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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Growth and survivorship of dipterocarp seedlings: differences in shade persistence create a special case of dispersal limitation
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Growth and survivorship of dipterocarp seedlings: differences in shade persistence create a special case of dispersal limitation

机译:罗汉松幼苗的生长和存活:荫影持久性的差异造成了分散限制的特殊情况

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摘要

A series of growth experiments and observations on natural populations have been carried out on dipterocarp species of contrasting ecology growing in artificial gaps and the forest understorey. These studies have demonstrated that although differences exist between species in photosynthetic and growth responses to the high-light environment, competition for light in canopy gaps is highly asymmetrical and tends to reinforce any pre-existing dominance hierarchy. We propose that differences in seedling persistence in forest canopy shade are highly influenced by species-specific biotic and abiotic interactions. Our experiments suggest that as seedlings, dipterocarp species trade off traits which enhance persistence and growth in shade against those that enhance their ability to exploit gaps. Less competitive species survive for progressively longer periods of time after a gregarious fruiting event. This leads to significant shifts with time in the number of species present in the seedling bank and hence in the importance of interspecific competition in determining which species dominates regrowth in gaps. We propose that this special case of dispersal limitation is more likely to account for coexistence of dipterocarp species than differences in growth responses to gaps of different size, with stochastic and environmental variables interacting to determine species distribution and abundance.
机译:已经对在人工间隙和林下层中的生态学形成鲜明对比的二生果树种进行了一系列的自然种群生长实验和观察。这些研究表明,尽管物种之间在光合和对强光环境的生长响应之间存在差异,但在冠层间隙中竞争光是高度不对称的,并倾向于加强任何先前存在的优势等级。我们提出,林冠树荫下幼苗持久性的差异受到物种特异性生物和非生物相互作用的高度影响。我们的实验表明,作为树苗,罗汉果种在权衡下增加了树荫下的持久性和生长,而对那些增强利用缺口的能力的树种则进行了权衡。具有竞争性的结实事件后,竞争能力较弱的物种将生存更长的时间。这导致幼苗库中存在的物种数量随时间发生重大变化,因此,种间竞争在确定哪些物种在缺口中占主导地位的重要性方面具有重要意义。我们提出,这种分散限制的特殊情况比起对不同大小的缺口的生长响应差异而言,更可能解释了双果皮物种的共存,而随机和环境变量相互作用来确定物种的分布和丰度。

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