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Bioprospecting thermophilic glycosyl hydrolases from hot springs of Himachal Pradesh for biomass valorization

机译:来自喜马al尔邦温泉的生物勘探嗜热糖基水解酶的生物利用价值评估

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摘要

The harnessing of biocatalysts from extreme environment hot spring niche for biomass conversion is significant and promising owing to the special characteristics of extremozymes attributed by intriguing biogeochemistry and extreme conditions of these environments. Hence, in the present study 38 bacterial isolates obtained from hot springs of Manikaran (~ 95 °C), Kalath (~ 50 °C) and Vasist (~ 65 °C) of Himachal Pradesh were screened for glycosyl hydrolases by in situ enrichment technique using lignocellulosic biomass (LCB). Based on their hydrolytic potential 5 isolates were selected and they were Bacillus tequilensis (VCB1, VCB2 and VSDB4), and B. licheniformis (KBFB2 and KBFB3). Cellulolytic activity assayed by growth under submerged fermentation showed that B. tequilensis VCB1 had maximum FPA activity (3.38 IU ml−1) in 48 h, while B. licheniformis KBFB3 excelled for endoglucanase (EGA of 4.81 IU ml−1 in 24 h) and cellobiase (0.71 IU ml−1 in 48 h) activities. Among all the thermophilic biocatalysts evaluated, highest exoglucanase (0.06 IU ml−1) activity was observed in B. tequilensis VSDB4 while endoglucanase of B. licheniformis KBFB3 showed optimum specific activity at pH 7 and 70 °C. Further, the presence of celS, celB and xlnB genes in the isolates suggest their possible role in biomass conversion. Protein profiling by SDS-PAGE analysis revealed that cellulase isoforms migrated with molecular masses of 75 kDa. The endoglucanase activity of promising strain B. licheniformis KBFB3 was enhanced in the presence of Ca2+, mercaptoethanol and sodium hypochlorite whereas moderately inhibited by Cu2+, Zn2+, urea, SDS and H2O2. The results of this study indicate scope for the possible development of novel biocatalysts with multifunctional thermostable glycosyl hydrolases from hot springs for efficient hydrolysis of the complex lignocellulosic biomass into simple sugars and other derived bioproducts leading to biomass valorization.Electronic supplementary materialThe online version of this article (10.1186/s13568-018-0690-4) contains supplementary material, which is available to authorized users.
机译:由于令人着迷的生物地球化学和这些环境的极端条件而导致的极端酶的特殊特性,利用极端环境温泉小生境中的生物催化剂进行生物质转化具有重要意义和前景。因此,在本研究中,通过原位富集技术从喜马al尔邦的Manikaran(〜95°C),Kalath(〜50°C)和Vasist(〜65°C)温泉中获得了38种细菌分离物,以筛选糖基水解酶。使用木质纤维素生物质(LCB)。基于它们的水解潜力,选择了5种分离株,它们是tequilensis芽孢杆菌(VCB1,VCB2和VSDB4)和地衣芽孢杆菌(KBFB2和KBFB3)。通过深层发酵生长测定的纤维素分解活性表明,tequilensis VCB1在48小时内具有最大的FPA活性(3.38IU ml -1 ),而地衣芽孢杆菌KBFB3的内切葡聚糖酶表现出色(EGA为4.81IU ml 24小时内 -1 )和纤维二糖酶(48小时内0.71IU ml -1 )活动。在所有评估的嗜热生物催化剂中,tequilensis VSDB4观察到最高的葡聚糖酶(0.06IU ml -1 )活性,而地衣芽孢杆菌KBFB3的内切葡聚糖酶在pH 7和70°C下显示最佳比活性。此外,分离物中celS,celB和xlnB基因的存在表明它们可能在生物质转化中发挥作用。通过SDS-PAGE分析进行的蛋白质分析显示,纤维素酶同工型以75 kDa的分子量迁移。 Ca 2 + ,巯基乙醇和次氯酸钠的存在增强了有前景的地衣芽孢杆菌KBFB3的内切葡聚糖酶活性,而Cu 2 + ,Zn 有中等抑制作用2 + ,尿素,SDS和H2O2。这项研究的结果表明,从温泉中开发具有多功能热稳定糖基水解酶的新型生物催化剂的可能性,以将复杂的木质纤维素生物质有效水解为单糖和其他衍生的生物产物,从而导致生物质增值。电子补充材料(10.1186 / s13568-018-0690-4)包含补充材料,授权用户可以使用。

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