Many organisms harbor circadian clocks that promote their adaptation to the rhythmic environment. While a broad knowledge of the molecular mechanism of circadian clocks has been gained through the fungal model Neurospora crassa, little is known about circadian clocks in other fungi. N. crassa belongs to the same class as many important plant pathogens including the vascular wilt fungus Verticillium dahliae. We identified homologs of N. crassa clock proteins in V. dahliae, which showed high conservation in key protein domains. However, no evidence for an endogenous, free-running and entrainable rhythm was observed in the daily formation of conidia and microsclerotia. In N. crassa the frequency (frq) gene encodes a central clock protein expre...
The Neurospora crassa frequency locus encodes a 989 amino acid protein that is a central component, ...
Since reports of daily leaf movements 2000 years ago, a so-called circadian clock (‘circa diem’ mean...
Neurospora crassa is the only molecular genetic model system for circadian rhythms research in the f...
Many organisms harbor circadian clocks that promote their adaptation to the rhythmic environment. Wh...
Many organisms harbor circadian clocks that promote their adaptation to the rhythmic environment. Wh...
The circadian clock is an internal timekeeper mechanism that allows organisms to anticipate and syn...
Many organisms use circadian clocks to adapt to daily changes in the environment. Major insights int...
Since reports of daily leaf movements 2000 years ago, a so-called circadian clock (‘circa diem’ mean...
Circadian rhythms are daily oscillations in biological activities that have a periodicity of approxi...
The fungus Neurospora crassa is being used by a number of research groups as a model organism to inv...
We are using the fungus Neurospora crassa as a model organism to study the circadian system of eukar...
Aspergillus nidulans grown under standard laboratory conditions does not show circadian rhythmic gro...
FREQUENCY (FRQ) is a crucial element of the circadian clock in Neurospora crassa. In the course of a...
Abstract A new circadian clock mutant of Neurospora crassa has been isolated, whose most distinc-tiv...
The Neurospora crassa frequency locus encodes a 989 amino acid protein that is a central component, ...
The Neurospora crassa frequency locus encodes a 989 amino acid protein that is a central component, ...
Since reports of daily leaf movements 2000 years ago, a so-called circadian clock (‘circa diem’ mean...
Neurospora crassa is the only molecular genetic model system for circadian rhythms research in the f...
Many organisms harbor circadian clocks that promote their adaptation to the rhythmic environment. Wh...
Many organisms harbor circadian clocks that promote their adaptation to the rhythmic environment. Wh...
The circadian clock is an internal timekeeper mechanism that allows organisms to anticipate and syn...
Many organisms use circadian clocks to adapt to daily changes in the environment. Major insights int...
Since reports of daily leaf movements 2000 years ago, a so-called circadian clock (‘circa diem’ mean...
Circadian rhythms are daily oscillations in biological activities that have a periodicity of approxi...
The fungus Neurospora crassa is being used by a number of research groups as a model organism to inv...
We are using the fungus Neurospora crassa as a model organism to study the circadian system of eukar...
Aspergillus nidulans grown under standard laboratory conditions does not show circadian rhythmic gro...
FREQUENCY (FRQ) is a crucial element of the circadian clock in Neurospora crassa. In the course of a...
Abstract A new circadian clock mutant of Neurospora crassa has been isolated, whose most distinc-tiv...
The Neurospora crassa frequency locus encodes a 989 amino acid protein that is a central component, ...
The Neurospora crassa frequency locus encodes a 989 amino acid protein that is a central component, ...
Since reports of daily leaf movements 2000 years ago, a so-called circadian clock (‘circa diem’ mean...
Neurospora crassa is the only molecular genetic model system for circadian rhythms research in the f...