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苏格兰松林中的水力传导率、光截获率和针叶养分浓度及其与净初级生产力的关系。

Hydraulic conductance, light interception and needle nutrient concentration in Scots pine stands and their relations with net primary productivity.

作者信息

Mencuccini M, Grace J

机构信息

Istituto di Ecologia Forestale e Selvicoltura, Università degli studi di Firenze, Via S. Bonaventura 13, 50145 Firenze, Italy.

出版信息

Tree Physiol. 1996 May;16(5):459-68. doi: 10.1093/treephys/16.5.459.

Abstract

Aboveground xylem hydraulic conductance was determined in Scots pine (Pinus sylvestris L.) trees and stands from 7 to about 60 years of age. At the stand scale, leaf area index and net primary productivity (NPP, above- plus belowground) increased and reached a plateau at about 25-30 and 15-20 years, respectively; both parameters declined in mature stands. Stand hydraulic conductance followed a similar trend to NPP, with a maximum at about 15-20 years and a pronounced reduction in old stands. At the tree scale, annual biomass growth per unit of leaf area (growth efficiency) declined with tree age, whereas aboveground sapwood volume per unit leaf area, which is linearly related to maintenance respiration costs, steadily increased. Radiation interception per unit leaf area increased significantly with reduced leaf area index of mature stands, despite increased foliage clumping in the canopies of mature trees. Needle nutrient concentration did not change in the chronosequence. Tree hydraulic conductance per unit leaf area was strongly and positively correlated with growth efficiency. We discuss our findings in the context of growth reductions in mature and old trees, and suggest that increased hydraulic resistance and maintenance respiration costs may be the main causes of reduced carbon gain in mature and old trees.

摘要

在7至约60年树龄的苏格兰松(Pinus sylvestris L.)树木及林分中测定了地上木质部水力导度。在林分尺度上,叶面积指数和净初级生产力(NPP,地上和地下部分之和)增加,并分别在约25 - 30年和15 - 20年时达到稳定水平;在成熟林分中这两个参数均下降。林分水力导度与NPP呈现相似趋势,在约15 - 20年时达到最大值,在老龄林分中显著降低。在树木尺度上,单位叶面积的年生物量增长(生长效率)随树龄下降,而单位叶面积的地上边材体积与维持呼吸成本呈线性相关,且稳步增加。尽管成熟树木冠层中叶簇增多,但成熟林分叶面积指数降低时,单位叶面积的辐射截获量显著增加。在时间序列中针叶养分浓度没有变化。单位叶面积的树木水力导度与生长效率呈强烈正相关。我们在成熟和老龄树木生长减少的背景下讨论了我们的研究结果,并提出水力阻力增加和维持呼吸成本上升可能是成熟和老龄树木碳增益减少的主要原因。

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