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成熟树木单个芽中光周期的感知调节着展叶。

Perception of photoperiod in individual buds of mature trees regulates leaf-out.

作者信息

Zohner Constantin M, Renner Susanne S

机构信息

Systematic Botany and Mycology, Department of Biology, Munich University (LMU), 80638, Munich, Germany.

出版信息

New Phytol. 2015 Dec;208(4):1023-30. doi: 10.1111/nph.13510. Epub 2015 Jun 12.

Abstract

Experimental data on the perception of day length and temperature in dormant temperate zone trees are surprisingly scarce. In order to investigate when and where these environmental signals are perceived, we carried out bagging experiments in which buds on branches of Fagus sylvatica, Aesculus hippocastanum and Picea abies trees were exposed to natural light increase or kept at constant 8-h days from December until June. Parallel experiments used twigs cut from the same trees, harvesting treated and control twigs seven times and then exposing them to 8- or 16-h days in a glasshouse. Under 8-h days, budburst in Fagus outdoors was delayed by 41 d and in Aesculus by 4 d; in Picea, day length had no effect. Buds on nearby branches reacted autonomously, and leaf primordia only reacted to light cues in late dormancy after accumulating warm days. Experiments applying different wavelength spectra and high-resolution spectrometry to buds indicate a phytochrome-mediated photoperiod control. By demonstrating local photoperiodic control of buds, revealing the time when these signals are perceived, and showing the interplay between photoperiod and chilling, this study contributes to improved modelling of the impact of climate warming on photosensitive species.

摘要

关于温带休眠树木对日照长度和温度感知的实验数据出奇地匮乏。为了研究这些环境信号在何时何地被感知,我们进行了套袋实验,在实验中,从12月到6月,将欧洲水青冈、七叶树和欧洲云杉树枝上的芽暴露在自然光增加的环境中,或保持在8小时日照时长恒定的环境中。平行实验使用从同一棵树上剪下的嫩枝,对处理过的和对照嫩枝进行七次采收,然后将它们置于温室中,使其接受8小时或16小时的日照。在8小时日照条件下,欧洲水青冈户外芽的萌发延迟了41天,七叶树延迟了4天;而在欧洲云杉中,日照长度没有影响。附近树枝上的芽自主做出反应,叶原基仅在积累了温暖的日子后,在休眠后期才对光照信号做出反应。对芽应用不同波长光谱和高分辨率光谱的实验表明,这是一种由光敏色素介导的光周期控制。通过证明芽的局部光周期控制,揭示这些信号被感知的时间,并展示光周期与低温之间的相互作用,本研究有助于改进对气候变暖对光敏物种影响的建模。

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