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Elucidating how the saprophytic fungus Aspergillus nidulans uses the plant polyester suberin as carbon source

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Detalhes bibliográficos
Resumo:Lipid polymers in plant cell walls, such as cutin and suberin, build recalcitrant hydrophobic protective barriers. Their degradation is of foremost importance for both plant pathogenic and saprophytic fungi. Regardless of numerous reports on fungal degradation of emulsified fatty acids or cutin, and on fungi-plant interactions, the pathways involved in the degradation and utilisation of suberin remain largely overlooked. As a structural component of the plant cell wall, suberin isolation, in general, uses harsh depolymerisation methods that destroy its macromolecular structure. We recently overcame this limitation isolating suberin macromolecules in a near-native state.
Autores principais:Martins, Isabel
Outros Autores:Hartmann, Diego O; Alves, Paula C; Martins, Celso; Garcia, Helga; Leclercq, Céline C; Ferreira, Rui; He, Ji; Renaut, Jenny; Becker, Jörg D; Silva Pereira, Cristina
Assunto:Aspergillus nidulans β -oxidation Cutinase Long chain fatty acids Suberin Whole-genome profiling
Ano:2014
País:Portugal
Tipo de documento:artigo
Tipo de acesso:acesso aberto
Instituição associada:Repositório do GIMM – Gulbenkian Institute for Molecular Medicine
Idioma:inglês
Origem:ARCA
Descrição
Resumo:Lipid polymers in plant cell walls, such as cutin and suberin, build recalcitrant hydrophobic protective barriers. Their degradation is of foremost importance for both plant pathogenic and saprophytic fungi. Regardless of numerous reports on fungal degradation of emulsified fatty acids or cutin, and on fungi-plant interactions, the pathways involved in the degradation and utilisation of suberin remain largely overlooked. As a structural component of the plant cell wall, suberin isolation, in general, uses harsh depolymerisation methods that destroy its macromolecular structure. We recently overcame this limitation isolating suberin macromolecules in a near-native state.

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