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Polyamines function in stress tolerance: from synthesis to regulationAre winter and summer dormancy symmetrical seasonal adaptive strategies? The case of temperate herbaceous perennials.On the language and physiology of dormancy and quiescence in plants.The Banana Fruit SINA Ubiquitin Ligase MaSINA1 Regulates the Stability of MaICE1 to be Negatively Involved in Cold Stress ResponseA Novel NAC Transcription Factor, PbeNAC1, of Pyrus betulifolia Confers Cold and Drought Tolerance via Interacting with PbeDREBs and Activating the Expression of Stress-Responsive GenesICE1 of Poncirus trifoliata functions in cold tolerance by modulating polyamine levels through interacting with arginine decarboxylaseLeaf transcriptome analysis of a subtropical evergreen broadleaf plant, wild oil-tea camellia (Camellia oleifera), revealing candidate genes for cold acclimation.An apple rootstock overexpressing a peach CBF gene alters growth and flowering in the scion but does not impact cold hardiness or dormancy.Overexpression of Hevea brasiliensis HbICE1 Enhances Cold Tolerance in Arabidopsis.Overexpression of a peach CBF gene in apple: a model for understanding the integration of growth, dormancy, and cold hardiness in woody plants.
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P2860
description
article
@en
im März 2014 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована в березні 2014
@uk
name
Genomics of Cold Hardiness in Woody Plants
@en
Genomics of Cold Hardiness in Woody Plants
@nl
type
label
Genomics of Cold Hardiness in Woody Plants
@en
Genomics of Cold Hardiness in Woody Plants
@nl
prefLabel
Genomics of Cold Hardiness in Woody Plants
@en
Genomics of Cold Hardiness in Woody Plants
@nl
P2093
P2860
P1476
Genomics of Cold Hardiness in Woody Plants
@en
P2093
Allan Brown
Annette Nassuth
Chantal Teulières
Christiane Marque
Jeannine Rowland
Michael Wisniewski
Phi Bang Cao
P2860
P304
P356
10.1080/07352689.2014.870408
P577
2014-03-07T00:00:00Z