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Transgenic Plant-Produced Hydrolytic Enzymes and the Potential of Insect Gut-Derived Hydrolases for Biofuels

Source Publication
Frontiers in Plant Science
Date Issued
May 31, 2016
Author(s)
Willis, Jonathan D.  
Mazarei, Mitra  
Stewart, C. Neal Jr.  
DOI
10.3389/fpls.2016.00675
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/50524
Abstract

Various perennial C4 grass species have tremendous potential for use as lignocellulosic biofuel feedstocks. Currently available grasses require costly pre-treatment and exogenous hydrolytic enzyme application to break down complex cell wall polymers into sugars that can then be fermented into ethanol. It has long been hypothesized that engineered feedstock production of cell wall degrading (CWD) enzymes would be an efficient production platform for of exogenous hydrolytic enzymes. Most research has focused on plant overexpression of CWD enzyme-coding genes from free-living bacteria and fungi that naturally break down plant cell walls. Recently, it has been found that insect digestive tracts harbor novel sources of lignocellulolytic biocatalysts that might be exploited for biofuel production. These CWD enzyme genes can be located in the insect genomes or in symbiotic microbes. When CWD genes are transformed into plants, negative pleiotropic effects are possible such as unintended cell wall digestion. The use of codon optimization along with organelle and tissue specific targeting improves CWD enzyme yields. The literature teaches several important lessons on strategic deployment of CWD genes in transgenic plants, which is the focus of this review.

Subjects

lignocellulosic

insect cellulase

cell wall degrading (...

biofuel

hydrolase

geneexpression

enzyme targeting

Disciplines
Plant Sciences
Comments

This article was published openly thanks to the University of Tennessee Open Publishing Support Fund.


Licensed under a Creative Commons Attribution 4.0 International license.

Recommended Citation
Willis JD, Mazarei M and Stewart C N Jr. (2016) Transgenic Plant-Produced Hydrolytic Enzymes and the Potential of Insect Gut-Derived Hydrolases for Biofuels. Frontiers in Plant Science 7. doi: 10.3389/fpls.2016.00675
Submission Type
Publisher's Version
File(s)
Thumbnail Image
Name

Neal_Stewart_PlantSci_Transgenic_2016.pdf

Size

444.36 KB

Format

Adobe PDF

Checksum (MD5)

249e3bc419ee3dc0006f42dbe8daf063


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