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在低温锻炼中毛白杨幼苗可溶性总蛋白、RNA、DNA、RNase及抗冻性的变化
引用本文:林善枝,张志毅.在低温锻炼中毛白杨幼苗可溶性总蛋白、RNA、DNA、RNase及抗冻性的变化[J].中国林学,2002,4(2):9-15.
作者姓名:林善枝  张志毅
作者单位:北京林业大学生物科学与技术学院,北京,100083
摘    要:低温锻炼不仅提高了毛白杨幼苗存活率和抗冻性以及RNA和可溶性总蛋白的含量 ,降低了RNase活性 ,而且能减轻低温胁迫引起的RNA和可溶性总蛋白含量的下降程度和RNase活性的提高 ,有利于幼苗在恢复过程中RNA和可溶性总蛋白水平的迅速回升以及RNase活性的降低 .进一步研究发现 ,DNA含量无论在低温锻炼中还是在低温胁迫下或是在随后的恢复生长期均保持相对稳定 ;低温锻炼所引起的RNA含量的增加 ,与RNase活性的降低呈明显的负相关 ,与可溶性总蛋白含量的增加以及幼苗抗冻性的提高成正相关 .这表明低温锻炼可能抑制RNase活性 ,有效地促进RNA含量的增加 ,而RNA可能参与了可溶性总蛋白的合成及抗冻性的诱导

关 键 词:毛白杨幼苗  低温锻炼  抗冻性  可溶性总蛋白  核酸

Cold Acclimation-Induced Changes in Total Soluble Protein, RNA, DNA, Rnase and Freezing Resistance in Populus tomentosa Cuttings
Lin Shanzhi,Zhang Zhiyi.Cold Acclimation-Induced Changes in Total Soluble Protein, RNA, DNA, Rnase and Freezing Resistance in Populus tomentosa Cuttings[J].Forestry Studies in China,2002,4(2):9-15.
Authors:Lin Shanzhi  Zhang Zhiyi
Abstract:The changes in the contents of total soluble protein and RNA, the activity of RNase in leaves and branches of Populus tomentosa cuttings at various periods (viz: cold acclimation, deacclimation, chilling stress and the recovery after chilling stress), and the survival rate and the freezing resistance of cuttings during cold acclimation at - 3℃ were investigated. Results showed that cold acclimation not only increased the contents of total soluble protein and RNA, the survival rates and the freezing resistance of cuttings, decreased the activity of RNase, but also reduced the declining degree of total soluble protein and RNA contents, and the increasing level of RNase caused by chilling stress as compared with the controls. In addition, cold acclimation augmented the increase in the level of total soluble protein and RNA, and facilitated the decrease of RNase during the recovery periods. Further analysis found that the DNA content of all treatments kept relative stability at various periods. The changes in total soluble protein, RNA and RNase were closely related to the freezing resistance of cuttings. It appears that the increase of RNA content caused by cold acclimation-induced decrease of RNase activity may be involved in the accumulation of total soluble protein and the induction of freezing resistance of cuttings.
Keywords:Populus tomentosa    cold acclimation  freezing resistance  total soluble protein  nucleic acid
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