Fitness in time-dependent environments includes a geometric phase contribution

scientific article published on 23 November 2011

Fitness in time-dependent environments includes a geometric phase contribution is …
instance of (P31):
scholarly articleQ13442814

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P818arXiv ID1106.0079
P356DOI10.1098/RSIF.2011.0695
P932PMC publication ID3350737
P698PubMed publication ID22112653
P5875ResearchGate publication ID51827751

P50authorIlya NemenmanQ41045080
P2093author name stringSorin Tanase-Nicola
P2860cites workNonequilibrium Equality for Free Energy DifferencesQ21698763
Genome evolution and adaptation in a long-term experiment with Escherichia coliQ22122199
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Experimental evolution with E. coli in diverse resource environments. I. Fluctuating environments promote divergence of replicate populationsQ33523627
Fitness flux and ubiquity of adaptive evolutionQ33732926
Spontaneous evolution of modularity and network motifsQ34048031
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From fitness landscapes to seascapes: non-equilibrium dynamics of selection and adaptation.Q34949551
Varying environments can speed up evolutionQ35941090
A species near its equilibrium size in a fluctuating environment can evolve a lower intrinsic rate of increaseQ36420371
Episodic selection and the maintenance of competence and natural transformation in Bacillus subtilisQ37152731
An evolutionary maximum principle for density-dependent population dynamics in a fluctuating environmentQ37212510
Antibiotic resistance and its cost: is it possible to reverse resistance?Q37704177
Random environments and stochastic calculusQ44122929
Time-dependent corrections to effective rate and event statistics in Michaelis–Menten kineticsQ51638167
Experimental evolution of bet hedging.Q51645840
Phenotypic diversity, population growth, and information in fluctuating environments.Q51965535
Periodic Lotka-Volterra competition equations.Q52650858
The Berry phase and the pump flux in stochastic chemical kineticsQ56226379
Universal geometric theory of mesoscopic stochastic pumps and reversible ratchetsQ80588413
Spontaneous emergence of modularity in a model of evolving individualsQ80589171
Molecular evolution under fitness fluctuationsQ80904821
P433issue71
P304page(s)1354-1362
P577publication date2011-11-23
P1433published inJournal of the Royal Society InterfaceQ2492390
P1476titleFitness in time-dependent environments includes a geometric phase contribution
P478volume9

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cites work (P2860)
Q90595296A continuum of biological adaptations to environmental fluctuation
Q36076919Establishment of new mutations in changing environments
Q50867344Fluctuation and noise propagation in phenotypic transition cascades of clonal populations.

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