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Diversity and effectiveness of tropical mangrove soil microflora on the degradation of polythene carry bags

机译:热带红树林土壤微生物群落对聚乙烯手提袋降解的多样性和有效性

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The diversity and load of heterotrophic bacteria and fungi associated with the mangrove soil from Suva, Fiji Islands, was determined by using the plate count method. The ability of the bacterial isolates to produce various hydrolytic enzymes such as amylase, gelatinase and lipase were determined using the plate assay. The heterotrophic bacterial load was considerably higher than the fungal load. There was a predominance of the gram positive genus, Bacillus. Other genera encountered included Staphylococcus, Micrococcus, Listeria and Vibrio. Their effectiveness on the degradation of commercial polythene carry bags made of high density polyethylene (HDPE) and low density polyethylene (LDPE) was studied over a period of eight weeks in the laboratory. Biodegradation was measured in terms of mean weight loss, which was nearly 5 % after a period of eight weeks. There was a significant increase in the bacterial load of the soil attached to class 2 (HDPE) polythene. After eight weeks of submergence in mangrove soil, soil attached to class 1 and class 3 polythene mostly had Bacillus (Staphylococcus predominated in class 2 polythene). While most of the isolates were capable of producing hydrolytic enzymes such as amylase and gelatinase, lipolytic activity was low. Class 2 HDPE suffered the greatest biodegradation. Rev. Biol. Trop. 55 (3-4): 777-786. Epub 2007 December, 28.
机译:使用平板计数法测定了来自斐济苏瓦红树林​​土壤的异养细菌和真菌的多样性和负荷。使用平板测定法确定细菌分离物产生各种水解酶如淀粉酶,明胶酶和脂肪酶的能力。异养细菌载量明显高于真菌载量。革兰氏阳性菌占多数。遇到的其他属包括葡萄球菌,微球菌,李斯特菌和弧菌。在实验室进行了八周的研究,研究了它们对降解由高密度聚乙烯(HDPE)和低密度聚乙烯(LDPE)制成的商用聚乙烯手提袋的有效性。根据平均体重减轻来衡量生物降解,平均体重减轻在八周后接近5%。附着在2类(HDPE)聚乙烯上的土壤细菌负荷显着增加。在红树林土壤中浸没八个星期后,附着在1类和3类聚乙烯上的土壤大多数含有芽孢杆菌(葡萄球菌在2类聚乙烯中占主导)。尽管大多数分离物能够产生水解酶,例如淀粉酶和明胶酶,但脂解活性却很低。 2类高密度聚乙烯遭受最大的生物降解。 Rev.Biol。放下55(3-4):777-786。 Epub 2007年12月,28日。

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