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Field performance of switchgrass plants engineered for reduced recalcitrance

Journal Article · · Frontiers in Plant Science

Switchgrass ( Panicum virgatum L.) is a promising perennial bioenergy crop that achieves high yields with relatively low nutrient and energy inputs. Modification of cell wall composition for reduced recalcitrance can lower the costs of deconstructing biomass to fermentable sugars and other intermediates. We have engineered overexpression of OsAT10 , encoding a rice BAHD acyltransferase and QsuB , encoding dehydroshikimate dehydratase from Corynebacterium glutamicum , to enhance saccharification efficiency in switchgrass. These engineering strategies demonstrated low lignin content, low ferulic acid esters, and increased saccharification yield during greenhouse studies in switchgrass and other plant species. In this work, transgenic switchgrass plants overexpressing either OsAT10 or QsuB were tested in the field in Davis, California, USA for three growing seasons. No significant differences in the content of lignin and cell wall-bound p -coumaric acid or ferulic acid were detected in transgenic OsAT10 lines compared with the untransformed Alamo control variety. However, the transgenic overexpressing QsuB lines had increased biomass yield and slightly increased biomass saccharification properties compared to the control plants. This work demonstrates good performance of engineered plants in the field, and also shows that the cell wall changes in the greenhouse were not replicated in the field, emphasizing the need to validate engineered plants under relevant field conditions.

Sponsoring Organization:
USDOE
OSTI ID:
1975902
Alternate ID(s):
OSTI ID: 1994309
Journal Information:
Frontiers in Plant Science, Journal Name: Frontiers in Plant Science Vol. 14; ISSN 1664-462X
Publisher:
Frontiers Media SACopyright Statement
Country of Publication:
Switzerland
Language:
English

References (21)

Switchgrass for forage and bioenergy: harvest and nitrogen rate effects on biomass yields and nutrient composition journal April 2010
Switchgrass as a sustainable bioenergy crop journal April 1996
Conversion of depolymerized sugars and aromatics from engineered feedstocks by two oleaginous red yeasts journal August 2019
Lignin engineering in forest trees: From gene discovery to field trials journal November 2022
In-planta production of the biodegradable polyester precursor 2-pyrone-4,6-dicarboxylic acid (PDC): Stacking reduced biomass recalcitrance with value-added co-product journal July 2021
Use of Dinitrosalicylic Acid Reagent for Determination of Reducing Sugar journal March 1959
Expression of Dehydroshikimate Dehydratase in Sorghum Improves Biomass Yield, Accumulation of Protocatechuate, and Biorefinery Economics journal September 2022
Approaches for More Efficient Biological Conversion of Lignocellulosic Feedstocks to Biofuels and Bioproducts journal April 2019
Lignin modification improves fermentable sugar yields for biofuel production journal June 2007
4-Coumarate 3-hydroxylase in the lignin biosynthesis pathway is a cytosolic ascorbate peroxidase journal April 2019
Phenolic cross-links: building and de-constructing the plant cell wall journal January 2020
Overexpression of a BAHD Acyltransferase, OsAt10 , Alters Rice Cell Wall Hydroxycinnamic Acid Content and Saccharification journal February 2013
Biosynthesis and incorporation of side-chain-truncated lignin monomers to reduce lignin polymerization and enhance saccharification: Reduction in lignin DP enhances saccharification journal March 2012
A new approach to zip‐lignin: 3,4‐dihydroxybenzoate is compatible with lignification journal May 2022
Expression of a bacterial 3-dehydroshikimate dehydratase reduces lignin content and improves biomass saccharification efficiency journal January 2015
Expression of a bacterial 3-dehydroshikimate dehydratase (QsuB) reduces lignin and improves biomass saccharification efficiency in switchgrass (Panicum virgatum L.) journal January 2021
Overexpression of a rice BAHD acyltransferase gene in switchgrass (Panicum virgatum L.) enhances saccharification journal September 2018
Development and use of a switchgrass (Panicum virgatum L.) transformation pipeline by the BioEnergy Science Center to evaluate plants for reduced cell wall recalcitrance journal December 2017
Increased drought tolerance in plants engineered for low lignin and low xylan content journal July 2018
Overexpression of the rice BAHD acyltransferase AT10 increases xylan-bound p-coumarate and reduces lignin in Sorghum bicolor journal November 2021
Cell Wall Compositions of Sorghum bicolor Leaves and Roots Remain Relatively Constant Under Drought Conditions journal November 2021

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