Cockell C S, Rothschild L J
Ecosystem Science and Technology Branch, NASA Ames Research Center, Moffett Field, CA, USA.
Photochem Photobiol. 1999 Feb;69(2):203-10. doi: 10.1562/0031-8655(1999)069<0203:teoura>2.3.co;2.
Photosynthetic primary production, the basis of most global food chains, is inhibited by UV radiation. Evaluating UV inhibition is therefore important for assessing the role of natural levels of UV radiation in regulating ecosystem behavior as well as the potential impact of stratospheric ozone depletion on global ecosystems. As both photosynthesis and UV fluxes are subject to diurnal variations, we examined the diurnal variability of the effect of UV radiation on photosynthesis in three diverse algal mats. In one of the mats (Cyanidium caldarium) a small mean decrease in primary productivity over the whole day occurred when both UVA and UVB were screened out. In two of the mats (Lyngbya aestuarii and Zygogonium sp.) we found a mean increase in the total primary productivity over the day when UVB alone was screened and a further increase when UVA and UVB were both screened out. Variations in the effects of UV radiation were found at different times of the day. This diurnal variability may be because even under the same solar radiation flux, there are different factors that may control photosynthetic rate, including nutritional status and other physiological processes in the cell. The results show the importance of assessing the complete diurnal productivity. For some of the time points the increase in the mean was still within the standard deviations in primary productivity, illustrating the difficulty in dissecting UV effects from other natural variations.
光合作用初级生产是大多数全球食物链的基础,却受到紫外线辐射的抑制。因此,评估紫外线抑制作用对于评估自然水平的紫外线辐射在调节生态系统行为中的作用以及平流层臭氧消耗对全球生态系统的潜在影响至关重要。由于光合作用和紫外线通量都存在昼夜变化,我们研究了紫外线辐射对三种不同藻席光合作用影响的昼夜变异性。在其中一个藻席(嗜热蓝藻)中,当UVA和UVB都被滤除时,全天初级生产力出现了小幅平均下降。在另外两个藻席(河口鞘丝藻和双星藻属)中,我们发现仅滤除UVB时,全天总初级生产力平均增加,而当UVA和UVB都被滤除时,进一步增加。在一天中的不同时间发现了紫外线辐射影响的变化。这种昼夜变异性可能是因为即使在相同的太阳辐射通量下,可能控制光合速率的因素也不同,包括细胞中的营养状况和其他生理过程。结果表明评估完整昼夜生产力的重要性。对于某些时间点,平均值的增加仍在初级生产力的标准差范围内,这说明了从其他自然变化中剖析紫外线影响的困难。