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Genetic Regulation of Seed Dormancy in Purshia tridentata(Rosaceae)
Authors:Meyer, Susan E.   Pendleton, Rosemary L.
Affiliation:USDA Forest Service, Rocky Mountain Research Station, Shrub Sciences Laboratory, Provo, UT, 84606, USA
Abstract:Seeds of Purshia tridentata, a shrub of semi-arid North America,require chilling to become non-dormant. Using seeds producedfrom controlled crosses in a common garden, we examined effectsof ovule parent, pollen parent, and year of production on germinationpercentage in response to chilling for 2 weeks at 2°C. Differencesamong ovule parents accounted for most of the variance in chillingresponse, and these differences (2 to 83% germination) wereconsistent across years. Differences among pollen parents werealso significant, producing a two- to five-fold difference inmean germination percentage. Differences among years were significantbut small. Ovule parent by year interactions showed that among-yearvariation in ripening environment did not affect ovule parentsequally. There was no significant pollen parent by year interaction,suggesting that the effect of maturation environment was mediatedthrough maternal tissues. In reciprocal crosses, two plantsthat showed contrasting dormancy levels as ovule parents producedseeds with similar dormancy as pollen parents, indicating thatthe genetic difference between them was at the testa level.Two plants that produced seeds with contrasting dormancy aspollen parents showed a similar but stronger pattern of contrastas ovule parents, showing that the genetic difference betweenthem was at both embryo and endosperm or testa level. Testaor endosperm genotype was primarily responsible for chillingresponse of intact seeds, while embryo genotype affected chillingresponse and also exercised primary control over low temperaturegermination rate, whether of excised embryos or of intact seeds.Copyright 2000 Annals of Botany Company Antelope bitterbrush, bitterbrush, common garden study, germination
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