Isolation of Keratinolytic from Chicken (Gallus gallus domesticus) Farms and Assessment of their Efficacy in Feathers Degradation

Shazia Bokhari, R. Yasmeen, A. Qurashi, Samiya Habib, U. Rafi
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Abstract

Keratinolytic microorganisms and their enzymes are associated with poultry feather degradation. In the present study feathers of Gallus gallus domesticus (chicken) and surrounding dry soil was collected from a private poultry sheds located in Jahman village near Lahore. Bacteria were isolated by using enrichment techniques and screened for their proteolytic activity on skim agar. Isolated Bacteria were colonially, morphologically and biochemically characterized and named as SNC1, SNC2, SNC3, SNC4, SCH1, SCH2, SCH3 and SCH4. Results showed closed similarity of bacterial isolates with bacillus species. Effect of various media (LB-broth and Nutrient broth), pHs (7 and 8) and temperatures (4, 37, and 50℃) were recorded on bacterial growth and feather degradation. Bacterial cell densities and amount of keratin produced per gram feather weight were high at temperature 50℃ and pH 8.0. The feather degradation by bacterial isolates was confirmed at different time intervals using stereomicroscopes. The protein analysis of G. gallus domesticus feathers showed protein contents of 3.125g/100 ml. It was concluded high temperature and alkaline pH favored keratin production by bacterial consortia. Moreover, the bacterial isolates used in the current study have the potential to degrade poultry feather waste and extracted keratin is found to be promising for further exploitation of poultry waste.
鸡(Gallus Gallus domesticus)农场中角朊蛋白的分离及其对羽毛降解效果的评价
角蛋白分解微生物及其酶与家禽羽毛降解有关。本研究在拉合尔附近Jahman村的一个私人家禽舍收集了家鸡的羽毛和周围的干土。采用富集技术对细菌进行分离,并对其在脱脂琼脂上的蛋白水解活性进行了筛选。经菌落、形态和生化鉴定,分别命名为SNC1、SNC2、SNC3、SNC4、SCH1、SCH2、SCH3和SCH4。结果表明,分离的细菌与芽孢杆菌种类具有密切的相似性。记录了不同培养基(LB-broth和nutrition broth)、ph(7和8)和温度(4、37和50℃)对细菌生长和羽毛降解的影响。在温度50℃、pH 8.0条件下,细菌细胞密度和每克羽毛重量产生的角蛋白量较高。用体视显微镜观察了不同时间间隔细菌对羽毛的降解作用。对家鸡羽毛进行蛋白质分析,蛋白质含量为3.125g/100 ml,认为高温和碱性有利于细菌群体产生角蛋白。此外,本研究中使用的细菌分离株具有降解家禽羽毛废物的潜力,并且发现提取的角蛋白具有进一步开发家禽废物的前景。
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