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温带红松人工林中木质部汁液流量的径向变化。

Radial variations in xylem sap flux in a temperate red pine plantation forest.

作者信息

Bodo Alanna V, Arain M Altaf

机构信息

School of Earth, Environment and Society, McMaster University, Hamilton, ON Canada.

McMaster Centre for Climate Change, Hamilton, ON Canada.

出版信息

Ecol Process. 2021;10(1):24. doi: 10.1186/s13717-021-00295-4. Epub 2021 Apr 21.

Abstract

BACKGROUND

Scaling sap flux measurements to whole-tree water use or stand-level transpiration is often done using measurements conducted at a single point in the sapwood of the tree and has the potential to cause significant errors. Previous studies have shown that much of this uncertainty is related to (i) measurement of sapwood area and (ii) variations in sap flow at different depths within the tree sapwood.

RESULTS

This study measured sap flux density at three depth intervals in the sapwood of 88-year-old red pine () trees to more accurately estimate water-use at the tree- and stand-level in a plantation forest near Lake Erie in Southern Ontario, Canada. Results showed that most of the water transport (65%) occurred in the outermost sapwood, while only 26% and 9% of water was transported in the middle and innermost depths of sapwood, respectively.

CONCLUSIONS

These results suggest that failing to consider radial variations in sap flux density within trees can lead to an overestimation of transpiration by as much as 81%, which may cause large uncertainties in water budgets at the ecosystem and catchment scale. This study will help to improve our understanding of water use dynamics and reduce uncertainties in sap flow measurements in the temperate pine forest ecosystems in the Great Lakes region and help in protecting these forests in the face of climate change.

摘要

背景

将边材液流通量测量值按比例换算为整树耗水量或林分蒸腾量时,通常采用在树干边材单点进行的测量,这有可能导致显著误差。先前的研究表明,这种不确定性很大程度上与以下两点有关:(i)边材面积的测量;(ii)树干边材不同深度处液流的变化。

结果

本研究在加拿大安大略省南部伊利湖附近人工林中,对88年生红松()树边材的三个深度区间测量了液流通量密度,以更准确地估算树和林分水平的耗水量。结果表明,大部分水分运输(65%)发生在最外层边材,而边材中层和最内层深度的水分运输分别仅占26%和9%。

结论

这些结果表明,未考虑树木内部边材液流通量密度的径向变化可能导致蒸腾量高估多达81%,这可能在生态系统和集水区尺度的水分平衡中造成很大的不确定性。本研究将有助于增进我们对水分利用动态的理解,减少大湖地区温带松林生态系统中液流测量的不确定性,并有助于在气候变化背景下保护这些森林。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4595/8550132/bf0b3cc9588d/13717_2021_295_Fig1_HTML.jpg

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