Pearcy Robert W
Department of Botany, University of California, 95616, Davis, California, USA.
Oecologia. 1983 Apr;58(1):19-25. doi: 10.1007/BF00384537.
The light environment in the understory of a Hawaiian forest containing a C tree species, Euphorbia forbesii, was characterized using photosynthetic photon flux density sensors connected to portable data acquisition systems and a strip chart recorder, and hemispherical "fisheye" photographs of the canopy. During July 1980, 86 μmol cm day was received in the understory of which approximately 40% was contributed by sunflecks. The understory received 2.4% of the light reaching the top of the canopy. Nearly all sunflecks had peak photon flux densities greater than 250 μmol m s, but two-thirds were less than 0.5 min in length. The number of minutes of sunflecks received per day at any site was highly variable, depending on cloudiness and the overstory canopy structure. On a relatively clear day a 10-fold difference in the number of minutes of sunflecks was observed between sample sites. Estimates obtained from hemispherical photographs were used to calculate the annual mean potential number of minutes of sunflecks per day received by saplings of Euphorbia and a C tree species, Claoxylon sandwicense. The growth of saplings of both species was highly correlated with the estimates of the minutes of sunflecks and was similar for both species. Although C photosynthesis is usually found in plants native to high-light environments, it does not appear to confer any disadvantage in terms of growth to Euphorbia forbesii in the low-light conditions of the forest understory.
利用连接到便携式数据采集系统和带状图表记录仪的光合光子通量密度传感器以及树冠层的半球形“鱼眼”照片,对含有一种C3树种——福布斯大戟的夏威夷森林林下的光照环境进行了表征。1980年7月期间,林下接收到86 μmol·cm⁻²·d⁻¹的光照,其中约40%由光斑贡献。林下接收到到达树冠顶部光照的2.4%。几乎所有光斑的峰值光子通量密度都大于250 μmol·m⁻²·s⁻¹,但三分之二的光斑长度小于0.5分钟。任何地点每天接收到的光斑分钟数变化很大,这取决于云量和上层树冠结构。在相对晴朗的一天,不同采样点接收到的光斑分钟数相差10倍。利用从半球形照片获得的估计值,计算了福布斯大戟和一种C3树种——桑威奇闭花木幼树每天接收到的光斑分钟数的年平均潜在值。这两个树种幼树的生长都与光斑分钟数的估计值高度相关,且两个树种相似。尽管C3光合作用通常见于原产于高光环境的植物中,但在森林林下的低光照条件下,它似乎并未给福布斯大戟的生长带来任何劣势。