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首页> 外文期刊>Botany >Relationship between vessel porosity and leaf emergence pattern in ring- and diffuse-porous deciduous trees in a temperate hardwood forest
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Relationship between vessel porosity and leaf emergence pattern in ring- and diffuse-porous deciduous trees in a temperate hardwood forest

机译:温带阔叶林中环状和弥散性落叶乔木中血管孔隙度与叶片出苗方式的关系

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摘要

To elucidate the functional relationship between intra-annual variations in vessel diameter and leaf emergence pattern of ring-porous and diffuse-porous deciduous trees in temperate forests, we determined the temporal relationships between leaf phenology and vessel formation. Cylindrical stem cores were periodically collected from each of five ring-and diffuse-porous species, and the leaf and vessel formation were observed simultaneously. In the ring-porous species, vessel formation began within 2 weeks of leaf appearance, and most wide vessels were formed within 2 weeks of full leaf expansion. More of the trees with intermediate-type formed medium-sized vessels or sparse wide vessels than trees with the flush-type leaf emergence, especially between full leaf expansion and the end of shoot elongation. Narrow vessel formation began 2-8 weeks after full leaf expansion in all specimens. The transition between the pore-and non-pore zones was abrupt in the flush-type species, and gradual in the intermediate-type species. In contrast, diffuse-porous species formed vessels 0-8 weeks after full leaf expansion. Our findings suggest that ring-porous species form leaves and vessels synchronously to accommodate water-transport requirements, whereas diffuse-porous species form these tissues asynchronously; thus, unlike the latter type, the former species change vessel diameters according to leaf formation.
机译:为了阐明温带森林中环孔和散孔落叶乔木的血管直径年内变化与叶片出苗方式之间的功能关系,我们确定了叶片物候与血管形成之间的时间关系。从五种环状和弥散多孔物种中定期收集圆柱茎核,同时观察叶片和血管的形成。在环状多孔物种中,在叶片出现后的两周内开始形成血管,而最宽的血管在叶片完全扩张后的两周内形成。具有中间类型的树木形成中等大小的容器或稀疏的宽容器要比具有齐平的叶子出现的树木更多,特别是在叶片完全扩张和枝条伸长结束之间。在所有标本中,叶片完全扩张后的2-8周开始形成狭窄的血管。在平齐型物种中,孔和非孔区域之间的过渡是突然的,而在中型类型中,过渡是逐渐的。相反,在叶片完全扩张后0-8周,形成了弥散性多孔物种。我们的发现表明,环状多孔物种可以同步形成叶片和容器,以适应水的运输需求,而弥散多孔物种则异步地形成这些组织。因此,与后一种不同,前一种根据叶片的形成改变了容器的直径。

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