Javascript must be enabled to continue!
Identification and characterization of a set of monocot BAHD monolignol transferases
View through CrossRef
Abstract
Plant BAHD acyltransferases perform a wide range of enzymatic tasks in primary and secondary metabolism. Acyl-CoA monolignol transferases, which couple a CoA substrate to a monolignol creating an ester linkage, represent a more recent class of such acyltransferases. The resulting conjugates may be used for plant defense but are also deployed as important “monomers” for lignification, in which they are incorporated into the growing lignin polymer chain. p-Coumaroyl-CoA monolignol transferases (PMTs) increase the production of monolignol p-coumarates, and feruloyl-CoA monolignol transferases (FMTs) catalyze the production of monolignol ferulate conjugates. We identified putative FMT and PMT enzymes in sorghum (Sorghum bicolor) and switchgrass (Panicum virgatum) and have compared their activities to those of known monolignol transferases. The putative FMT enzymes produced both monolignol ferulate and monolignol p-coumarate conjugates, whereas the putative PMT enzymes produced monolignol p-coumarate conjugates. Enzyme activity measurements revealed that the putative FMT enzymes are not as efficient as the rice (Oryza sativa) control OsFMT enzyme under the conditions tested, but the SbPMT enzyme is as active as the control OsPMT enzyme. These putative FMTs and PMTs were transformed into Arabidopsis (Arabidopsis thaliana) to test their activities and abilities to biosynthesize monolignol conjugates for lignification in planta. The presence of ferulates and p-coumarates on the lignin of these transformants indicated that the putative FMTs and PMTs act as functional feruloyl-CoA and p-coumaroyl-CoA monolignol transferases within plants.
Oxford University Press (OUP)
Title: Identification and characterization of a set of monocot BAHD monolignol transferases
Description:
Abstract
Plant BAHD acyltransferases perform a wide range of enzymatic tasks in primary and secondary metabolism.
Acyl-CoA monolignol transferases, which couple a CoA substrate to a monolignol creating an ester linkage, represent a more recent class of such acyltransferases.
The resulting conjugates may be used for plant defense but are also deployed as important “monomers” for lignification, in which they are incorporated into the growing lignin polymer chain.
p-Coumaroyl-CoA monolignol transferases (PMTs) increase the production of monolignol p-coumarates, and feruloyl-CoA monolignol transferases (FMTs) catalyze the production of monolignol ferulate conjugates.
We identified putative FMT and PMT enzymes in sorghum (Sorghum bicolor) and switchgrass (Panicum virgatum) and have compared their activities to those of known monolignol transferases.
The putative FMT enzymes produced both monolignol ferulate and monolignol p-coumarate conjugates, whereas the putative PMT enzymes produced monolignol p-coumarate conjugates.
Enzyme activity measurements revealed that the putative FMT enzymes are not as efficient as the rice (Oryza sativa) control OsFMT enzyme under the conditions tested, but the SbPMT enzyme is as active as the control OsPMT enzyme.
These putative FMTs and PMTs were transformed into Arabidopsis (Arabidopsis thaliana) to test their activities and abilities to biosynthesize monolignol conjugates for lignification in planta.
The presence of ferulates and p-coumarates on the lignin of these transformants indicated that the putative FMTs and PMTs act as functional feruloyl-CoA and p-coumaroyl-CoA monolignol transferases within plants.
Related Results
Genome Size Dynamics and Evolution in Monocots
Genome Size Dynamics and Evolution in Monocots
Monocot genomic diversity includes striking variation at many levels. This paper compares various genomic characters (e.g., range of chromosome numbers and ploidy levels, occurrenc...
Early Events in Monocot Evolution
Early Events in Monocot Evolution
Tracing the evolution of one of the most ancient major branches of flowering plants, this is a wide-ranging survey of state-of-the-art research on the early clades of the monocot p...
Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Biosurfactants are natural substances produced by several bacterial and fungal organisms that are amphiphilic and are extracellular (a part of the cell membrane). Biosurfactants ca...
An Overview of Biosensors Based on Glutathione Transferases and for the Detection of Glutathione
An Overview of Biosensors Based on Glutathione Transferases and for the Detection of Glutathione
AbstractGlutathione transferases are enzymes involved in the detoxification against xenobiotics and noxious compounds. These enzymes catalyse a variety of reactions on many physiol...
De-identifying government datasets:
De-identifying government datasets:
De-identification is a general term for any process of removing the association between a set of identifying data and the data subject. This document describes the use of de-identi...
Designer grass pea for transgene-free minimal neurotoxin-containing seeds with CRISPR-Cas9
Designer grass pea for transgene-free minimal neurotoxin-containing seeds with CRISPR-Cas9
Abstract
Grass pea seeds are consumed as food in several South Asian and Sub-Saharan African nations. However, the presence of the neurotoxic com...
Machine learning techniques for forensic camera model identification and anti-forensic attacks
Machine learning techniques for forensic camera model identification and anti-forensic attacks
The goal of camera model identification is to determine the manufacturer and model of an image's source camera. Camera model identification is an important task in multimedia foren...
Lignin Biosynthesis
Lignin Biosynthesis
The lignin biosynthetic pathway has been studied for more than a century but has undergone major revisions over the past decade. Significant progress has been made in cloning new g...

