AbstractHyphae of ascomycetes are compartmentalized by septa. The central pore in these septa allows for cytoplasmic streaming. However, many of these pores are closed by Woronin bodies in Aspergillus, which prevents cytoplasmic mixing and thus maintains hyphal heterogeneity. Here, glucose uptake and transport was studied in Aspergillus niger. Glucose uptake was higher in the hyphal population with high transcriptional activity when compared to the population with low transcriptional activity. Glucose was transported from the colony center to the periphery, but not vice versa. This unidirectional flow was similar in the wild-type and the ΔhexA strain that does not form Woronin bodies. This indicated that septal plugging by Woronin bodies do...
This is a study of high-affinity glucose uptake in Aspergillus niger and the effect of disruption of...
Independent systems of high and low affinity effect glucose uptake in the filamentous fungus Aspergi...
Independent systems of high and low affinity effect glucose uptake in the filamentous fungus Aspergi...
Hyphae of ascomycetes are compartmentalized by septa. The central pore in these septa allows for cyt...
AbstractHyphae of ascomycetes are compartmentalized by septa. The central pore in these septa allows...
UNLABELLED: Pores in fungal septa enable cytoplasmic streaming between hyphae and their compartments...
Pores in fungal septa enable cytoplasmic streaming between hyphae and their compartments. Consequent...
Filamentous fungi colonize dead or living substrates by means of a network of hyphae called a myceli...
R.-J.B. and M.H. contributed equally to this article. ABSTRACT Pores in fungal septa enable cytoplas...
Hyphae of higher fungi are compartmentalized by septa. These septa contain a central pore that allow...
<div><p>To characterize the mechanisms involved in glucose transport, in the filamentous fungus <i>A...
To characterize the mechanisms involved in glucose transport, in the filamentous fungus Aspergillus ...
o characterize the mechanisms involved in glucose transport, in the filamentous fungus Aspergillus n...
<div><p>Independent systems of high and low affinity effect glucose uptake in the filamentous fungus...
Hyphae of higher fungi grow at their tips and are compartmentalized by porous septa that enable inte...
This is a study of high-affinity glucose uptake in Aspergillus niger and the effect of disruption of...
Independent systems of high and low affinity effect glucose uptake in the filamentous fungus Aspergi...
Independent systems of high and low affinity effect glucose uptake in the filamentous fungus Aspergi...
Hyphae of ascomycetes are compartmentalized by septa. The central pore in these septa allows for cyt...
AbstractHyphae of ascomycetes are compartmentalized by septa. The central pore in these septa allows...
UNLABELLED: Pores in fungal septa enable cytoplasmic streaming between hyphae and their compartments...
Pores in fungal septa enable cytoplasmic streaming between hyphae and their compartments. Consequent...
Filamentous fungi colonize dead or living substrates by means of a network of hyphae called a myceli...
R.-J.B. and M.H. contributed equally to this article. ABSTRACT Pores in fungal septa enable cytoplas...
Hyphae of higher fungi are compartmentalized by septa. These septa contain a central pore that allow...
<div><p>To characterize the mechanisms involved in glucose transport, in the filamentous fungus <i>A...
To characterize the mechanisms involved in glucose transport, in the filamentous fungus Aspergillus ...
o characterize the mechanisms involved in glucose transport, in the filamentous fungus Aspergillus n...
<div><p>Independent systems of high and low affinity effect glucose uptake in the filamentous fungus...
Hyphae of higher fungi grow at their tips and are compartmentalized by porous septa that enable inte...
This is a study of high-affinity glucose uptake in Aspergillus niger and the effect of disruption of...
Independent systems of high and low affinity effect glucose uptake in the filamentous fungus Aspergi...
Independent systems of high and low affinity effect glucose uptake in the filamentous fungus Aspergi...