Biomass Converting Enzymes as Industrial Biocatalysts for Fuels and Chemicals: Recent Developments
نویسندگان
چکیده
The economic utilization of abundant lignocellulosic biomass as a feedstock for the production of fuel and chemicals would represent a profound shift in industrial carbon utilization, allowing sustainable resources to substitute for, and compete with, petroleum based products. In order to exploit biomass as a source material for production of renewable compounds, it must first be broken down into constituent compounds, such as sugars, that can be more easily converted in chemical and biological processes. Lignocellulose is, unfortunately, a heterogeneous and recalcitrant material which is highly resistant to depolymerization. Many microorganisms have evolved repertoires of enzyme activities which act in tandem to decompose the various components of lignocellulosic biomass. In this review, we discuss recent advances in the understanding of these enzymes, with particular regard to those activities deemed likely to be applicable in commercialized biomass utilization processes.
منابع مشابه
Microbial conversion of sugars from plant biomass to lactic acid or ethanol.
Concerns for our environment and unease with our dependence on foreign oil have renewed interest in converting plant biomass into fuels and 'green' chemicals. The volume of plant matter available makes lignocellulose conversion desirable, although no single isolated organism has been shown to depolymerize lignocellulose and efficiently metabolize the resulting sugars into a specific product. Th...
متن کاملBiocatalyst development by directed evolution.
Biocatalysis has emerged as a great addition to traditional chemical processes for production of bulk chemicals and pharmaceuticals. To overcome the limitations of naturally occurring enzymes, directed evolution has become the most important tool for improving critical traits of biocatalysts such as thermostability, activity, selectivity, and tolerance towards organic solvents for industrial ap...
متن کاملSolid-Phase Methods and Instrumentation for Screening Libraries of Enzyme Variants
E nzymes and other biocatalysts are increasingly important tools for synthesizing pharmaceuticals, improving diagnostic assays, enhancing efficiency of industrial processes, manufacturing biopolymers, accelerating bioremediation, and converting biomass to useful products and fuels. Although a variety of enzymes are available as reaction catalysts, their performance is often less than optimal fo...
متن کاملMetabolic Engineering for Production of Biorenewable Fuels and Chemicals: Contributions of Synthetic Biology
Production of fuels and chemicals through microbial fermentation of plant material is a desirable alternative to petrochemical-based production. Fermentative production of biorenewable fuels and chemicals requires the engineering of biocatalysts that can quickly and efficiently convert sugars to target products at a cost that is competitive with existing petrochemical-based processes. It is als...
متن کاملCyanobacteria: Promising biocatalysts for sustainable chemical production.
Cyanobacteria are photosynthetic prokaryotes showing great promise as biocatalysts for the direct conversion of CO2 into fuels, chemicals, and other value-added products. Introduction of just a few heterologous genes can endow cyanobacteria with the ability to transform specific central metabolites into many end products. Recent engineering efforts have centered around harnessing the potential ...
متن کامل