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Bacterial succession on raw buffalo hide and their degradative activities during ambient storage

机译:水牛生皮的细菌继承及其在环境储存期间的降解活动

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摘要

Inception of microbiology in leather industry was with reference to tanning processes where major concern was finished product bacteriology. Present investigation aims to study the bacteriology of unprocessed raw material, buffalo hide in particular using culture based and culture independent approach. Denaturing gradient gel electrophoresis (DGGE) analysis of the stored hide at different time intervals was done to study temporal successional shifts in the bacterial community. Considering the protein and fat content of hide, proteolytic and lipolytic bacteria were isolated and identified as major degradative flora. The degradative nature of individual isolate was confirmed through in vitro and in vivo investigations as collagenase production and ability to deteriorate raw hide to release amino acids and free fatty acids, respectively. Furthermore, the histological analysis of bacterially spiked raw hides was done as aid to the conclusions drawn. It was found that the temporal bacterial successional shifts occurring on ambient stored raw buffalo hide could be better understood using DGGE. Isolated and characterized degradative flora could be used as test organisms to discover new preservatives and to assess the process of preservation. Even though the process of degradation is very complex, the culture based and culture independent analysis of degradative microflora is comprehensive.
机译:皮革工业中微生物学的起源与鞣制过程有关,而鞣制过程主要关注的是成品细菌学。目前的调查旨在研究未经加工的原材料,尤其是水牛皮革的细菌学,采用基于文化和独立于文化的方法。对存储的生皮在不同时间间隔的变性梯度凝胶电泳(DGGE)分析进行了研究,以研究细菌群落中的时间顺序变化。考虑到皮革的蛋白质和脂肪含量,分离了蛋白水解和脂解细菌,并将其鉴定为主要降解菌群。通过体外和体内研究确认了单个分离物的降解性质,即胶原酶的产生和降解生皮分别释放氨基酸和游离脂肪酸的能力。此外,还对细菌加标的生皮进行了组织学分析,以帮助得出结论。已经发现,使用DGGE可以更好地理解在周围储存的原始水牛皮的时间细菌的连续移位。分离和表征的降解菌群可用作测试生物,以发现新的防腐剂并评估保存过程。即使降解过程非常复杂,降解菌群的基于培养和独立于培养的分析也是全面的。

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