首页> 外文期刊>Coral reefs: journal of the International Society for Reef Studies >Relationship between symbiont density and photosynthetic carbon acquisition in the temperate coral Cladocora caespitosa
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Relationship between symbiont density and photosynthetic carbon acquisition in the temperate coral Cladocora caespitosa

机译:温带珊瑚Cladocora caespitosa共生体密度与光合碳吸收的关系

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This study quantified variation in net photosynthetic carbon gain in response to natural fluctuations in symbiont density for the Mediterranean coral Cladocora caespitosa, and evaluated which density maximized photosynthetic carbon acquisition. To do this, carbon acquisition was modeled as an explicit function of symbiont density. The model was parameterized using measurements of rates of photosynthesis and respiration for small colonies with a broad range of zooxanthella concentrations. Results demonstrate that rates of net photosynthesis increase asymptotically with symbiont density, whereas rates of respiration increase linearly. In combination, these functional responses meant that colony energy acquisition decreased at both low and at very high zooxanthella densities. However, there was a wide range of symbiont densities for which net daily photosynthesis was approximately equivalent. Therefore, significant changes in symbiont density do not necessarily cause a change in autotrophic energy acquisition by the colony. Model estimates of the optimal range of cell densities corresponded well with independent observations of symbiont concentrations obtained from field and laboratory studies of healthy colonies. Overall, this study demonstrates that the seasonal fluctuations, in symbiont numbers observed in healthy colonies of the Mediterranean coral investigated, do not have a strong effect on photosynthetic energy acquisition.
机译:这项研究量化了响应地中海共生藻(Cladocora caespitosa)共生体密度的自然波动而产生的净光合作用碳增加量的变化,并评估了哪种密度最大程度地提高了光合碳的获取。为此,将碳获取建模为共生体密度的显式函数。使用测量范围广泛的黄原虫浓度的小菌落,通过光合作用和呼吸速率的测量对模型进行参数化。结果表明,净光合作用速率随着共生体密度的增加而渐近增加,而呼吸速率则线性增加。结合起来,这些功能性反应意味着在较低的和较高的虫黄藻密度下,菌落能量的获取都减少了。但是,共生体密度范围很广,其每日净光合作用大约相等。因此,共生体密度的显着变化并不一定会导致菌落自养能量获取发生变化。最佳细胞密度范围的模型估计值与从健康菌落的田间研究和实验室研究中获得的共生体浓度的独立观察结果非常吻合。总体而言,这项研究表明,在所调查的地中海珊瑚健康群落中观察到的共生体数量季节性波动,对光合作用能量的获取没有强烈影响。

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