Division of Microbiology, Indian Agricultural Research Institute, New Delhi 110012, India.
Division of Agricultural Chemicals, Indian Agricultural Research Institute, New Delhi 110012, India.
J Environ Manage. 2016 Oct 1;181:728-736. doi: 10.1016/j.jenvman.2016.08.024. Epub 2016 Aug 21.
Microbial degradation is a useful tool to prevent chemical pollution in soil. In the present study, in-situ bioremediation of polyaromatic hydrocarbons (PAHs) by microbial consortium consisting of Serratia marcescens L-11, Streptomyces rochei PAH-13 and Phanerochaete chrysosporium VV-18 has been reported. In preliminary studies, the consortium degraded nearly 60-70% of PAHs in broth within 7 days under controlled conditions. The same consortium was evaluated for its competence under natural conditions by amending the soil with ammonium sulphate, paddy straw and compost. Highest microbial activity in terms of dehydrogenase, FDA hydrolase and aryl esterase was recorded on the 5(th) day. The degradation rate of PAHs significantly increased up to 56-98% within 7 days under in-situ however almost complete dissipation (83.50-100%) was observed on the 30(th) day. Among all the co-substrates evaluated, faster degradation of PAHs was observed in compost amended soil wherein fluorene, anthracene, phenanthrene and pyrene degraded with half-life of 1.71, 4.70, 2.04 and 6.14 days respectively. Different degradation products formed were also identified by GC-MS. Besides traces of parent PAHs eleven non-polar and five polar products were identified by direct and silylation reaction respectively. Various products formed indicated that consortium was capable to degrade PAHs by oxidation to mineralization.
微生物降解是防止土壤化学污染的一种有效手段。本研究报道了由粘质沙雷氏菌 L-11、罗奇氏链霉菌 PAH-13 和黄孢原毛平革菌 VV-18 组成的微生物联合体对多环芳烃 (PAHs) 的原位生物修复。在初步研究中,该联合体在控制条件下的 7 天内,在培养液中降解了近 60-70%的 PAHs。通过向土壤中添加硫酸铵、稻草和堆肥,评估了相同的联合体在自然条件下的能力。以脱氢酶、FDA 水解酶和芳基酯酶的最高微生物活性记录在第 5 天。然而,在原位条件下,PAHs 的降解率在 7 天内显著增加了 56-98%,但在 30 天内几乎完全消散(83.50-100%)。在所评估的所有共底物中,在添加堆肥的土壤中观察到 PAHs 的更快降解,其中芴、蒽、菲和芘的半衰期分别为 1.71、4.70、2.04 和 6.14 天。还通过 GC-MS 鉴定了形成的不同降解产物。除了痕量的母体 PAHs 外,还通过直接和硅烷化反应分别鉴定了十一种非极性和五种极性产物。形成的各种产物表明联合体能够通过氧化作用将 PAHs 降解为矿化。