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Highly predictable photosynthetic production in natural macroalgal communities from incoming and absorbed light

机译:天然大型藻类群落从入射和吸收的光中可高度预测的光合作用产生

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Photosynthesis-irradiance relationships of macroalgal communities and thalli of dominant species in shallow coastal Danish waters were measured over a full year to test how well community production can be predicted from environmental (incident irradiance and temperature) and community variables (canopy absorptance, species number and thallus metabolism). Detached thalli of dominant species performed optimally at different times of the year, but showed no general seasonal changes in photosynthetic features. Production capacity of communities at high light varied only 1.8-fold over the year and was unrelated to incident irradiance, temperature and mean thallus photosynthesis, while community absorptance was a highly significant predictor. Actual rates of community photosynthesis were closely related to incident and absorbed irradiance alone. Community absorptance in turn was correlated to canopy height and species richness. The close relationship of community photosynthesis to irradiance is due to the fact that (1) large differences in thallus photosynthesis of individual species are averaged out in communities composed of several species, (2) seasonal replacement of species keeps communities metabolically active, and (3) maximum possible absorptance at 100% constrains the total photosynthesis of all species. Our results imply that the photosynthetic production of macroalgal communities is more predictable than their complex and dynamic nature suggest and that predictions are possible over wide spatial scales in coastal waters by measurements of vegetation cover, incoming irradiance and canopy absorptance.
机译:全年测量丹麦浅海沿海水域大型藻类群落和优势物种的藻类的光合作用-辐照度关系,以测试如何根据环境(入射照度和温度)和群落变量(冠层吸收率,物种数和all体代谢)。优势物种的分离拟南芥在一年中的不同时间表现最佳,但光合作用特征没有普遍的季节性变化。全年高光下社区的生产能力变化仅为1.8倍,与入射辐照度,温度和平均th光合作用无关,而社区的吸收率是一个非常重要的预测指标。社区光合作用的实际速率仅与入射光和吸收辐射密切相关。群落吸收率又与树冠高度和物种丰富度相关。群落光合作用与辐照度之间的密切关系是由于以下事实:(1)在由数个物种组成的群落中,单个物种的all光合作用差异很大,(2)物种的季节性替换使群落代谢活跃,以及(3) )100%的最大可能吸收率限制了所有物种的总光合作用。我们的结果表明,大型藻类群落的光合作用产生比其复杂和动态的性质更可预测,并且通过测量植被覆盖率,入射辐照度和冠层吸收率,可以在沿海水域的广阔空间范围内进行预测。

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