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首页> 外文期刊>Annals of Botany >Light requirements of Australian tropical vs. cool-temperate rainforest tree species show different relationships with seedling growth and functional traits.
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Light requirements of Australian tropical vs. cool-temperate rainforest tree species show different relationships with seedling growth and functional traits.

机译:澳大利亚热带与温带雨林树种的光需求显示出与幼苗生长和功能性状的不同关系。

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Background and Aims: A trade-off between shade tolerance and growth in high light is thought to underlie the temporal dynamics of humid forests. On the other hand, it has been suggested that tree species sorting on temperature gradients involves a trade-off between growth rate and cold resistance. Little is known about how these two major trade-offs interact. Methods: Seedlings of Australian tropical and cool-temperate rainforest trees were grown in glasshouse environments to compare growth versus shade-tolerance trade-offs in these two assemblages. Biomass distribution, photosynthetic capacity and vessel diameters were measured in order to examine the functional correlates of species differences in light requirements and growth rate. Species light requirements were assessed by field estimation of the light compensation point for stem growth. Results: Light-demanding and shade-tolerant tropical species differed markedly in relative growth rates (RGR), but this trend was less evident among temperate species. This pattern was paralleled by biomass distribution data: specific leaf area (SLA) and leaf area ratio (LAR) of tropical species were significantly positively correlated with compensation points, but not those of cool-temperate species. The relatively slow growth and small SLA and LAR of Tasmanian light-demanders were associated with narrow vessels and low potential sapwood conductivity. Conclusions: The conservative xylem traits, small LAR and modest RGR of Tasmanian light-demanders are consistent with selection for resistance to freeze-thaw embolism, at the expense of growth rate. Whereas competition for light favours rapid growth in light-demanding trees native to environments with warm, frost-free growing seasons, frost resistance may be an equally important determinant of the fitness of light-demanders in cool-temperate rainforest, as seedlings establishing in large openings are exposed to sub-zero temperatures that can occur throughout most of the year.Digital Object Identifier http://dx.doi.org/10.1093/aob/mcs289
机译:背景和目的:阴暗容忍度与强光下的生长之间的权衡被认为是潮湿森林的时间动态基础。另一方面,已经提出根据温度梯度分类的树种涉及在生长速率和抗寒性之间的权衡。对于这两个主要的权衡如何相互作用鲜为人知。方法:在温室环境中种植澳大利亚热带和温带雨林树木的幼苗,以比较这两种组合的生长与耐荫性之间的权衡。测量生物量分布,光合能力和血管直径,以检查光需求和生长速率上物种差异的功能相关性。通过田间估计茎生长的光补偿点来评估物种的光需求。结果:对光和耐阴的热带树种的相对生长率(RGR)有显着差异,但在温带树种中这种趋势并不明显。这种模式与生物量分布数据平行:热带物种的比叶面积(SLA)和叶面积比(LAR)与补偿点显着正相关,而与温带物种的补偿点却没有。塔斯马尼亚轻型需求的相对缓慢的生长和小的SLA和LAR与狭窄的血管和低边材的电导率有关。结论:塔斯马尼亚轻需求的保守的木质部特征,小的LAR和适中的RGR与选择抗冻融栓塞相一致,但以生长速度为代价。争光会促进生长在温暖,无霜生长季节环境中的光需求树木的快速生长,而抗寒性可能是决定温度需求的因素,在凉爽的热带雨林中,对光需求的适应性同样重要,数字对象标识符http://dx.doi.org/10.1093/aob/mcs289

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