© The Author(s).Penicillium digitatum is the major postharvest pathogen of citrus fruit under Mediterranean climate conditions. Previous results have shown that proteases is the largest enzyme family induced by P. digitatum during fruit infection. In the present work, we addressed the study of the role of P. digitatum’s proteases in virulence following two complementary approaches. In the first approach, we undertook the functional characterization of the P. digitatum prtT gene, which codes for a putative transcription factor previously shown to regulate extracellular proteases in other filamentous fungi. Deletion of prtT caused a significant loss in secreted protease activity during in vitro growth assays. However, there was no effect on v...
Despite the current use of chemical fungicides, Penicillium digitatum and P. expansum still are the ...
Chitin is an essential component of the fungal cell wall and a potential target in the development o...
Zn2Cys6 transcription factors are unique to fungi and are involved in different regulatory functions...
The fungus Penicillium digitatum, the causal agent of green mould rot, is the most destructive post-...
Penicillium digitatum is the major source of postharvest decay in citrus fruits worldwide. This fung...
The fungus Penicillium digitatum is the causal agent of the citrus green mould, the major postharves...
Zn2Cys6 transcription factors are unique to fungi and are involved in different regulatory functions...
The postharvest fungal pathogensPenicillium digitatum, P. italicumand P. expansumare an in-creasing ...
Pathogens cause disease on both animal and plant hosts. For successful infection and establishment o...
Background: Penicillium digitatum is a fungal necrotroph causing a common citrus postharvest disease...
© 2020 by the authors.Penicillium digitatum is the main fungal postharvest pathogen of citrus fruit ...
Postharvest fungal diseases are among the main causes of fresh fruit losses. Chemical control is aga...
The postharvest fungal pathogens Penicillium digitatum, P. italicum and P. expansum are an increasin...
The continuous use of chemical fungicides on citrus postharvest has led to the development of resist...
The activity of protein O-mannosyltransferases (Pmt) affects the morphogenesis and virulence of fun...
Despite the current use of chemical fungicides, Penicillium digitatum and P. expansum still are the ...
Chitin is an essential component of the fungal cell wall and a potential target in the development o...
Zn2Cys6 transcription factors are unique to fungi and are involved in different regulatory functions...
The fungus Penicillium digitatum, the causal agent of green mould rot, is the most destructive post-...
Penicillium digitatum is the major source of postharvest decay in citrus fruits worldwide. This fung...
The fungus Penicillium digitatum is the causal agent of the citrus green mould, the major postharves...
Zn2Cys6 transcription factors are unique to fungi and are involved in different regulatory functions...
The postharvest fungal pathogensPenicillium digitatum, P. italicumand P. expansumare an in-creasing ...
Pathogens cause disease on both animal and plant hosts. For successful infection and establishment o...
Background: Penicillium digitatum is a fungal necrotroph causing a common citrus postharvest disease...
© 2020 by the authors.Penicillium digitatum is the main fungal postharvest pathogen of citrus fruit ...
Postharvest fungal diseases are among the main causes of fresh fruit losses. Chemical control is aga...
The postharvest fungal pathogens Penicillium digitatum, P. italicum and P. expansum are an increasin...
The continuous use of chemical fungicides on citrus postharvest has led to the development of resist...
The activity of protein O-mannosyltransferases (Pmt) affects the morphogenesis and virulence of fun...
Despite the current use of chemical fungicides, Penicillium digitatum and P. expansum still are the ...
Chitin is an essential component of the fungal cell wall and a potential target in the development o...
Zn2Cys6 transcription factors are unique to fungi and are involved in different regulatory functions...