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芽休眠前控制条件下离体挪威云杉枝条营养芽发育解剖和形态学

Anatomy and morphology in developing vegetative buds on detached Norway spruce branches in controlled conditions before bud burst.

机构信息

Finnish Forest Research Institute, Joensuu Research Unit, P.O. Box 68, FI-80101 Joensuu, Finland.

出版信息

Tree Physiol. 2009 Nov;29(11):1457-65. doi: 10.1093/treephys/tpp078. Epub 2009 Sep 22.

Abstract

We studied the light and stereomicroscopic structure of developing vegetative buds from a 16-year-old Norway spruce [Picea abies (L.) Karst.] of southern Finnish origin in relation to temperature sum and to externally visible changes in the buds before and during bud burst in forcing conditions. Branches were collected on 17 January and transferred to the greenhouse where they were first subjected to preforcing conditions (darkness, +4 degrees C) for 7 days and then to the forcing conditions (day length 12 h, +20 degrees C). Buds were sampled 20 times between 17 January and 13 February. Air temperature was recorded hourly throughout the study period. The first microscopic change was a temporary increase in the size and number of lipid droplets before the onset of temperature sum (T > or = +5 degrees C) accumulation. From the 4th to the 9th day under the forcing conditions, tracheids started to develop from the base up to the top of the bud. This was closely synchronized with an observed morphological change in the shape of needle tip from rounded to pointed ones. Development from the first visible change in the bud scales on the 12th forcing day to bud burst took 9 days when the temperature sum was 313 d.d. The temperature sums in our experiment overestimated the requirements of temperature sum for bud development phases measured in the field. Bud development could be divided into four structural phases. The first two phases, i.e., morphological changes in the primary needles, occurred without any externally visible changes in the buds. Thus, these phases have a potential for testing and improving the phenological models, which, up to now, have mainly been based on the bud burst observation by the naked eye.

摘要

我们研究了 16 年生来自芬兰南部的挪威云杉[Picea abies (L.) Karst.]营养芽在强制萌发条件下的发育与温度总和以及芽在萌发前和萌发期间外部可见变化的关系。在 1 月 17 日收集树枝并将其转移到温室中,首先在预萌发条件下(黑暗,+4°C)放置 7 天,然后在强制萌发条件下(日照 12 小时,+20°C)放置。在 1 月 17 日至 2 月 13 日期间进行了 20 次采样。在整个研究期间,每小时记录一次空气温度。在温度总和(T≥+5°C)积累之前,第一个微观变化是暂时增加了脂质滴的大小和数量。在强制条件下的第 4 天至第 9 天,从芽的底部到顶部开始发育管胞。这与针状尖端从圆形到尖形的形态变化密切同步。从第 12 天强制萌发日芽鳞片的第一个可见变化到芽萌发,当温度总和为 313 d.d. 时,需要 9 天。我们实验中的温度总和高估了在田间测量的芽发育阶段对温度总和的要求。芽发育可以分为四个结构阶段。前两个阶段,即初生针叶的形态变化,在芽上没有任何外部可见的变化。因此,这些阶段有可能测试和改进物候模型,这些模型迄今为止主要基于肉眼观察芽的爆发。

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