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Alterations of Intracellular Ca~(2+) Concentration and Ultrastructure in Spruce Apical Bud Cells during Seasonal Transition
引用本文:Paul H.Li. Alterations of Intracellular Ca~(2+) Concentration and Ultrastructure in Spruce Apical Bud Cells during Seasonal Transition[J]. 中国林学(英文版), 2004, 6(1)
作者姓名:Paul H.Li
作者单位:Laboratory of
摘    要:


Alterations of Intracellular Ca2+ Concentration and Ultrastructure in Spruce Apical Bud Cells during Seasonal Transition
Jian Lingcheng,Sun Delan,Deng Jiangming,Song Yanmei,Paul H.Li. Alterations of Intracellular Ca2+ Concentration and Ultrastructure in Spruce Apical Bud Cells during Seasonal Transition[J]. Forestry Studies in China, 2004, 6(1)
Authors:Jian Lingcheng  Sun Delan  Deng Jiangming  Song Yanmei  Paul H.Li
Affiliation:1. Key Laboratory of Photosynthesis and Environmental Molecular Physiology, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, P. R. China
2. Laboratory of Plant Hardiness, Department of Horticultural Science, University of Minnesota, St. Paul, Minnesota 55108, USA
Abstract:Potassium antimonite was used to localize Ca2+ in the apical bud cells of spruce from July 1999 to May 2000. During the period of active growth (July 14), Calcium precipitates, an indication of Ca2+ localization, were mainly distributed in vacuoles, intercellular spaces and cell walls. Few Ca2+ deposits localized in the cytosol and nucleus, showing a low level of the cytosolic and nuclear Ca2+ concentration in the warm summer. In August, some Ca2+ deposits appeared in the cytosol and nuclei, indicating that Ca2+ influx occurred in the cytosol and nucleus as the day length became shorter. From September to November, high levels of the cytosolic and nuclear Ca2+ remained. During the mid-winter (December and January), the distribution of Ca2+ deposits and the ultrastructures in the cells were altered dramatically. Plasmolysis occurred in many cells due to the protoplasmic dehydration. In addition plasmalemma invagination and nuclear chromatin aggregation also occurred. A large number of Ca2+ deposits appeared in the space between the plasmalemma and the cell wall. And also some Ca2+ deposits were distributed in the plastids. However, few Ca2+ deposits were observed in the cytosol and nuclei. By spring of the next year (May), when plants were de-acclimated and resumed active growth, Ca2+ subcellular localization essentially restored to that observed in July of the last year, i.e., the cells contained low cytosolic and nuclear Ca2+ concentrations; Ca2+ deposits were mainly distributed in the vacuoles, cell walls and intercellular spaces. The relationships between the seasonal changes of intracellular Ca2+ concentration and the development of dormancy/cold acclimation, as well as plasmolysis associated with dormancy and cold hardiness were discussed.
Keywords:Ca2+-cytochemistry   seasonal transition   plasmolysis   dormancy   cold hardiness   spruce
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