首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >SEASONAL VARIABILITY IN FOLIAR CHARACTERISTICS AND PHYSIOLOGY FOR BOREAL FOREST SPECIES AT THE FIVE SASKATCHEWAN TOWER SITES DURING THE 1994 BOREAL ECOSYSTEM-ATMOSPHERE STUDY
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SEASONAL VARIABILITY IN FOLIAR CHARACTERISTICS AND PHYSIOLOGY FOR BOREAL FOREST SPECIES AT THE FIVE SASKATCHEWAN TOWER SITES DURING THE 1994 BOREAL ECOSYSTEM-ATMOSPHERE STUDY

机译:1994年北美洲生态系统-大气研究期间,五个萨斯喀彻温省塔科植物群落的叶片特征和生理特征的季节变化

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Leaf-level measurements of gas exchange, chemistry, morphology, and spectral optical properties were acquired at the five instrumented tower sites during the three 1994 growing season intensive field campaigns (IFCs) conducted near Prince Albert, Saskatchewan, as part of the Boreal Ecosystem-Atmosphere Study (BOREAS). Stands included old and young aspen (OA, YA) associated with the hazelnut shrub, old and young jack pine (OJP, YJP) stands, and an old black spruce (OBS) stand; white spruce (at YA) and an understory herb (dogbane, at OJP) were also examined. Midsummer peak photosynthesis for aspen leaves in the field (A, light saturated) and laboratory (A(max) light and CO2 saturated) was similar to 12.6 and 33-41 mu mol CO2 m(-2) s(-1). Black spruce exhibited the lowest A, 3 mu mol CO2 m(-2) s(-1). Jack pine and black spruce attained their highest A(max) (17-20 mu mol CO2 m(-2) s(-1)) in late summer/early fall. Gas exchange by white spruce was significantly higher and stomatal limitation lower than for other conifers, at levels comparable to broadleaf responses. White spruce foliage had the highest chlorophyll content in fall (similar to 41 mu g cm(-2)), followed by aspen (OA) and hazelnut (YA) in midsummer (similar to 31 mu g cm(-2)). Specific leaf mass of aspen, hazelnut, and conifer foliage was 86, similar to 47, and similar to 174 g m(-2), respectively. Leaf nitrogen content of broadleaves (18-40 g N g(-1) dry wt) was 2-3 times greater than conifer needles (8-12 g N g(-1)). Significantly larger needles were produced at OJP versus YJP, but needle number per age class was greater at YJP. The absorbed photosynthetically active radiation fraction (fAPAR) in June/July averaged similar to 80% for broadleaves and similar to 83% in conifer needles. The simple ratio (SR, near-infrared/red ratio) calculated from foliar transmittances was more strongly related to fAPAR than SR calculated from reflectances, with stronger correlation for broadleaves (r = 0.92) than for conifers (r = 0.78). [References: 22]
机译:在1994年萨斯喀彻温省艾伯特亲王城附近进行的三个生长季节密集野外活动(IFC)中,在五个仪器塔台位置进行了叶片水平的气体交换,化学,形态和光谱光学特性的测量,这是北方生态系统的一部分-大气研究(BOREAS)。展位包括与榛子灌木相关的旧的和年轻的白杨(OA,YA),旧的和年轻的杰克·派恩(OJP,YJP)展位以及旧的黑云杉(OBS)展位;还检查了白云杉(在YA)和林下草药(在OJP的狗dog树)。野外(A,饱和光)和实验室(A(最大)光和CO2饱和)的仲夏叶的仲夏峰值光合作用类似于12.6和33-41μmol CO2 m(-2)s(-1)。黑云杉表现出最低的A,3μmol CO2 m(-2)s(-1)。夏末/初秋时,杰克·松和黑云杉达到了最高A(max)(17-20μmol CO2 m(-2)s(-1))。与其他针叶树相比,白云杉的气体交换显着更高,气孔限制更低,其水平可与阔叶林媲美。白色的云杉树叶在秋季具有最高的叶绿素含量(类似于41μg cm(-2)),其次是仲夏的白杨(OA)和榛子(YA)(类似于31μg cm(-2))。白杨,榛子和针叶树的比叶质量分别为86、47和174 g m(-2)。阔叶(18-40 g N g(-1)干重)的叶氮含量是针叶树针(8-12 g N g(-1))的2-3倍。 OJP与YJP相比,生产的针头明显更大,但YJP的每个年龄段的针头数量更多。 6月/ 7月被吸收的光合有效辐射分数(fAPAR)的阔叶平均约为80%,针叶树针的平均约为83%。由叶面透射率计算出的简单比率(SR,近红外/红色比率)与由反射率计算出的SR相比,与fAPAR的相关性更强,与阔叶树(r = 0.92)的相关性强于针叶树(r = 0.78)。 [参考:22]

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