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苍耳叶片运动中的相移归因于年龄和节律模式。

Phase shift in leaf movements of xanthium attributed to age and rhythm patterns.

作者信息

Koukkari W L, Hobbs L C, Salisbury F B

机构信息

Department of Plant Biology, University of Minnesota, St. Paul, Minnesota 55108.

出版信息

Plant Physiol. 1992 Apr;98(4):1381-5. doi: 10.1104/pp.98.4.1381.

Abstract

Leaves of cockelbur (Xanthium strumarium L.) have been reported to be in either an upright or downward position during the dark span (night) of a 24-hour cycle. Results from our studies clearly indicate that such differences in leaf position are not related to differences in ecotypes but can be attributed to age of the leaf, pattern of the waveform of the rhythm at various stages of the light-dark synchronizer regimen, and the statistical model used for the analysis of the waveform. Younger leaves reached a maximum upright position closer to the middle of the dark span, whereas older leaves reached this position closer to the end of the dark span. A phase shift of up to 6 to 10 hours may occur as the leaf ages. Results from the examination of the pattern of the waveform at four different times showed that the pattern of a younger leaf was different from that of an older leaf during the middle of the dark span, during the light-to-dark transition, and during the middle of the light span, but not during the dark-to-light transition. Linear regression, statistical analyses, and the fitting of harmonics clearly indicate that it is the trough, more than the peak, that differs with the age of the leaf.

摘要

据报道,苍耳(Xanthium strumarium L.)的叶片在24小时周期的黑暗时段(夜间)要么处于直立状态,要么处于下垂状态。我们的研究结果清楚地表明,叶片位置的这种差异与生态型差异无关,而是可归因于叶片的年龄、明暗同步调节方案不同阶段的节律波形模式以及用于波形分析的统计模型。较年轻的叶片在黑暗时段接近中间位置时达到最大直立位置,而较老的叶片在黑暗时段接近末尾位置时达到此位置。随着叶片变老,可能会出现多达6至10小时的相位偏移。在四个不同时间对波形模式进行检查的结果表明,较年轻叶片的波形模式在黑暗时段中间、从光照到黑暗的过渡期间以及光照时段中间与较老叶片不同,但在从黑暗到光照的过渡期间并非如此。线性回归、统计分析和谐波拟合清楚地表明,与叶片年龄不同的是波谷,而不是波峰。

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