马来西亚温泉中用于鸡粪中硫化氢生物除臭的硫氧化细菌的分离与鉴定

M. Hidayat, H. Saud, A. Samsudin
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引用次数: 15

摘要

在本研究中,从马来西亚温泉中分离硫氧化细菌(SOB)是在富集培养基中进行的,使用硫代硫酸钠作为唯一的能量,CO2作为唯一的碳源。从琼脂平板上获得总共80个SOB分离株,由于它们能够使用硫代硫酸盐进行生长,因此被认为是阳性SOB。最初对所有分离株在液体培养基中的快速生长进行了筛选,并选择了13个分离株进行另一个筛选过程。三个SOB分离株,即分离株AH18、AH25和AH28,是基于它们生长更快、产生最高硫酸根离子和降低生长培养基pH的能力而选择的。细胞为革兰氏阴性,呈短杆状。评估了包括温度(25-45°C)、pH(4-9)、硫代硫酸钠浓度(4-100 mM)和代谢特性在内的各种变量对细菌生长及其硫氧化活性的影响。所有潜在菌株的最适pH值均为8.0。同时,AH18、AH25和AH28的最适温度分别为45°C、30°C和30-45°C。这三个分离株被归类为兼性化学养石菌,在高达100mM的硫代硫酸盐浓度下具有生长能力。因此,考虑到硫代硫酸盐的氧化能力、温度和pH的适应性,具有代谢灵活性的分离株AH18、AH25和AH28可能是一个很好的H2S生物除臭候选者。
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Isolation and Characterisation of Sulphur Oxidizing Bacteria Isolated from Hot Spring in Malaysia for Biological Deodorisation of Hydrogen Sulphide in Chicken Manure
In this study, the isolation of sulphur oxidising bacteria (SOB) from hot spring in Malaysia was carried out in an enrichment culture using sodium thiosulphate as a sole energy and CO2 as a sole carbon source. A total number of 80 SOB isolates were obtained from the agar plate and considered as positive SOB due to their abilities using thiosulphate for growth. All the isolates were initially screened for their fast growths in liquid medium and 13 isolates were selected for another screening process. Three SOB isolates namely isolate AH18, AH25, and AH28 were selected based on their abilities to grow faster, produce the highest sulphate ion and reducing the pH in the growth medium. The cells were Gram-negative and short rod-shaped. The effects of various variables including temperature (25-45 °C), pH (4-9), sodium thiosulphate concentrations (4-100 mM) and metabolic characteristic were evaluated on bacterial growth and their sulphur oxidation activities. The optimum pH of all the potential isolates occurred at pH 8.0. Meanwhile, the optimum temperature for isolate AH18, AH25 and AH28 occurred at 45 °C, 30 °C, and 30-45 °C, respectively. The three isolates were classified as facultative chemolithotroph with the capability of growth in thiosulphate concentration as high as 100 mM. Therefore, given the ability in the oxidation of thiosulphate, temperature and pH adaptabilities, with the metabolic flexibilities of isolates AH18, AH25, and AH28 could be a good H2S biological deodorizing candidate.
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