Microbial xylanases and their industrial application in pulp and paper biobleaching: a review

Микробные ксиланазы и их промышленное применение в биологическом отбеливании целлюлозы и бумаги: обзор
Abhishek Walia, Shiwani Guleria, Preeti Mehta, Anjali Chauhan, Jyoti Parkash
2017-04-08

Response Surface Methodologycellulase-free xylanasesmicrobial xylanasespulp biobleachingxylan degradation
Xylanases are hydrolytic enzymes which cleave the β-1, 4 backbone of the complex plant cell wall polysaccharide xylan. Xylan is the major hemicellulosic constituent found in soft and hard food. It is the next most abundant renewable polysaccharide after cellulose. Xylanases and associated debranching enzymes produced by a variety of microorganisms including bacteria, actinomycetes, yeast and fungi bring hydrolysis of hemicelluloses. Despite thorough knowledge of microbial xylanolytic systems, further studies are required to achieve a complete understanding of the mechanism of xylan degradation by xylanases produced by microorganisms and their promising use in pulp biobleaching. Cellulase-free xylanases are important in pulp biobleaching as alternatives to the use of toxic chlorinated compounds because of the environmental hazards and diseases caused by the release of the adsorbable organic halogens. In this review, we have focused on the studies of structural composition of xylan in plants, their classification, sources of xylanases, extremophilic xylanases, modes of fermentation for the production of xylanases, factors affecting xylanase production, statistical approaches such as Plackett Burman, Response Surface Methodology to enhance xylanase production, purification, characterization, molecular cloning and expression. Besides this, review has focused on the microbial enzyme complex involved in the complete breakdown of xylan and the studies on xylanase regulation and their potential industrial applications with special reference to pulp biobleaching, which is directly related to increasing pulp brightness and reduction in environmental pollution.
1
Applying optimized fermentation, statistical design methods, purification, characterization, cloning, and expression strategies can enhance xylanase production and industrial utility.
2
Cellulase-free xylanases offer an environmentally preferable alternative to chlorinated compounds in pulp biobleaching by reducing adsorbable organic halogen formation.
3
In pulp biobleaching, microbial xylanases can increase pulp brightness while reducing environmental pollution, although mechanisms of microbial xylan degradation require further study.
4
Microbial xylanases hydrolyze the β-1,4 backbone of xylan, a highly abundant plant hemicellulose, with assistance from debranching enzymes.
5
Xylanases and associated enzymes from bacteria, actinomycetes, yeasts, and fungi contribute to the complete degradation of hemicellulose.

Microbial xylanases used in pulp and paper biobleaching

The enzymatic degradation of xylan and the production, properties, regulation, and biobleaching performance of microbial xylanases, including their effects on pulp brightness and environmental pollution

Publication Details
Publication Date
2017-04-08
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Abhishek Walia
Shiwani Guleria
Preeti Mehta
Anjali Chauhan
Jyoti Parkash
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%