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Journal ArticleDOI

Chitinases: in agriculture and human healthcare

TLDR
This review covers the recent advances of chitinases as a biocontrol agent and its various applications including preparation of medically important chitooligosaccharides, bioconversion of Chitin as well as in implementing chit inases as diagnostic and prognostic markers for numerous diseases and the prospect of their future utilization.
Abstract
Biological control of phytopathogenic fungi and insects continues to inspire the research and development of environmentally friendly bioactive alternatives. Potentially lytic enzymes, chitinases can act as a biocontrol agent against agriculturally important fungi and insects. The cell wall in fungi and protective covers, i.e. cuticle in insects shares a key structural polymer, chitin, a β-1,4-linked N-acetylglucosamine polymer. Therefore, it is advantageous to develop a common biocontrol agent against both of these groups. As chitin is absent in plants and mammals, targeting its metabolism will signify an eco-friendly strategy for the control of agriculturally important fungi and insects but is innocuous to mammals, plants, beneficial insects and other organisms. In addition, development of chitinase transgenic plant varieties probably holds the most promising method for augmenting agricultural crop protection and productivity, when properly integrated into traditional systems. Recently, human proteins with chitinase activity and chitinase-like proteins were identified and established as biomarkers for human diseases. This review covers the recent advances of chitinases as a biocontrol agent and its various applications including preparation of medically important chitooligosaccharides, bioconversion of chitin as well as in implementing chitinases as diagnostic and prognostic markers for numerous diseases and the prospect of their future utilization.

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Citations
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Journal ArticleDOI

Biocontrol Yeasts: Mechanisms and Applications

TL;DR: Yeasts represent a largely unexplored field of research and plentiful opportunities for the development of commercial, yeast-based applications for plant protection exist, but the scarcity of fundamental studies on yeast biocontrol mechanisms and of registered yeast- based biocOntrol products is highlighted.
Journal ArticleDOI

Chitinases from Bacteria to Human: Properties, Applications, and Future Perspectives

TL;DR: A review on properties and applications of chitinases starting from bacteria, followed by fungi, insects, plants, and vertebrates is presented in this paper, where a rational approach for improved catalytic activity for cost-effective field applications has also been explored.
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Antifungal Agents in Agriculture: Friends and Foes of Public Health

TL;DR: In this article, the authors discuss the use of antifungal agents in agriculture worldwide, the need to develop new ant-agents, and improvement of regulations regarding ant-drug use.
Journal ArticleDOI

Chitinase-producing bacteria and their role in biocontrol

TL;DR: Chitinolytic microorganisms are likely to play an important role as biocontrol agents and pathogen antagonists and may also function in the control of postharvest rot.
Journal ArticleDOI

Chitinases—Potential Candidates for Enhanced Plant Resistance towards Fungal Pathogens

TL;DR: Chitinases in combination with recombinant technology can be a promising tool for improving plant resistance to fungal diseases.
References
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Journal ArticleDOI

Transgenic Tobacco Plants Overexpressing Chitinases of Fungal Origin Show Enhanced Resistance to Biotic and Abiotic Stress Agents

TL;DR: Transgenic tobacco lines that overexpress the endochitinases CHIT33 and CHIT42 from the mycoparasitic fungus Trichoderma harzianum conferred broad resistance to fungal and bacterial pathogens, salinity, and heavy metals.
Journal ArticleDOI

Chitinases of filamentous fungi: a large group of diverse proteins with multiple physiological functions

TL;DR: The variety, domain architecture and subgroups of chitinases of filamentous fungi are shown, and how these data integrate with that from molecular biological studies on chit inases are discussed.
Journal ArticleDOI

Chitinase production by Streptomyces viridificans: its potential in fungal cell wall lysis.

TL;DR: Among various divalent cations Mn2+ and Hg2+ completely inhibited the purified enzyme while beta-mercaptoethanol stimulated its activity, which had potential for cell wall lysis of many fungal pathogens tested.
Journal ArticleDOI

Chitinase system of Bacillus circulans WL-12 and importance of chitinase A1 in chitin degradation.

TL;DR: It was concluded that chitinase A1 is the key enzyme in the chit inase system of this bacterium.
Journal ArticleDOI

Expression of Endochitinase from Trichoderma harzianum in Transgenic Apple Increases Resistance to Apple Scab and Reduces Vigor.

TL;DR: There was a significant negative correlation between the level of endochitinase production and both the amount of disease and plant growth of apple by transformation with genes encoding chitinolytic enzymes from the bio-control organism Trichoderma harzianum.
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