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两种温带落叶树种树冠内叶面积指数随个体发育的大幅下降。

Large ontogenetic declines in intra-crown leaf area index in two temperate deciduous tree species.

作者信息

Nock C A, Caspersen J P, Thomas S C

机构信息

Faculty of Forestry, University of Toronto, 33 Willcocks Street, Toronto, Ontario M5S3B3, Canada.

出版信息

Ecology. 2008 Mar;89(3):744-53. doi: 10.1890/07-0531.1.

Abstract

The widespread occurrence of age-related changes in leaf morphology and allocation suggests that the leaf area index of individual trees (intra-crown LAI) may decline late in ontogeny. We used direct, within-canopy measurements to quantify the LAI of canopy trees with exposed crowns of two temperate deciduous species. Intra-crown LAI declined from approximately 7 to 4 in Acer saccharum, and from approximately 9.5 to 6.5 in Betula alleghaniensis, as tree size increased (from 15 to 72 cm diameter at breast height [dbh]). For A. saccharum, age (which varied from 30 to 160 years) was a significantly better predictor of LAI decline than dbh. We also modeled the effect of ontogenetic declines in LAI on understory light availability and found that light transmission increases significantly as canopy trees grow and mature. Our results thus suggest that gradual declines in LAI with tree age may play an important and overlooked role in contributing to the heterogeneity of sub-canopy light regimes in mature forests.

摘要

叶片形态和分配方面与年龄相关变化的普遍存在表明,个体树木的叶面积指数(树冠内叶面积指数)可能在个体发育后期下降。我们采用树冠内直接测量的方法,对两种温带落叶树种树冠暴露在外的树冠层树木的叶面积指数进行了量化。随着树体大小增加(胸径从15厘米增加到72厘米),糖枫的树冠内叶面积指数从约7下降到4,阿勒格尼桦的树冠内叶面积指数从约9.5下降到6.5。对于糖枫而言,年龄(从30年到160年不等)比胸径更能显著预测叶面积指数的下降。我们还模拟了叶面积指数个体发育下降对林下光照可用性的影响,发现随着树冠层树木生长和成熟,光透射率显著增加。因此,我们的结果表明,叶面积指数随树龄逐渐下降可能在促成成熟森林林下光照格局异质性方面发挥重要但被忽视的作用。

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