Cells of strain LR7.2T are Gram-positive short rods (1 x 2 microm) that are electron-dense when observed by electron microscopy. The optimum pH and temperature for growth and transformation activity of 4-OHB are 7.5-8.0 and 30-37 degrees C, respectively. The bacterium does not use sulphate, thiosulphate, nitrate, nitrite, FeCl3, fumarate or arsenate as an electron acceptor. It does not normally use sulphite, although stimulation of growth and 4-OHB transformation activity at a low concentration (up to 2 mM) has been reported previously under different culture conditions. The presence of 4-OHB or phenol is essential for growth; transformation of 4-OHB or phenol into benzoate is used to produce energy for growth. Using [6D]-phenol, 4-OHB was shown to be an intermediate in the transformation of phenol into benzoate. No spore was observed. The bacterium has a DNA G+C content of 51 mol% and its major membrane fatty acid is anteiso-C(15 : 0). The 16S rRNA gene sequence of strain LR7.2T shows only 90 % similarity to its closest relative (Pelotomaculum thermopropionicum). From these results, a new taxon is proposed: Cryptanaerobacter phenolicus gen. nov., sp. nov. The type strain is LR7.2T (=ATCC BAA-820T=DSM 15808T).
从源自沼泽水、污水污泥、猪粪便和土壤混合物的培养物中分离出了一种将苯酚和4-羟基苯甲酸(4-OHB)转化为苯甲酸的厌氧细菌,菌株LR7.2T。LR7.2T菌株的细胞为革兰氏阳性短杆菌(1×2微米),在电子显微镜下观察时电子密度较高。4-OHB生长和转化活性的最适pH值和温度分别为7.5 - 8.0和30 - 37℃。该细菌不使用硫酸盐、硫代硫酸盐、硝酸盐、亚硝酸盐、氯化铁、富马酸盐或砷酸盐作为电子受体。它通常不使用亚硫酸盐,不过先前曾报道在不同培养条件下,低浓度(高达2 mM)的亚硫酸盐可刺激其生长和4-OHB转化活性。4-OHB或苯酚的存在对生长至关重要;将4-OHB或苯酚转化为苯甲酸用于产生生长所需的能量。使用[6D]-苯酚时,4-OHB被证明是苯酚转化为苯甲酸过程中的中间产物。未观察到孢子。该细菌的DNA G + C含量为51 mol%,其主要膜脂肪酸为anteiso-C(15 : 0)。LR7.2T菌株的16S rRNA基因序列与其最接近的亲缘种(嗜热丙酸栖热菌)仅显示出90%的相似性。基于这些结果,提出了一个新的分类单元:酚隐秘厌氧杆菌属,新属,新种。模式菌株为LR7.2T(=ATCC BAA - 820T = DSM 15808T)。