Bacterial cellulose is one of the most promising biomaterials for the development of a wide array of novel biotechnological solutions. Nevertheless, the commercial production of bacterial cellulose is still a challenge and obtaining novel strains presenting increased cellulose biosynthesis and stress resistance properties is of extreme importance.This work demonstrates the increased stress resistance, cellulose production abilities, and overall genomic properties of Komagataeibacter uvaceti FXV3, a novel cellulose-producing and stress resistant strain isolated from a fermented grape must.K. uvaceti FXV3 was able to grow under several stress conditions, including the presence of high concentrations of ethanol (up to 7.5 % v/v), a trait that ...
Komagataeibacter spp. has been used for the bioconversion of industrial wastes and lignocel-lulosic ...
Isolate B17 from Kombucha was estimated to be an efficient producer of bacterial cellulose (BC). The...
Here, we present the draft genome sequence of Komagatabaeicter rhaeticus strain AF1, which was isola...
Bacterial cellulose is one of the most promising biomaterials for the development of a wide array of...
Bacterial cellulose is a strong and ultrapure form of cellulose produced naturally by several specie...
Cellulose is the most abundant and widely used biopolymer on earth and can be produced by both plant...
Objective: The objective of this study was to evaluate the ability of a new Komagataeibacter xylinus...
Cellulose is the most abundant and widely used biopolymer on earth and can be produced by both plant...
Objective: The objective of this study was to evaluate the ability of a new Komagataeibacter xylinus...
Objective: The objective of this study was to evaluate the ability of a new Komagataeibacter xylinus...
This study investigated cellulose production and microstructure variation from six Komagataeibacter ...
Bacterial cellulose is a crystalline biopolymer with mechanical properties that make it useful in a ...
Bacterial cellulose is a crystalline biopolymer with mechanical properties that make it useful in a ...
Komagataeibacter spp. has been used for the bioconversion of industrial wastes and lignocellulosic h...
Komagataeibacter spp. has been used for the bioconversion of industrial wastes and lignocel-lulosic ...
Komagataeibacter spp. has been used for the bioconversion of industrial wastes and lignocel-lulosic ...
Isolate B17 from Kombucha was estimated to be an efficient producer of bacterial cellulose (BC). The...
Here, we present the draft genome sequence of Komagatabaeicter rhaeticus strain AF1, which was isola...
Bacterial cellulose is one of the most promising biomaterials for the development of a wide array of...
Bacterial cellulose is a strong and ultrapure form of cellulose produced naturally by several specie...
Cellulose is the most abundant and widely used biopolymer on earth and can be produced by both plant...
Objective: The objective of this study was to evaluate the ability of a new Komagataeibacter xylinus...
Cellulose is the most abundant and widely used biopolymer on earth and can be produced by both plant...
Objective: The objective of this study was to evaluate the ability of a new Komagataeibacter xylinus...
Objective: The objective of this study was to evaluate the ability of a new Komagataeibacter xylinus...
This study investigated cellulose production and microstructure variation from six Komagataeibacter ...
Bacterial cellulose is a crystalline biopolymer with mechanical properties that make it useful in a ...
Bacterial cellulose is a crystalline biopolymer with mechanical properties that make it useful in a ...
Komagataeibacter spp. has been used for the bioconversion of industrial wastes and lignocellulosic h...
Komagataeibacter spp. has been used for the bioconversion of industrial wastes and lignocel-lulosic ...
Komagataeibacter spp. has been used for the bioconversion of industrial wastes and lignocel-lulosic ...
Isolate B17 from Kombucha was estimated to be an efficient producer of bacterial cellulose (BC). The...
Here, we present the draft genome sequence of Komagatabaeicter rhaeticus strain AF1, which was isola...