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刚果克隆桉树林分林分水平根系呼吸的两种独立估算方法:根系直接测量的尺度上推与壕沟样地法

Two independent estimations of stand-level root respiration on clonal Eucalyptus stands in Congo: up scaling of direct measurements on roots versus the trenched-plot technique.

作者信息

Marsden Claire, Nouvellon Yann, M'Bou Armel Thongo, Saint-Andre Laurent, Jourdan Christophe, Kinana Antoine, Epron Daniel

机构信息

CIRAD, Persyst, UPR-80 CIRAD, Campus de Baillarguet TA 10/C, 34398 Montpellier cedex 5, France.

UR2PI, BP 1291, Pointe Noire, Congo-Brazzaville.

出版信息

New Phytol. 2008;177(3):676-687. doi: 10.1111/j.1469-8137.2007.02300.x. Epub 2007 Dec 7.

Abstract

Root respiration at the level of a forest stand, an important component of ecosystem carbon balance, has been estimated in the past using various methods, most of them being indirect and relying on soil respiration measurements. On a 3-yr-old Eucalyptus stand in Congo-Brazzaville, a method involving the upscaling of direct measurements made on roots in situ, was compared with an independent approach using soil respiration measurements conducted on control and trenched plots (i.e. without living roots). The first estimation was based on the knowledge of root-diameter distribution and on a relationship between root diameter and specific respiration rates. The direct technique involving the upscaling of direct measurements on roots resulted in an estimation of 1.53 micromol m(-2) s(-1), c. 50% higher than the mean estimation obtained with the indirect technique (1.05 micromol m(-2) s(-1)). Monte-Carlo simulations showed that the results carried high uncertainty, but this uncertainty was no higher for the direct method than for the trenched-plot method. The reduction of the uncertainties on upscaled results requires more extensive knowledge of temperature sensitivity and more confidence and precision on the respiration rates and biomasses of fine roots.

摘要

森林生态系统层面的根系呼吸作用是生态系统碳平衡的一个重要组成部分,过去曾使用各种方法进行估算,其中大多数方法是间接的,依赖于土壤呼吸测量。在刚果布拉柴维尔一片3年生的桉树林中,将一种基于原位根系直接测量结果进行尺度放大的方法,与一种独立的方法进行了比较,后者利用在对照地块和 trenched 地块(即没有活根的地块)上进行的土壤呼吸测量。第一种估算方法基于根系直径分布的知识以及根系直径与比呼吸速率之间的关系。基于根系直接测量结果进行尺度放大的直接技术得出的估算值为1.53微摩尔·米-2·秒-1,比间接技术得出的平均估算值(1.05微摩尔·米-2·秒-1)高出约50%。蒙特卡洛模拟表明,结果具有很高的不确定性,但直接方法的不确定性并不比 trenched 地块法更高。要降低尺度放大结果的不确定性,需要更广泛地了解温度敏感性,并提高对细根呼吸速率和生物量的置信度和精度。

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