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Diversity of Polyester Degrading Bacteria in Surface Sediments from Yangtze River Estuary

机译:长江口表面沉积物中聚酯降解细菌的多样性

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In order to preliminarily understand the diversity of degradable polyester-synthesizing strains in the adjacent waters of the Yangtze Estuary, solid media containing polycaprolactone (PCL) and tributyrin were used to screen strains with PCL and Tributyrin-degrading activity from the surface sediments of the adjacent waters of the Yangtze Estuary at different times by transparent circle method. In this study, 480 strains with PCL or Tributyrin degradation activity were obtained, of which 445 strains could simultaneously degrade PCL and Tributyrin, only 34 strains could degrade Tributyrin, only 1 strain could degrade PCL, accounting for 92.71%, 7.08% and 0.22% of the total number of strains, respectively. Classification studies showed that these strains belonged to 50 species of 14 genera. The dominant strains of degradable PCL and Tributyrin obtained in February, May, July and September were Psychrobacter, Bacillus, Vibrio and Vibrio, respectively. Vibrio appeared in May, July and September, especially in July. Diversity index analysis showed that the biodiversity of synthetic polyester-degrading bacteria in surface sediments of the Yangtze Estuary was higher than that of PCL-degrading bacteria in May > February > September > July, and that of Tributyrin-degrading bacteria was higher than that of PCL-degrading bacteria. The results show that PCL and Tributyrin degrading bacteria are abundant in the surface sediments of the Yangtze Estuary and play an important role in plastic biodegradation in this area.
机译:为了预先了解长江口的邻近水域降解聚酯-合成菌株的多样性,含有聚己酸内酯(PCL)和三丁酸甘油酯固体培养基用于与PCL和三丁酸甘油酯降解活性屏幕菌株从相邻的表面沉积物长江口水域在由透明圈的方法不同的时间。在这项研究中,获得480株PCL或三丁酸甘油酯的降解活性,其中445株可以同时降解PCL和三丁酸甘油酯,只有34株可以降解三丁酸甘油酯,只有1株可降解PCL,占92.71%,7.08%和0.22%的分别菌株的总数量。分类的研究表明,这些菌株属于50种14属。在二月,五月,七月和九月获得降解PCL和三丁酸甘油酯的优势菌株分别为嗜冷,芽孢杆菌,弧菌和副。弧菌出现在五月,七月,九月,尤其是在七月。多样性指数分析表明,在长江口的表面沉积物合成聚酯降解细菌的生物多样性比,5 PCL-降解菌的更高>二月>九月>三丁酸甘油酯降解菌的七月,这比的更高PCL分解细菌。结果表明,PCL和三丁酸甘油酯降解菌是在长江口表层沉积物丰富,在这方面发挥生物降解塑料具有重要作用。

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