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俄勒冈州西部老龄森林中的树木异速生长、叶片大小与成年树木大小

Tree allometry, leaf size and adult tree size in old-growth forests of western Oregon.

作者信息

King D A

机构信息

Smithsonian Tropical Research Institute, APO, Miami, FL 34002-0011, USA.

出版信息

Tree Physiol. 1991 Oct;9(3):369-81. doi: 10.1093/treephys/9.3.369.

DOI:10.1093/treephys/9.3.369
PMID:14972848
Abstract

Relationships between tree height and crown dimensions and trunk diameter were determined for shade-tolerant species of old-growth forests of western Oregon. The study included both understory and overstory species, deciduous and evergreen angiosperms and evergreen conifers. A comparison of adult understory species with sapling overstory species of similar height showed greater crown width and trunk diameter in the former, whether the comparison is made among conifers or deciduous trees. Conifer saplings had wider crowns than deciduous saplings, but the crown widths of the two groups converged with increase in tree height. Conifer saplings had thicker trunks than deciduous saplings of similar crown width, possibly because of selection for resistance to stem bending under snow loads. The results suggest that understory species have morphologies that increase light interception and persistence in the understory, whereas overstory species allocate their biomass for efficient height growth, thereby attaining the high-light environment of the canopy. The greater crown widths and the additional strength requirements imposed by snow loads on conifer saplings result in less height growth per biomass increment in conifer saplings than in deciduous saplings. However, the convergence in crown width of the two groups at heights greater than 20 m, and the proportionately smaller effect of snow loads on large trees, may result in older conifers equalling or surpassing deciduous trees in biomass allocation to height growth.

摘要

研究确定了俄勒冈州西部老龄森林耐荫树种的树高与树冠尺寸及树干直径之间的关系。该研究涵盖了林下和林冠层树种、落叶和常绿被子植物以及常绿针叶树。对成年林下树种与高度相似的幼龄林冠层树种进行比较发现,无论针叶树还是落叶树,前者的树冠宽度和树干直径更大。针叶树幼树的树冠比落叶树幼树的树冠更宽,但随着树高增加,两组的树冠宽度趋于一致。在树冠宽度相似的情况下,针叶树幼树的树干比落叶树幼树的树干更粗,这可能是因为在雪荷载下对茎干抗弯曲能力的选择。结果表明,林下树种具有增加在林下遮荫处的光截获和持久性的形态,而林冠层树种将生物量分配用于高效的高度生长,从而获得树冠层的高光环境。针叶树幼树更大的树冠宽度以及雪荷载对其施加的额外强度要求,导致针叶树幼树每单位生物量增加的高度生长比落叶树幼树少。然而,两组在树高超过20米时树冠宽度趋于一致,且雪荷载对大树的影响相对较小,这可能导致老龄针叶树在生物量分配到高度生长方面与落叶树相当或超过落叶树。

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