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Conservation Strategies in the Genus Hypericum via Cryogenic TreatmentC4 bioenergy crops for cool climates, with special emphasis on perennial C4 grassesWinter cold-tolerance thresholds in field-grown Miscanthus hybrid rhizomesIce barriers promote supercooling and prevent frost injury in reproductive buds, flowers and fruits of alpine dwarf shrubs throughout the summer.Alleviation of aluminium-induced cell rigidity by overexpression of OsPIN2 in rice roots.From observations to experiments in phenology research: investigating climate change impacts on trees and shrubs using dormant twigs.The Medicago sativa gene index 1.2: a web-accessible gene expression atlas for investigating expression differences between Medicago sativa subspecies.Is the OJIP Test a Reliable Indicator of Winter Hardiness and Freezing Tolerance of Common Wheat and Triticale under Variable Winter Environments?Proteome dynamics of cold-acclimating Rhododendron species contrasting in their freezing tolerance and thermonasty behavior.Older Thinopyrum intermedium (Poaceae) plants exhibit superior photosynthetic tolerance to cold stress and greater increases in two photosynthetic enzymes under freezing stress compared with young plantsPost-head-emergence frost in wheat and barley: defining the problem, assessing the damage, and identifying resistance.Early transcriptional changes in Beta vulgaris in response to low temperature.Macro- and microclimate conditions may alter grapevine deacclimation: variation in thermal amplitude in two contrasting wine regions from North and South America.Freezing avoidance by supercooling in Olea europaea cultivars: the role of apoplastic water, solute content and cell wall rigidity.Frost hardening and dehardening potential in temperate trees from winter to budburst.The use of high-resolution infrared thermography (HRIT) for the study of ice nucleation and ice propagation in plantsPlant strategies for survival in changing environment.The cost of avoiding freezing in stems: trade-off between xylem resistance to cavitation and supercooling capacity in woody plants.Acetylsalicylic acid enhance tolerance of Phaseolus vulgaris L. to chilling stress, improving photosynthesis, antioxidants and expression of cold stress responsive genes.Divergence in the transcriptional landscape between low temperature and freeze shock in cultivated grapevine (Vitis vinifera).Meta-Analysis of the Effect of Overexpression of Dehydration-Responsive Element Binding Family Genes on Temperature Stress Tolerance and Related Responses.Duration of freezing necessary to damage the leaves ofFallopia japonica(Houtt.) Ronse DecraeneCold Hardiness in Trees: A Mini-ReviewGenomics of Cold Hardiness in Woody Plants
P2860
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P2860
description
2012 nî lūn-bûn
@nan
2012年の論文
@ja
2012年学术文章
@wuu
2012年学术文章
@zh
2012年学术文章
@zh-cn
2012年学术文章
@zh-hans
2012年学术文章
@zh-my
2012年学术文章
@zh-sg
2012年學術文章
@yue
2012年學術文章
@zh-hant
name
Understanding plant cold hardiness: an opinion.
@en
Understanding plant cold hardiness: an opinion.
@nl
type
label
Understanding plant cold hardiness: an opinion.
@en
Understanding plant cold hardiness: an opinion.
@nl
prefLabel
Understanding plant cold hardiness: an opinion.
@en
Understanding plant cold hardiness: an opinion.
@nl
P2860
P1476
Understanding plant cold hardiness: an opinion.
@en
P2093
Lawrence V Gusta
Michael Wisniewski
P2860
P356
10.1111/J.1399-3054.2012.01611.X
P577
2012-04-16T00:00:00Z