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日月潮汐加速度对薄荷(Mentha × piperita L.)茎伸长生长、章动和叶片运动的影响。

The effect of lunisolar tidal acceleration on stem elongation growth, nutations and leaf movements in peppermint (Mentha × piperita L.).

作者信息

Zajączkowska U, Barlow P W

机构信息

Department of Forest Botany, Faculty of Forestry, Warsaw University of Life Sciences, Warsaw, Poland.

School of Biological Sciences, University of Bristol, Bristol, UK.

出版信息

Plant Biol (Stuttg). 2017 Jul;19(4):630-642. doi: 10.1111/plb.12561. Epub 2017 Mar 23.

Abstract

Orbital movement of the Moon generates a system of gravitational fields that periodically alter the gravitational force on Earth. This lunar tidal acceleration (Etide) is known to act as an external environmental factor affecting many growth and developmental phenomena in plants. Our study focused on the lunar tidal influence on stem elongation growth, nutations and leaf movements of peppermint. Plants were continuously recorded with time-lapse photography under constant illumination as well in constant illumination following 5 days of alternating dark-light cycles. Time courses of shoot movements were correlated with contemporaneous time courses of the Etide estimates. Optical microscopy and SEM were used in anatomical studies. All plant shoot movements were synchronised with changes in the lunisolar acceleration. Using a periodogram, wavelet analysis and local correlation index, a convergence was found between the rhythms of lunisolar acceleration and the rhythms of shoot growth. Also observed were cyclical changes in the direction of rotation of stem apices when gravitational dynamics were at their greatest. After contrasting dark-light cycle experiments, nutational rhythms converged to an identical phase relationship with the Etide and almost immediately their renewed movements commenced. Amplitudes of leaf movements decreased during leaf growth up to the stage when the leaf was fully developed; the periodicity of leaf movements correlated with the Etide rhythms. For the fist time, it was documented that lunisolar acceleration is an independent rhythmic environmental signal capable of influencing the dynamics of plant stem elongation. This phenomenon is synchronised with the known effects of Etide on nutations and leaf movements.

摘要

月球的轨道运动产生了一个引力场系统,该系统会周期性地改变地球所受的引力。已知这种月球潮汐加速度(Etide)是一种外部环境因素,会影响植物的许多生长和发育现象。我们的研究聚焦于月球潮汐对薄荷茎伸长生长、植物螺旋状摆动和叶片运动的影响。在持续光照下以及在经历5天明暗交替周期后再进行持续光照的条件下,通过延时摄影对植物进行连续记录。枝条运动的时间进程与Etide估算值的同期时间进程相关。在解剖学研究中使用了光学显微镜和扫描电子显微镜。所有植物枝条的运动都与日月加速度的变化同步。通过使用周期图、小波分析和局部相关指数,发现日月加速度的节律与枝条生长的节律之间存在趋同现象。当引力动态处于最大时,还观察到茎尖旋转方向的周期性变化。在对比明暗周期实验后,植物螺旋状摆动的节律与Etide趋同于相同的相位关系,并且几乎立即开始了新的运动。在叶片生长直至完全发育阶段的过程中,叶片运动的幅度减小;叶片运动的周期性与Etide节律相关。首次有文献记载,日月加速度是一种能够影响植物茎伸长动态的独立节律性环境信号。这一现象与Etide对植物螺旋状摆动和叶片运动的已知影响同步。

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