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首页> 外文期刊>Ecology letters >Universal hydraulics of the flowering plants: vessel diameter scales with stem length across angiosperm lineages, habits and climates
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Universal hydraulics of the flowering plants: vessel diameter scales with stem length across angiosperm lineages, habits and climates

机译:开花植物的通用水力学:血管直径随被子植物谱系,习性和气候的茎长而变化

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Angiosperm hydraulic performance is crucially affected by the diameters of vessels, the water conducting conduits in the wood. Hydraulic optimality models suggest that vessels should widen predictably from stem tip to base, buffering hydrodynamic resistance accruing as stems, and therefore conductive path, increase in length. Data from 257 species (609 samples) show that vessels widen as predicted with distance from the stem apex across angiosperm orders, habits and habitats. Standardising for stem length, vessels are only slightly wider in warm/moist climates and in lianas, showing that, rather than climate or habit, plant size is by far the main driver of global variation in mean vessel diameter. Terminal twig vessels become wider as plant height increases, while vessel density decreases slightly less than expected tip to base. These patterns lead to testable predictions regarding evolutionary strategies allowing plants to minimise carbon costs per unit leaf area even as height increases.
机译:被子植物的液压性能受容器直径,木材中的导水管道的影响很大。水力优化模型表明,船体应可预测地从茎尖到基部加宽,以缓冲因茎而增加的流体动力阻力,从而延长导电路径的长度。来自257个物种(609个样本)的数据表明,随着被子植物秩序,习性和栖息地与茎尖的距离的增加,血管如预期的那样变宽。根据茎长的标准,在温暖/潮湿的气候和藤本植物中,船只的宽度略宽一些,这表明,到目前为止,植物的大小而不是气候或习性是全球平均船只直径变化的主要驱动力。随着植物高度的增加,细枝末梢容器变得更宽,而容器密度的降低略小于预期的顶端到底部。这些模式导致了关于进化策略的可验证的预测,该进化策略使植物即使高度增加也能使单位叶片面积的碳成本最小化。

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