Influence of water availability on gender determination of gametophytes in a diploid-polyploid complex of a xerophytic fern genus

scientific article published on 4 May 2015

Influence of water availability on gender determination of gametophytes in a diploid-polyploid complex of a xerophytic fern genus is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1093/AOBPLA/PLV047
P932PMC publication ID4480211
P698PubMed publication ID25940203
P5875ResearchGate publication ID275896001

P50authorLuis G. QuintanillaQ36616580
P2093author name stringSantiago Pajarón
Ares Jiménez
Emilia Pangua
P2860cites workPolyploid Incidence and EvolutionQ22065392
‘Why polyploidy is rarer in animals than in plants’: myths and mechanismsQ22065707
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Reproductive and competitive interactions among gametophytes of the allotetraploid fern Dryopteris corleyi and its two diploid parentsQ28752422
Extreme environments select for reproductive assurance: evidence from evening primroses (Oenothera).Q31004576
Temperature-dependent sex determination in fish revisited: prevalence, a single sex ratio response pattern, and possible effects of climate change.Q31165980
Tackling the diversity of sex determinationQ33632936
Mixed mating system in the fern Asplenium scolopendrium: implications for colonization potentialQ33648656
Transgressive segregation, adaptation and speciation.Q33785749
Sex change and the size-advantage model.Q34025311
The birds and the bees and the flowers and the trees: lessons from genetic mapping of sex determination in plants and animalsQ34131622
Sex chromosomes in land plantsQ34180935
Polyploidy influences sexual system and mating patterns in the moss Atrichum undulatum sensu latoQ34408825
Density affects gametophyte growth and sexual expression of Osmunda cinnamomea (Osmundaceae: Pteridophyta).Q34564486
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Environmental sex reversal, Trojan sex genes, and sex ratio adjustment: conditions and population consequencesQ34615962
The ends of a continuum: genetic and temperature-dependent sex determination in reptilesQ35788432
Do plants adjust their sex allocation and secondary sexual morphology in response to their neighbours?Q36371747
Environmental effects on fish sex determination and differentiationQ37580656
Sex ratios and conditions required for environmental sex determination in animalsQ37929892
Ecological and evolutionary consequences of desiccation tolerance in tropical fern gametophytesQ39581007
Mixed genetic and environmental sex determination in an androdioecious population of Mercurialis annuaQ46781208
Dynamics of asymmetrical hybridization in North American wood ferns: reconciling patterns of inheritance with gametophyte reproductive biologyQ46807878
Do antheridiogens act via gametophyte size? A study of Woodwardia radicans (Blechnaceae).Q47285950
Polyploidy and self-fertilization in flowering plantsQ48386627
Gametophytic Plasticity among Four Species of Ferns with Contrasting Ecological Distributions.Q51204805
The Evolutionary Enigma of Mixed Mating Systems in Plants: Occurrence, Theoretical Explanations, and Empirical EvidenceQ56082823
Reproductive Biology and Evolution in the PteridophytaQ56190502
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Generalized linear and generalized additive models in studies of species distributions: setting the sceneQ57014265
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Pattern Does Not Equal Process: Exactly When Is Sex Environmentally Determined?Q62393849
POPULATION STRUCTURE AND ESTIMATES OF GENE FLOW IN THE HOMOSPOROUS FERN POLYSTICHUM MUNITUMQ88197755
Sex change in plants: Old and new observations and new hypothesesQ89572472
P4510describes a project that usesImageJQ1659584
P921main subjectpolyploidyQ213410
P577publication date2015-05-04
P1433published inAoB PLANTSQ19864474
P1476titleInfluence of water availability on gender determination of gametophytes in a diploid-polyploid complex of a xerophytic fern genus
P478volume7

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cites work (P2860)
Q55109008Germination fitness of two temperate epiphytic ferns shifts under increasing temperatures and forest fragmentation.
Q92539313Proteome Analysis of the Gametophytes of a Western Himalayan Fern Diplazium maximum Reveals Their Adaptive Responses to Changes in Their Micro-Environment

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