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Management of enzyme diversity in high-performance cellulolytic cocktails

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    • 바이오플라스틱
      1. 플라스틱
    • 바이오정밀화학
      1. 용매
      2. 화학제품
      3. 연료
    • 화장품용 기능성소재
      1. 계면활성제⁄증점제
    • 의료용 화학소재
      1. 식품첨가제
논문

Management of enzyme diversity in high-performance cellulolytic cocktails

학술지

Biotechnology for biofuels

저자명

Reyes-Sosa, Francisco Manuel; Ló pez Morales, Macarena; Platero Gó mez, Ana Isabel; Valbuena Crespo, Noelia; Sá nchez Zamorano, Laura; Rocha-Martí n, Javier; Molina-Heredia, Fernando P.; Dí ez Garcí a, Bruno

초록

<P><B>Background</B></P><P>Modern biorefineries require enzymatic cocktails of improved efficiency to generate fermentable sugars from lignocellulosic biomass. Cellulolytic fungi, among other microorganisms, have demonstrated the highest potential in terms of enzymatic productivity, complexity and efficiency. On the other hand, under cellulolytic-inducing conditions, they often produce a considerable diversity of carbohydrate-active enzymes which allow them to adapt to changing environmental conditions. However, industrial conditions are fixed and adjusted to the optimum of the whole cocktail, resulting in underperformance of individual enzymes.</P><P><B>Results</B></P><P>One of these cellulolytic cocktails from <I>Myceliophthora thermophila</I> has been analyzed here by means of LC&#x2013;MS/MS. Pure GH6 family members detected have been characterized, confirming previous studies, and added to whole cocktails to compare their contribution in the hydrolysis of industrial substrates. Finally, independent deletions of two GH6 family members, as an example of the enzymatic diversity management, led to the development of a strain producing a more efficient cellulolytic cocktail.</P><P><B>Conclusions</B></P><P>These data indicate that the deletion of noncontributive cellulases (here EG VI) can increase the cellulolytic efficiency of the cocktail, validating the management of cellulase diversity as a strategy to obtain improved fungal cellulolytic cocktails.</P>

발행연도

2017

발행기관

BioMed Central

라이선스

cc-by

ISSN

1754-6834

10

페이지

pp.156

주제어

Enzymatic hydrolysis; Cellulolytic cocktail improvement; Lignocellulosic biomass; Bioethanol

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1 2023-12-11

논문; 2017-06-19

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