Chettri Dixita, Verma Ashwani Kumar, Verma Anil Kumar
Department of Microbiology, Sikkim University, India.
Biotechnol Rep (Amst). 2020 Sep 1;28:e00525. doi: 10.1016/j.btre.2020.e00525. eCollection 2020 Dec.
For sustainable growth, concept of biorefineries as recourse to the "fossil derived" energy source is important. Here, the Carbohydrate Active enZymes (CAZymes) play decisive role in generation of biofuels and related sugar-based products utilizing lignocellulose as a carbon source. Given their industrial significance, extensive studies on the evolution of CAZymes have been carried out. Various bacterial and fungal organisms have been scrutinized for the development of CAZymes, where advance techniques for strain enhancement such as CRISPR and analysis of specific expression systems have been deployed. Specific Omic-based techniques along with protein engineering have been adopted to unearth novel CAZymes and improve applicability of existing enzymes. computational research and functional annotation of new CAZymes to synergy experiments are being carried out to devise cocktails of enzymes for use in biorefineries. Thus, with the establishment of these technologies, increased diversity of CAZymes with broad span of functions and applications is seen.
对于可持续发展,生物精炼厂作为“化石衍生”能源来源的概念很重要。在此,碳水化合物活性酶(CAZymes)在利用木质纤维素作为碳源生产生物燃料和相关糖基产品的过程中起着决定性作用。鉴于其工业重要性,人们对CAZymes的进化进行了广泛研究。为了开发CAZymes,对各种细菌和真菌生物体进行了仔细研究,其中采用了诸如CRISPR等先进的菌株改良技术以及特定表达系统的分析方法。已采用基于特定组学的技术以及蛋白质工程来挖掘新型CAZymes并提高现有酶的适用性。正在进行新CAZymes的计算研究和功能注释以及协同实验,以设计用于生物精炼厂的酶混合物。因此,随着这些技术的建立,人们看到了具有广泛功能和应用的CAZymes多样性增加。