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首页> 外文期刊>Tree Physiology >Development and growth of primordial shoots in Norway spruce buds before visible bud burst in relation to time and temperature in the field
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Development and growth of primordial shoots in Norway spruce buds before visible bud burst in relation to time and temperature in the field

机译:挪威云杉芽的原始芽的发育和生长与田间时间和温度有关,可见芽破裂之前

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摘要

The timing of bud development in ecodormancy is critical for trees in boreal and temperate regions with seasonally alternating climates. The development of vegetative buds and the growth of primordial shoots (the primordial shoot ratio) in Norway spruce were followed by the naked eye and at stereo and light microscopic levels in fresh-cut and fixed buds obtained by regular field samplings during the spring of 2007, 2008 and 2009. Buds were collected from 15 randomly selected trees (all 16 years old in 2007) of one southern Finnish half-sib family. The air temperature was recorded hourly throughout the observation period. In 2008 and 2009, initial events in the buds, seen as accumulation of lipid droplets in the cortex area, started in mid-March and were depleted in late April, simultaneously with the early development of vascular tissue and primordial needles. In mid-April 2007, however, the development of the buds was at least 10 days ahead as a result of warm spells in March and early April. Variation in the timing of different developmental phases within and among the sample trees was negligible. There was no clear one-to-one correspondence between the externally visible and the internal development of the buds. The dependence of the primordial shoot ratio on different types of temperature sum was studied by means of regression analysis. High coefficients of determination (R2 ≈ 95%) were attained with several combinations of the starting time (beginning of the year/vernal equinox), the threshold value (from −3 to +5 °C), and the time step (hour/day) used in the temperature summation, i.e., the prediction power of the primordial shoot ratio models turned out to be high, but the parameter estimate values were not unambiguous. According to our results, temperature sums describe the growth of the primordial shoot inside the bud before bud burst. Thus, the results provide a realistic interpretation for the present phenological models of bud development that are based on temperature sums and external observations of bud burst only, and they also provide new tools for improving the models.
机译:对于处于季节性气候交替的北方和温带地区的树木,生态休眠中的芽发育时间至关重要。挪威云杉的营养芽生长和原始芽的生长(原始芽比率)之后,肉眼观察,并在立体和光镜水平下通过常规田间采样在2007年春季获得鲜切和固定芽分别是2008年和2009年。从一个南部芬兰半同胞家庭的15棵随机选择的树木(2007年全部16岁)中收集芽。在整个观察期内每小时记录一次空气温度。在2008年和2009年,芽的最初事件(被视为皮质区域中的脂滴的积累)始于3月中旬,并于4月下旬被消耗掉,与此同时,血管组织和原始针头也逐渐发育。但是,由于三月和四月初的温暖天气,在2007年4月中旬,芽的发育至少提前了10天。样品树内部和之间的不同发育阶段的时间变化可以忽略不计。芽的外部可见与内部发育之间没有明显的一对一对应关系。通过回归分析研究了原始芽比率对不同类型温度总和的依赖性。通过将开始时间(年/初春分点开始),阈值(从-3到+ 5°C)和时间步长(小时/小时/小时)的几种组合可获得较高的测定系数(R2≈95%)温度合计中使用的“天数”),即原始芽比率模型的预测能力被证明很高,但参数估计值并非明确。根据我们的结果,温度总和描述了芽爆发前芽内原始芽的生长。因此,结果为仅基于温度总和和芽萌发的外部观察的当前芽发育物候模型提供了现实的解释,并且它们还提供了改进模型的新工具。

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