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

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논문

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

학술지

AMB Express

저자명

Thankappan, Sugitha; Kandasamy, Sujatha; Joshi, Beslin; Sorokina, Ksenia N.; Taran, Oxana P.; Uthandi, Sivakumar

초록

<P>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&nbsp;°C), Kalath (~ 50&nbsp;°C) and Vasist (~ 65&nbsp;°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 <I>Bacillus tequilensis (</I>VCB1, VCB2 and VSDB4), and <I>B. licheniformis</I> (KBFB2 and KBFB3). Cellulolytic activity assayed by growth under submerged fermentation showed that <I>B. tequilensis</I> VCB1 had maximum FPA activity (3.38&nbsp;IU&nbsp;ml<SUP>&#x2212;1</SUP>) in 48&nbsp;h, while <I>B. licheniformis</I> KBFB3 excelled for endoglucanase (EGA of 4.81&nbsp;IU&nbsp;ml<SUP>&#x2212;1</SUP> in 24&nbsp;h) and cellobiase (0.71&nbsp;IU&nbsp;ml<SUP>&#x2212;1</SUP> in 48&nbsp;h) activities. Among all the thermophilic biocatalysts evaluated, highest exoglucanase (0.06&nbsp;IU&nbsp;ml<SUP>&#x2212;1</SUP>) activity was observed in <I>B. tequilensis</I> VSDB4 while endoglucanase of <I>B. licheniformis</I> KBFB3 showed optimum specific activity at pH 7 and 70&nbsp;°C. Further, the presence of <I>celS, celB and xlnB</I> 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&nbsp;kDa. The endoglucanase activity of promising strain <I>B. licheniformis</I> KBFB3 was enhanced in the presence of Ca<SUP>2+</SUP>, mercaptoethanol and sodium hypochlorite whereas moderately inhibited by Cu<SUP>2+</SUP>, Zn<SUP>2+</SUP>, urea, SDS and H<SUB>2</SUB>O<SUB>2</SUB>. 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.</P><P><B>Electronic supplementary material</B></P><P>The online version of this article (10.1186/s13568-018-0690-4) contains supplementary material, which is available to authorized users.</P>

발행연도

2018

발행기관

Springer Berlin Heidelberg

라이선스

cc-by

ISSN

2191-0855

8

1

페이지

pp.168

주제어

Glycosyl hydrolases; Thermophilic; Biomass; Hot springs

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논문; 2018-10-15

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