The phytopathogen Xylella fastidiosa grows as a biofilm causing vascular occlusion and consequently nutrient and water stress in different plant hosts by adhesion on xylem vessel surfaces composed of cellulose, hemicellulose, pectin and proteins. Understanding the factors which influence bacterial adhesion and biofilm development is a key issue in identifying mechanisms for preventing biofilm formation in infected plants. In this study, we show that X. fastidiosa biofilm development and architecture correlate well with physicochemical surface properties after interaction with the culture medium. Different biotic and abiotic substrates such as silicon (Si) and derivatized cellulose films were studied. Both biofilms and substrates were charac...
The field of nanotechnology is growing rapidly. Progress in this field depends in part on a thorough...
Xylella fastidiosa is the causal agent of citrus variegated chlorosis and Pierce's disease which are...
AbstractBiofilms are complex microbial communities with important biological functions including enh...
The phytopathogen Xylella fastidiosa grows as a biofilm causing vascular occlusion and consequently ...
AbstractBiofilms are complex microbial communities with important biological functions including enh...
Xylella fastidiosa colonizes the xylem of various host plants, causing economically important diseas...
The structural integrity and protection of bacterial biofilms are intrinsically associated with a ma...
Orientador: Mônica Alonso CottaTese (doutorado) - Universidade Estadual de Campinas, Instituto de Fí...
Apresentamos nesta tese uma investigação dos processos físico-químicos da adesão e desenvolvimento d...
Abstract Background ...
Abstract Background Xylella fastidiosa is limited to the xylem of the plant host and the foregut of ...
Microchannels can be used to simulate xylem vessels and investigate phytopathogen colonization under...
ABSTRACT Xylella fastidiosa is a Gram-negative bacterium that causes disease in many economically im...
Microchannels can be used to simulate xylem vessels and investigate phytopathogen colonization under...
Abstract\ud \ud \ud \ud Background\ud ...
The field of nanotechnology is growing rapidly. Progress in this field depends in part on a thorough...
Xylella fastidiosa is the causal agent of citrus variegated chlorosis and Pierce's disease which are...
AbstractBiofilms are complex microbial communities with important biological functions including enh...
The phytopathogen Xylella fastidiosa grows as a biofilm causing vascular occlusion and consequently ...
AbstractBiofilms are complex microbial communities with important biological functions including enh...
Xylella fastidiosa colonizes the xylem of various host plants, causing economically important diseas...
The structural integrity and protection of bacterial biofilms are intrinsically associated with a ma...
Orientador: Mônica Alonso CottaTese (doutorado) - Universidade Estadual de Campinas, Instituto de Fí...
Apresentamos nesta tese uma investigação dos processos físico-químicos da adesão e desenvolvimento d...
Abstract Background ...
Abstract Background Xylella fastidiosa is limited to the xylem of the plant host and the foregut of ...
Microchannels can be used to simulate xylem vessels and investigate phytopathogen colonization under...
ABSTRACT Xylella fastidiosa is a Gram-negative bacterium that causes disease in many economically im...
Microchannels can be used to simulate xylem vessels and investigate phytopathogen colonization under...
Abstract\ud \ud \ud \ud Background\ud ...
The field of nanotechnology is growing rapidly. Progress in this field depends in part on a thorough...
Xylella fastidiosa is the causal agent of citrus variegated chlorosis and Pierce's disease which are...
AbstractBiofilms are complex microbial communities with important biological functions including enh...