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Radiative energy budget reveals high photosynthetic efficiency in symbiont-bearing corals

机译:辐射能收支揭示了共生珊瑚中高的光合作用效率

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摘要

The light field on coral reefs varies in intensity and spectral composition, and is the key regulating factor for phototrophic reef organisms, for example scleractinian corals harbouring microalgal symbionts. However, the actual efficiency of light utilization in corals and the mechanisms affecting the radiative energy budget of corals are underexplored. We present the first balanced light energy budget for a symbiont-bearing coral based on a fine-scale study of the microenvironmental photobiology of the massive coral Montastrea curta. The majority (more than 96%) of the absorbed light energy was dissipated as heat, whereas the proportion of the absorbed light energy used in photosynthesis was approximately 4.0% under an irradiance of 640 µmol photons m−2 s−1. With increasing irradiance, the proportion of heat dissipation increased at the expense of photosynthesis. Despite such low energy efficiency, we found a high photosynthetic efficiency of the microalgal symbionts showing high gross photosynthesis rates and quantum efficiencies (QEs) of approximately 0.1 O2 photon−1 approaching theoretical limits under moderate irradiance levels. Corals thus appear as highly efficient light collectors with optical properties enabling light distribution over the corallite/tissue microstructural canopy that enables a high photosynthetic QE of their photosynthetic microalgae in hospite.
机译:珊瑚礁上的光场强度和光谱组成各不相同,并且是光养性珊瑚生物(例如,带有微藻共生体的巩膜珊瑚)的关键调节因素。但是,对珊瑚光利用的实际效率以及影响珊瑚辐射能量收支的机制尚未充分研究。我们基于对大型珊瑚Montastrea curta的微环境光生物学的精细研究,提出了一种共生珊瑚的第一个平衡光能预算。在640 µmol光子m −2 的辐照下,大部分(超过96%)的吸收光能以热量的形式消散,而用于光合作用的吸收光能的比例约为4.0%。 s -1 。随着辐照度的增加,散热比例增加,但以光合作用为代价。尽管如此低的能量效率,但我们发现微藻共生体的光合作用效率很高,在中等辐照水平下,其总光合速率和量子效率(QE)约为0.1 O2光子 -1 ,接近理论极限。因此,珊瑚表现为具有光学特性的高效集光器,能够在珊瑚岩/组织的微结构冠层上进行光分布,从而使它们在鹅肝中的光合微藻具有较高的光合QE。

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