On the evolution of mutation in changing environments: recombination and phenotypic switching

scientific article

On the evolution of mutation in changing environments: recombination and phenotypic switching is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1534/GENETICS.110.123620
P932PMC publication ID3063677
P698PubMed publication ID21212229
P5875ResearchGate publication ID49734507

P50authorMarcus W. FeldmanQ15989759
Jeremy Van CleveQ38591111
Uri LibermanQ95932062
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Transgenerational inheritance of epigenetic states at the murine Axin(Fu) allele occurs after maternal and paternal transmissionQ28588249
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An evolutionary reduction principle for genetic modifiersQ35614856
The evolution of sex and recombination in response to abiotic or coevolutionary fluctuations in epistasisQ35757735
Evolution of recombination in a constant environmentQ36403048
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More on selection for and against recombinationQ37952264
Exact results for the evolution of stochastic switching in variable asymmetric environmentsQ40413315
Population genetic perspectives on the evolution of recombination.Q41291263
Evolutionarily stable mutation rate in a periodically changing environment.Q42960953
Recombination modification in a flucturating environmentQ42974040
Stochastic switching as a survival strategy in fluctuating environmentsQ46685546
Aspects of variance and covariance analysis with cultural inheritanceQ47630191
Phenotypic diversity, population growth, and information in fluctuating environments.Q51965535
A multistep epigenetic switch enables the stable inheritance of DNA methylation states.Q51997058
Selection for linkage modification. I. Random mating populations.Q52969891
Towards a theory of the evolution of modifier genes.Q54238172
Mutating away from your enemies: The evolution of mutation rate in a host–parasite systemQ63379835
Selection for recombination in a polygenic model – the mechanismQ68346852
Antagonistic co-evolution and the evolution of genotypic randomizationQ69431006
Modifiers of mutation rate: a general reduction principleQ69602852
The inheritance of phenotypes: an adaptation to fluctuating environmentsQ71510025
Host-parasite arms race in mutation modifications: indefinite escalation despite a heavy load?Q71932257
P433issue3
P407language of work or nameEnglishQ1860
P304page(s)837-851
P577publication date2011-01-06
P1433published inGeneticsQ3100575
P1476titleOn the evolution of mutation in changing environments: recombination and phenotypic switching
P478volume187

Reverse relations

cites work (P2860)
Q35771036An equilibrium for phenotypic variance in fluctuating environments owing to epigenetics
Q42114903Bistability in feedback circuits as a byproduct of evolution of evolvability
Q35620459Environment-sensitive epigenetics and the heritability of complex diseases
Q34752908Evolution in changing environments: modifiers of mutation, recombination, and migration
Q47554874Evolution of vertical and oblique transmission under fluctuating selection
Q45374080Genetic variation and the evolution of epigenetic regulation
Q38515559Metabolism at evolutionary optimal States.
Q50634627Norm statement considered harmful: comment on 'evolution of unconditional dispersal in periodic environments'.
Q36040350Survivability is more fundamental than evolvability
Q47263374The Driving Forces of Cultural Complexity : Neanderthals, Modern Humans, and the Question of Population Size
Q38695280The evolution of phenotypic switching in subdivided populations
Q55645787The role of migration in the evolution of phenotypic switching.
Q37730148Unified reduction principle for the evolution of mutation, migration, and recombination

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