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Endolithic algae: an alternative source of photoassimilates during coral bleaching

机译:内藻类藻类:珊瑚漂白过程中光同化作用的替代来源

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Recent reports of worldwide coral bleaching events leading to devastating coral mortality have caused alarm among scientists and resource managers. Differential survival of coral species through bleaching events has been widely documented. We suggest that among the possible factors contributing to survival of coral species during such events are endolithic algae harboured in their skeleton, providing an alternative source of energy. We studied the dynamics of photosynthetic pigment concentrations and biomass of endoliths in the skeleton of the encrusting coral Oculina patagonica throughout a bleaching event. During repeated summer bleaching events these endolithic algae receive increased photosynthetically active radiation, increase markedly in biomass, and produce increasing amounts of photoassimilates, which are translocated to the coral. Chlorophyll concentrations and biomass of endoliths were 4.6 +/- 1.57 and 1570 +/- 427 mug cm(-2) respectively, in skeletons of relatively healthy colonies (0-40% bleaching) but up to 14.8 +/- 2.5 and 4036 +/- 764 mug cm(-2) endolith chlorophyll and biomass respectively, in skeletons of bleached colonies (greater than 40% bleaching). The translocation dynamics of 14 C-labelled photoassimilates from the endoliths to bleached coral tissue showed significantly higher 14 C activity of the endoliths harboured within the skeletons of bleached corals than that of the endoliths in non-bleached corals. This alternative source of energy may be vital for the survivorship of O. patagonica, allowing gradual recruitment of zooxanthellae and subsequent recovery during the following winter. [References: 49]
机译:最近关于全球珊瑚白化事件导致珊瑚死亡的报道使科学家和资源管理者感到震惊。珊瑚物种通过漂白事件的差异性生存已被广泛记录。我们建议,在此类事件中,可能有助于珊瑚物种生存的因素中,有在其骨架中藏有内石器藻,这提供了另一种能源。我们研究了整个漂白过程中包裹珊瑚的珊瑚藻(Oculina patagonica)骨架中光合色素浓度和内结石生物量的动力学。在夏季反复发生的白化事件中,这些内结石藻类收到增强的光合活性辐射,生物量显着增加,并产生越来越多的光同化物,这些光同化物被转移到珊瑚中。在相对健康的菌落(0-40%漂白)但高达14.8 +/- 2.5和4036 +的骨骼中,叶绿素的浓度和内在物质的生物量分别为4.6 +/- 1.57和1570 427马克杯cm(-2)。 /-分别在漂白菌落的骨架(大于40%漂白)中分别有764马克cm(-2)的内在叶绿素和生物量。 14 C标记的光同化物从内结石到漂白珊瑚组织的转运动力学表明,与未漂白珊瑚的内结石相比,在漂白珊瑚的骨架内的内结石的14 C活性明显更高。这种替代性能源可能对巴塔哥尼亚大猩猩的生存至关重要,它可以逐渐募集人畜黄藻并在随后的冬季恢复。 [参考:49]

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