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Data from: The role of inbreeding depression and mating system in the evolution of heterostyly
负责人:
关键词:
distyly;self-incompatibility;tristyly;breeding systems;Oxalidaceae;Oxalis alpina
DOI:
doi:10.5061/dryad.r6209
摘要:
ty of the mid-styled morph was absent from the population with typical tristylous incompatibility, and no self-fertilization could be detected. Although self-
Data from: The evolutionary history of plant T2/S-type ribonucleases
负责人:
关键词:
gametophytic self-incompatibility;homology;gene family;T2-RNase;Core Eudicots;plants;self-incompatibility RNase;self-incompatibility;S-RNase;Evolution;GSI
DOI:
doi:10.5061/dryad.8hv0k
摘要:
le relicts suggests that the loss of functional self-incompatibility may leave traces long after the fact, and that this manner of molecular fossil-like data
Data from: Strong inbreeding depression in two Scandinavian populations of the self-incompatible perennial herb Arabidopsis lyrata
负责人:
关键词:
inbreeding depression;plant reproduction;Arabidopsis lyrata ssp. petraea;Mating Systems;self-incompatibility
DOI:
doi:10.5061/dryad.rd78f
摘要:
incompatibility. A review of available estimates suggested that inbreeding depression tends to be stronger in self-incompatible than in self-compatible highly
Data from: What causes mating system shifts in plants? Arabidopsis lyrata as a case study
负责人:
关键词:
loss of self-incompatibility;self-incompatibility;genomics;Inbreeding;plant mating system;Brassicaceae;current;Holocene;Arabidopsis lyrata
DOI:
doi:10.5061/dryad.832t8
摘要:
The genetic breakdown of self-incompatibility (SI) and subsequent mating system shifts to inbreeding has intrigued evolutionary geneti
Data from: Stochastic character mapping of state-dependent diversification reveals the tempo of evolutionary decline in self-compatible Onagraceae
负责人:
关键词:
Onagraceae
DOI:
doi:10.5061/dryad.9jj428f
摘要:
nescing" diversification rates predicted in highly selfing lineages: our mapped character histories show that the loss of self-incompatibility is followed by a short-term spike
Data from: Rapid loss of self-incompatibility in experimental populations of the perennial outcrossing plant Linaria cavanillesii
负责人:
关键词:
reproductive assurance;pollen discounting;outcrossing rate;selfing rate;Mating Systems;pollinator;Linaria cavanillesii
DOI:
doi:10.5061/dryad.105n6j7
摘要:
Transitions from self-incompatibility (SI) to self-compatibility (SC) in angiosperms may be frequently driven by selection for reproductive assuranc
Data from: Breakdown of gametophytic self-incompatibility in subdivided populations
负责人:
关键词:
gene flow;genetic drift;Inbreeding;Mating Systems;Models\/Simulations;population genetics
DOI:
doi:10.5061/dryad.w0vt4b8md
摘要:
In many hermaphroditic flowering plants self-fertilization is prevented by self-incompatibility (SI), often controlled by a single locus, the S-locus
Data from: Small and ugly? Phylogenetic analyses of the “selfing syndrome” reveal complex evolutionary fates of monomorphic primrose flowers
负责人:
关键词:
Primula amethystina;Primula maximowiczii;Primula bellidifolia;Primulaceae;Primula algida;Primula bella;Primula geraniifolia;homostyly;Dionysia;Primula bracteata;Primula septemloba;Primula yunnanensis;Primula reidii;Primula boreiocalliantha;Primula asarifolia;Primula sinensis;Primula scandinavica;Primula muscarioides;Primula nivalis;Primula secundiflora;Primula erratica;Primula chapaensis;Primula aurantiaca;Primula saturata;Primula firmipes;Primula tanneri;Primula cockburniana;Primula souliei;Dionysia hissarica;Primula littledalei;Primula rotundifolia;Primula florida;breeding system;Ericales;Primula orbicularis;Primula verticillata;Dionysia lurorum;Primula pumilio;Primula japonica;Primula floribunda;Primula latisecta;Primula;Primula chionantha;Primula membranifolia;Primula calderiana;Primula flaccida;Primula alpicola;Primula fasciculata;Primula glomerata;Primula aliciae;Primula kisoana;phylogenetic comparative methods;Primula waltonii;Primula primulina;Primula advena;Dionysia aretioides;Primula prolifera;Primula mollis;Primula watsonii;Primula ovalifolia;Primula nutans;Primula tenuiloba;Dionysia tapetodes;Primula calliantha;Primula laurentiana;Primula cernua;Primula vialii;Primula merrilliana;Primula poissonii;Primula rupestris;Primula polyneura;Primula heucherifolia;Primula luteola;Primula malacoides;Heterostyly;Primula cortusoides;Primula pulverulenta;Dionysia bryoides;Primula glabra;Primula gemmifera;Primula caveana;Primula denticulata;Primula pinnatifida;Primula moupinensis;Primula dryadifolia;Primula prenantha;Primula odontocalyx;Primula violaceae;Primula reticulata;Primula aromatica;Primula forbesii;Primula soongii;Primula sertulum;Primula barbicalyx;Primula deflexa;Primula serratifolia;Primula obconica;Primula sonchifolia;Primula modesta;Primula scotica;Primula pycnoloba;Primula partschiana;Primula blattariformis;Dionysia lindbergii;Primula chungensis;floral evolution;Primula muscoides;Primula involucrata;Primula minor;Primula wangii;Primula auriculata;Primula forrestii;Dionysia revoluta;Primula wigramiana;Primula rugosa;Primula sinolisteri;Primula walshii;Primula bracteosa;Primula sinomollis;Primula darialica;Primula capitata;Primula simensis;Primula farinosa;Primula siamensis;Primula elliptica;Primula excapa;Primula interjacens;Primula efarinosa;Primula cicutariifolia;Primula malvacea;Primula pulchella;Primula halleri;Primula veris
DOI:
doi:10.5061/dryad.vq2m6
摘要:
One of the most common trends in plant evolution, loss of self-incompatibility and ensuing increases in selfing, is generally ass

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