Second generation biofuel production has been appeared as a sustainable and alternative energy option. The ultimate aim is the development of an industrially feasible and economic conversion process of lignocellulosic biomass into biofuel molecules. Since, cellulose is the most abundant biopolymer and also represented as the photosynthetically fixed form of carbon, the efficient hydrolysis of cellulose is the most important step towards the development of a sustainable biofuel production process. The enzymatic hydrolysis of cellulose by suites of hydrolytic enzymes underlines the importance of cellulase enzyme system in whole hydrolysis process. However, the selection of the suitable cellulolytic enzymes with enhanced activities remains a challenge for the biorefinery industry to obtain efficient enzymatic hydrolysis of biomass. The present review focuses on deciphering the novel and effective cellulases from different environmental niches by unculturable metagenomic approaches. Furthermore, a comprehensive functional aspect of cellulases is also presented and evaluated by assessing the structural and catalytic properties as well as sequence identities and expression patterns. This review summarizes the recent development in metagenomics based approaches for identifying and exploring novel cellulases which open new avenues for their successful application in biorefineries.

译文

第二代生物燃料生产已成为可持续和替代能源的选择。最终目的是开发一种工业上可行且经济地将木质纤维素生物质转化为生物燃料分子的过程。由于纤维素是最丰富的生物聚合物,也表示为光合固定形式的碳,因此纤维素的有效水解是发展可持续生物燃料生产过程的最重要步骤。通过一系列水解酶对纤维素进行酶促水解,突显了纤维素酶酶系统在整个水解过程中的重要性。然而,选择具有增强活性的合适的纤维素分解酶仍然是生物精炼工业获得生物质有效酶水解的挑战。本综述的重点是通过不可培养的宏基因组方法从不同的环境中破译新颖有效的纤维素酶。此外,还通过评估结构和催化特性以及序列同一性和表达模式来介绍和评估纤维素酶的综合功能方面。这篇综述总结了基于宏基因组学的方法在鉴定和探索新的纤维素酶方面的最新发展,为它们在生物精炼中的成功应用开辟了新的途径。

+1
+2
100研值 100研值 ¥99课程
检索文献一次
下载文献一次

去下载>

成功解锁2个技能,为你点赞

《SCI写作十大必备语法》
解决你的SCI语法难题!

技能熟练度+1

视频课《玩转文献检索》
让你成为检索达人!

恭喜完成新手挑战

手机微信扫一扫,添加好友领取

免费领《Endnote文献管理工具+教程》

微信扫码, 免费领取

手机登录

获取验证码
登录