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在日本具有复杂地形的凉爽温带常绿针叶林中,在两年具有对比气候的情况下对二氧化碳交换的研究。

Carbon dioxide exchange in a cool-temperate evergreen coniferous forest over complex topography in Japan during two years with contrasting climates.

机构信息

River Basin Research Center, Gifu University, 1-1 Yanagido, Gifu, 501-1193, Japan.

出版信息

J Plant Res. 2010 Jul;123(4):473-83. doi: 10.1007/s10265-009-0308-7. Epub 2010 Feb 16.

DOI:10.1007/s10265-009-0308-7
PMID:20157756
Abstract

We investigated carbon dioxide (CO(2)) exchange and its environmental response during two years with contrasting climate (2006 and 2007) in a cool-temperate mixed evergreen coniferous forest dominated by Japanese cedar (Cryptomeria japonica) and Japanese cypress (Chamaecyparis obtusa). The study, which was conducted in a mountainous region of central Japan, used the eddy-covariance technique. Our results (crosschecked using the common u () approach and van Gorsel's alternative approach) showed that annual gross primary production (GPP) and ecosystem respiration (RE) were at least 6% higher in the dry year than in the wet year, whereas net ecosystem exchange (NEE) was similar in both years. Without soil water stress, strong light stress or seasonality of plant area index during most of the study period, the forest had high metabolic activity. GPP and RE differed greatly between the two years, especially in spring (April-May) and summer (July-September), respectively. The spring GPP difference (>20%) was influenced by different winter air temperatures and snow melt timing, which controlled photosynthetic capacity in spring, and by different spring light intensities. The annual NEE differed depending on the evaluation method used, but the mean 2-year NEE estimated by the u () threshold approach [-3.39 +/- 0.11 (SD) MgC ha(-1) year(-1)] appears more reasonable in comparison with results from other forests.

摘要

我们调查了在 2006 年和 2007 年两种截然不同气候条件下(2 年)的二氧化碳(CO2)交换及其环境响应,该研究在日本中部山区的一个以日本扁柏(Cryptomeria japonica)和日本花柏(Chamaecyparis obtusa)为主的凉爽温带混合常绿针叶林中进行,采用涡度相关技术。我们的结果(使用通用 u()方法和 van Gorsel 的替代方法交叉检查)表明,在干旱年份,年总初级生产力(GPP)和生态系统呼吸(RE)至少比湿润年份高 6%,而净生态系统交换(NEE)在这两年中相似。在研究期间的大部分时间里,没有土壤水分胁迫、强光胁迫或植物面积指数的季节性,森林具有很高的代谢活性。GPP 和 RE 在这两年中有很大的差异,特别是在春季(4 月至 5 月)和夏季(7 月至 9 月)。春季 GPP 差异(>20%)受不同冬季气温和融雪时间的影响,这控制了春季的光合能力,还受不同春季光照强度的影响。年度 NEE 取决于使用的评估方法,但与其他森林的结果相比,使用 u()阈值方法估计的两年平均 NEE[-3.39 +/- 0.11(SD)MgC ha(-1) year(-1)]似乎更合理。

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本文引用的文献

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Satellite Ecology (SATECO)-linking ecology, remote sensing and micrometeorology, from plot to regional scale, for the study of ecosystem structure and function.卫星生态学(SATECO)——连接生态学、遥感和微气象学,从样地尺度到区域尺度,用于研究生态系统结构和功能。
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基于生物特征的通量塔下成熟日本雪松(Cryptomeria japonica)人工林净生态系统生产力估算。
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Factors controlling long- and short-term sequestration of atmospheric CO2 in a mid-latitude forest.
控制中纬度森林中长期和短期大气二氧化碳封存的因素。
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