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首页> 外文期刊>The Journal of Experimental Biology >Photobehavior of stony corals: responses to light spectra and intensity
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Photobehavior of stony corals: responses to light spectra and intensity

机译:石质珊瑚的光行为:对光谱和强度的响应

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摘要

Tentacle expansion and contraction were investigated in four zooxanthellate coral species and one azooxanthellate coral (Cladopsammia gracilis). Favia favus, Plerogyra sinuosa and Cladopsammia gracilis expand their tentacles at night, while tentacles in Goniopora lobata and Stylophora pistillata are expanded continuously. Light at wavelengths in the range 400-520 nm was most effective in eliciting full tentacle contraction in F. favus and in P. sinuosa. Higher light intensities in the range 660-700 nm also caused tentacle contractions in F. favus. Tentacles in C gracilis did not respond to light. Zooxanthellar densities in tentacles were significantly higher in G. lobata, which has continuously expanded tentacles, than in F. favus and P. sinousa, where tentacles are expanded at night. Photosynthetic efficiency in F. favus and P. sinuosa was lower in specimens with contracted tentacles. However, in the dark, no differences were found in the maximum quantum yield of photochemistry in PSII (Fv/Fm) of the expanded versus the contracted tentacles of any of the four species. This work suggests that species whose tentacles remain continuously expanded have either dense algal populations in their tentacles, as in G. lobata, or minute tentacles, like S. pistillata. Dense algal populations in tentacles allow harvesting of light while small tentacles do not scatter light or shade zooxanthellae in the underlying body of the polyp.
机译:研究了四种动物黄藻和一种偶氮黄藻珊瑚(Cladopsammia gracilis)的触手膨胀和收缩。 Favia favus,Plerogyra sinuosa和Cladopsammia gracilis在夜间扩大触角,而Goniopora lobata和Stylophora pistillata中的触角则不断扩大。波长在400-520 nm范围内的光最能引起F. favus和P. sinuosa的完全触手收缩。 660-700 nm范围内的较高光强度也会引起F. favus的触手收缩。细齿C的触手对光没有反应。在触角不断扩展的球状念珠菌中,触角中的虫黄质密度显着高于夜间在触角中扩展的F. favus和P. sinousa。触角收缩的标本中F. favus和P. sinuosa的光合效率较低。然而,在黑暗中,四个物种中任一物种的膨胀触角和收缩触角的PSII的光化学最大量子产率(Fv / Fm)均未发现差异。这项工作表明,其触角保持连续扩张的物种在其触角中具有密集的藻类种群(例如,G。lobata),或者在微小的触角中(如S. pistillata)。触手中密集的藻类种群可以收集光,而小触手则不会在息肉下面的身体中散射光或遮蔽虫黄藻。

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