The obligate biotrophic rust fungus Melampsora larici-populina is the most devastating and widespread pathogen of poplars. Studies over recent years have identified various small secreted proteins (SSP) from plant biotrophic filamentous pathogens and have highlighted their role as effectors in host-pathogen interactions. The recent analysis of the M. larici-populina genome sequence has revealed the presence of 1,184 SSP-encoding genes in this rust fungus. In the present study, the expression and evolutionary dynamics of these SSP were investigated to pinpoint the arsenal of putative effectors that could be involved in the interaction between the rust fungus and poplar. Similarity with effectors previously described in Melampsora spp., richn...
Rust fungi are some of the most devastating pathogens of crop plants. They are obligate biotrophs, ...
Rust fungi are obligate biotrophic pathogens that cause considerable damage on crop plants. Puccinia...
Rust fungi are some of the most devastating pathogens of crop plants. They are obligate biotrophs, w...
The obligate biotrophic rust fungus Melampsora larici-populina is the most devastating and widesprea...
The obligate biotrophic rust fungus Melampsora larici-populina is the most devastating and widesprea...
The obligate biotrophic rust fungus Melampsora larici-populina is the most devastating and widesprea...
Background: Obligate biotrophs such as rust fungi are believed to establish long-term relationships ...
Background: Obligate biotrophs such as rust fungi are believed to establish long-term relationships ...
Background: Obligate biotrophs such as rust fungi are believed to establish...
The poplar leaf rust fungus, Melarnpsora larici-populina has been established as a tree-microbe inte...
<div><p>Rust fungi are obligate biotrophic pathogens that cause considerable damage on crop plants. ...
The leaf rust disease caused by Melampsora larici-populina (Mlp) is the main disease affecting popla...
The leaf rust disease caused by Melampsora larici-populina (Mlp) is the main disease affecting popla...
International audienceMelampsora larici-populina is responsible for poplar leaf rust disease and cau...
Rust fungi are obligate biotrophic pathogens that cause considerable damage on crop plants. Puccinia...
Rust fungi are some of the most devastating pathogens of crop plants. They are obligate biotrophs, ...
Rust fungi are obligate biotrophic pathogens that cause considerable damage on crop plants. Puccinia...
Rust fungi are some of the most devastating pathogens of crop plants. They are obligate biotrophs, w...
The obligate biotrophic rust fungus Melampsora larici-populina is the most devastating and widesprea...
The obligate biotrophic rust fungus Melampsora larici-populina is the most devastating and widesprea...
The obligate biotrophic rust fungus Melampsora larici-populina is the most devastating and widesprea...
Background: Obligate biotrophs such as rust fungi are believed to establish long-term relationships ...
Background: Obligate biotrophs such as rust fungi are believed to establish long-term relationships ...
Background: Obligate biotrophs such as rust fungi are believed to establish...
The poplar leaf rust fungus, Melarnpsora larici-populina has been established as a tree-microbe inte...
<div><p>Rust fungi are obligate biotrophic pathogens that cause considerable damage on crop plants. ...
The leaf rust disease caused by Melampsora larici-populina (Mlp) is the main disease affecting popla...
The leaf rust disease caused by Melampsora larici-populina (Mlp) is the main disease affecting popla...
International audienceMelampsora larici-populina is responsible for poplar leaf rust disease and cau...
Rust fungi are obligate biotrophic pathogens that cause considerable damage on crop plants. Puccinia...
Rust fungi are some of the most devastating pathogens of crop plants. They are obligate biotrophs, ...
Rust fungi are obligate biotrophic pathogens that cause considerable damage on crop plants. Puccinia...
Rust fungi are some of the most devastating pathogens of crop plants. They are obligate biotrophs, w...