Article
Luxurious Nitrogen Fertilization of Two Sugar Cane Genotypes Contrasting for Lignin Composition Causes Changes in the Stem Proteome Related to Carbon, Nitrogen, and Oxidant Metabolism but Does Not Alter Lignin Content.
Journal of proteome research - 6 Oct 2017
Salvato Fernanda, Wilson Rashaun, Portilla Llerena Juan Pablo, Kiyota Eduardo, Lima Reis Karina, Boaretto Luis Felipe, Balbuena Tiago S, Azevedo Ricardo A, Thelen Jay J, Mazzafera Paulo
Abstract excerpt
Sugar cane is an important crop for sugar and biofuel production. Its lignocellulosic biomass represents a promising option as feedstock for second-generation ethanol production. Nitrogen fertilization can affect differently tissues and its biopolymers, including the cell-wall polysaccharides and lignin. Lignin content and composition are the most important factors associated with biomass recalcitrance to convert...
Topics
- Biofuels
- Biomass
- Carbohydrates
- Fermentation
- Gene Expression Regulation, Plant
- Genotype
- Lignin
- Nitrogen
- Oxidants
- Phenotype
