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Seed Germination Ecology of the Cold Desert Annual Isatis violascens (Brassicaceae): Two Levels of Physiological Dormancy and Role of the Pericarp.
[Anonymous]
. 0.
Seed Germination Ecology of the Cold Desert Annual Isatis violascens (Brassicaceae): Two Levels of Physiological Dormancy and Role of the Pericarp.
.
PloS one. 10(10):e0140983.
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about Seed Germination Ecology of the Cold Desert Annual Isatis violascens (Brassicaceae): Two Levels of Physiological Dormancy and Role of the Pericarp.
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Effect of Seed Position on Parental Plant on Proportion of Seeds Produced with Nondeep and Intermediate Physiological Dormancy.
[Anonymous]
. 0.
Effect of Seed Position on Parental Plant on Proportion of Seeds Produced with Nondeep and Intermediate Physiological Dormancy.
.
Frontiers in plant science. 8:147.
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about Effect of Seed Position on Parental Plant on Proportion of Seeds Produced with Nondeep and Intermediate Physiological Dormancy.
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Seedling tolerance to cotyledon removal varies with seed size: A case of five legume species.
[Anonymous]
. 2017.
Seedling tolerance to cotyledon removal varies with seed size: A case of five legume species.
.
Ecology and evolution. 7(15):5948-5955.
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about Seedling tolerance to cotyledon removal varies with seed size: A case of five legume species.
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Sensitivity cycling in physically dormant seeds of the Neotropical tree Senna multijuga (Fabaceae).
[Anonymous]
. 2018.
Sensitivity cycling in physically dormant seeds of the Neotropical tree Senna multijuga (Fabaceae).
.
Plant biology (Stuttgart, Germany). 20(4):698-706.
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about Sensitivity cycling in physically dormant seeds of the Neotropical tree Senna multijuga (Fabaceae).
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Diversity of epicotyl dormancy among tropical montane forest species in Sri Lanka.
[Anonymous]
. 2018.
Diversity of epicotyl dormancy among tropical montane forest species in Sri Lanka.
.
Plant biology (Stuttgart, Germany). 20(5):916-925.
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about Diversity of epicotyl dormancy among tropical montane forest species in Sri Lanka.
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Why large seeds with physical dormancy become nondormant earlier than small ones.
[Anonymous]
. 0.
Why large seeds with physical dormancy become nondormant earlier than small ones.
.
PloS one. 13(8):e0202038.
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about Why large seeds with physical dormancy become nondormant earlier than small ones.
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Sympathetic regulation of chicken pineal rhythms.
[Anonymous]
. 1983.
Sympathetic regulation of chicken pineal rhythms.
.
Brain research. 272(2):311-7.
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about Sympathetic regulation of chicken pineal rhythms.
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Dynamics of noradrenergic circadian input to the chicken pineal gland.
[Anonymous]
. 1986.
Dynamics of noradrenergic circadian input to the chicken pineal gland.
.
Brain research. 384(2):334-41.
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about Dynamics of noradrenergic circadian input to the chicken pineal gland.
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Retinohypothalamic projection and suprachiasmatic nucleus of the house sparrow, Passer domesticus.
[Anonymous]
. 1987.
Retinohypothalamic projection and suprachiasmatic nucleus of the house sparrow, Passer domesticus.
.
The Journal of comparative neurology. 266(2):171-82.
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about Retinohypothalamic projection and suprachiasmatic nucleus of the house sparrow, Passer domesticus.
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Circadian variation of 14C 2-deoxyglucose uptake within the suprachiasmatic nucleus of the house sparrow, Passer domesticus.
[Anonymous]
. 1988.
Circadian variation of 14C 2-deoxyglucose uptake within the suprachiasmatic nucleus of the house sparrow, Passer domesticus.
.
Brain research. 459(1):178-82.
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about Circadian variation of 14C 2-deoxyglucose uptake within the suprachiasmatic nucleus of the house sparrow, Passer domesticus.
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