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首页> 外文期刊>Coral reefs: journal of the International Society for Reef Studies >A new model for the calcification of the green macro-alga Halimeda opuntia (Lamouroux)
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A new model for the calcification of the green macro-alga Halimeda opuntia (Lamouroux)

机译:绿色大型藻类Halimeda opuntia(Lamouroux)钙化的新模型

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Halimeda opuntia is a cosmopolitan marine calcifying green alga in shallow tropical marine environments. Besides Halimeda's contribution to a diverse habitat, the alga is an important sediment producer. Fallen calcareous segments of Halimeda spp. are a major component of carbonate sediments in many tropical settings and play an important role in reef framework development and carbonate platform buildup. Consequently the calcification of H. opuntia accounts for large portions of the carbonate budget in tropical shallow marine ecosystems. Earlier studies investigating the calcification processes of Halimeda spp. have tended to focus on the microstructure or the physiology of the alga, thus overlooking the interaction of physiological and abiotic processes behind the formation of the skeleton. By analyzing microstructural skeletal features of Halimeda segments with the aid of scanning electron microscopy and relating their occurrence to known physiological processes, we have been able to identify the initiation of calcification within an organic matrix and demonstrate that biologically induced cementation is an important process in calcification. For the first time, we propose a model for the calcification of Halimeda spp. that considers both the alga's physiology and the carbon chemistry of the seawater with respect to the development of different skeletal features. The presence of an organic matrix and earlier detected external carbonic anhydrase activity suggest that Halimeda spp. exhibit biotic precipitation of calcium carbonate, as many other species of marine organisms do. On the other hand, it is the formation of micro-anhedral carbonate through the alga's metabolism that leads to a cementation of living segments. Precisely, this process allows H. opuntia to contribute substantial amounts of carbonate sediments to tropical shallow seas.
机译:Halimeda opuntia是在浅热带海洋环境中钙化绿藻的国际化海洋。除了Halimeda对多样化栖息地的贡献外,藻类还是重要的沉积物产生者。 Halimeda spp的钙质碎块掉落。是许多热带环境中碳酸盐沉积物的主要成分,在珊瑚礁框架发展和碳酸盐台地建立中起着重要作用。因此,仙人掌的钙化占热带浅海生态系统碳酸盐预算的很大一部分。较早的研究调查了Halimeda spp的钙化过程。它们倾向于集中在藻类的微结构或生理上,因此忽略了骨骼形成背后的生理过程和非生物过程的相互作用。通过借助扫描电子显微镜分析Halimeda片段的微结构骨架特征并将其发生与已知的生理过程相关联,我们已经能够鉴定出有机基质内钙化的开始,并证明了生物诱导的胶结作用是钙化的重要过程。 。我们首次提出了Halimeda spp钙化模型。考虑到不同骨骼特征的发展,它既考虑了藻类的生理学又考虑了海水的碳化学。有机基质的存在和较早检测到的外部碳酸酐酶活性表明Halimeda spp。表现出碳酸钙的生物沉淀,就像许多其他种类的海洋生物一样。另一方面,通过藻类的新陈代谢形成微环状的碳酸盐导致了生命段的胶结。准确地说,该过程使仙人掌仙人掌能够为热带浅海贡献大量碳酸盐沉积物。

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