The increasing focus on plantation forestry as a renewable source of cellulosic biomass has emphasized the need for tools to study the unique biology of woody genera such as Eucalyptus, Populus and Pinus. The domestication of these woody crops is hampered by long generation times, and breeders are now looking to molecular approaches such as marker-assisted breeding and genetic modification to accelerate tree improvement. Much of what is known about genes involved in the growth and development of plants has come from studies of herbaceous models such as Arabidopsis and rice. However, transferring this information to woody plants often proves difficult, especially for genes expressed in woody stems. Here we report the use of induced somatic s...
Based on elegant molecular genetic analyses, distinct classes of cellulose synthase (CesA) genes hav...
To secure a sustainable energy source for the future, we need to develop an alternative to fossil fu...
To secure a sustainable energy source for the future, we need to develop an alternative to fossil fu...
Trees constitute the majority of lignocellulosic biomass existing on our planet. Trees also serve as...
The secondary cell walls of woody plant species are a major source of cellulose. This biopolymer is ...
Cellulose is a highly abundant biopolymer which forms the basis of several industrial applications i...
Genetic manipulation of cellulose synthase genes (CesA) might be expected to increase cellulose cont...
Cellulose is the world’s most abundant renewable energy resource, and a variety of cellulose synthas...
Acetyl‐ and methylglucuronic acid decorations of xylan, the dominant hemicellulose in secondary cell...
Genetic improvement of cellulose production in commercially important trees is one of the formidable...
Recent molecular genetic data suggest that cellulose synthase (CesA) genes coding for the enzymes th...
Genetic improvement of cellulose biosynthesis in woody trees is one of the major goals of tree biote...
Genetic improvement of cellulose biosynthesis in woody trees is one of the major goals of tree biote...
The quality and quantity of cellulose deposited in the primary and secondary cell walls of plants va...
Cellulose is an essential structural component of the plant cell wall. Its biosynthesis involves gen...
Based on elegant molecular genetic analyses, distinct classes of cellulose synthase (CesA) genes hav...
To secure a sustainable energy source for the future, we need to develop an alternative to fossil fu...
To secure a sustainable energy source for the future, we need to develop an alternative to fossil fu...
Trees constitute the majority of lignocellulosic biomass existing on our planet. Trees also serve as...
The secondary cell walls of woody plant species are a major source of cellulose. This biopolymer is ...
Cellulose is a highly abundant biopolymer which forms the basis of several industrial applications i...
Genetic manipulation of cellulose synthase genes (CesA) might be expected to increase cellulose cont...
Cellulose is the world’s most abundant renewable energy resource, and a variety of cellulose synthas...
Acetyl‐ and methylglucuronic acid decorations of xylan, the dominant hemicellulose in secondary cell...
Genetic improvement of cellulose production in commercially important trees is one of the formidable...
Recent molecular genetic data suggest that cellulose synthase (CesA) genes coding for the enzymes th...
Genetic improvement of cellulose biosynthesis in woody trees is one of the major goals of tree biote...
Genetic improvement of cellulose biosynthesis in woody trees is one of the major goals of tree biote...
The quality and quantity of cellulose deposited in the primary and secondary cell walls of plants va...
Cellulose is an essential structural component of the plant cell wall. Its biosynthesis involves gen...
Based on elegant molecular genetic analyses, distinct classes of cellulose synthase (CesA) genes hav...
To secure a sustainable energy source for the future, we need to develop an alternative to fossil fu...
To secure a sustainable energy source for the future, we need to develop an alternative to fossil fu...