Title of article :
Phylogenetic Analyses in Cornus Substantiate Ancestry of Xylem Supercooling Freezing Behavior and Reveal Lineage of Desiccation Related Proteins
Author/Authors :
Karlson، Dale T. نويسنده , , Xiang، (Jenny) Qiu-Yun نويسنده , , Stirm، Vicki E. نويسنده , , Shirazi، A.M. نويسنده , , Ashworth، Edward N. نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
-1653
From page :
1654
To page :
0
Abstract :
The response of woody plant tissues to freezing temperature has evolved into two distinct behaviors: an avoidance strategy, in which intracellular water supercools, and a freeze-tolerance strategy, where cells tolerate the loss of water to extracellular ice. Although both strategies involve extracellular ice formation, supercooling cells are thought to resist freeze-induced dehydration. Dehydrin proteins, which accumulate during cold acclimation in numerous herbaceous and woody plants, have been speculated to provide, among other things, protection from desiccative extracellular ice formation. Here we use Cornus as a model system to provide the first phylogenetic characterization of xylem freezing behavior and dehydrin-like proteins. Our data suggest that both freezing behavior and the accumulation of dehydrin-like proteins in Cornus are lineage related; supercooling and nonaccumulation of dehydrinlike proteins are ancestral within the genus. The nonsupercooling strategy evolved within the blue- or white-fruited subgroup where representative species exhibit high levels of freeze tolerance. Within the blue- or white-fruited lineage, a single origin of dehydrin-like proteins was documented and displayed a trend for size increase in molecular mass. Phylogenetic analyses revealed that an early divergent group of red-fruited supercooling dogwoods lack a similar protein. Dehydrin-like proteins were limited to neither nonsupercooling species nor to those that possess extreme freeze tolerance.
Keywords :
Transcranial magnetic stimulation , Consciousness , Nonlocality , Patterned photostimulation , Visual evoked potential , Transferred potential , Chimpanzees , Auditory stimulation , Dolphins
Journal title :
PLANT PHYSIOLOGY
Serial Year :
2004
Journal title :
PLANT PHYSIOLOGY
Record number :
113691
Link To Document :
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