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碳酸钙形成过程中骨骼内珊瑚有机基质的组装

Assembly of the Intraskeletal Coral Organic Matrix during Calcium Carbonate Formation.

作者信息

Milita Silvia, Zaquin Tal, Fermani Simona, Montroni Devis, Pinkas Iddo, Barba Luisa, Falini Giuseppe, Mass Tali

机构信息

CNR-Institute for Microelectronic and Microsystems, via Gobetti 101, Bologna 40129, Italy.

Department of Marine Biology, The Leon H. Charney School of Marine Sciences, University of Haifa, Mt. Carmel, Haifa 3498838, Israel.

出版信息

Cryst Growth Des. 2023 Jul 15;23(8):5801-5811. doi: 10.1021/acs.cgd.3c00401. eCollection 2023 Aug 2.

Abstract

Scleractinia coral skeleton formation occurs by a heterogeneous process of nucleation and growth of aragonite in which intraskeletal soluble organic matrix molecules, usually referred to as SOM, play a key role. Several studies have demonstrated that they influence the shape and polymorphic precipitation of calcium carbonate. However, the structural aspects that occur during the growth of aragonite have received less attention. In this research, we study the deposition of calcium carbonate on a model substrate, silicon, in the presence of SOM extracted from the skeleton of two coral species representative of different living habitats and colonization strategies, which we previously characterized. The study is performed mainly by grazing incidence X-ray diffraction with the support of Raman spectroscopy and electron and optical microscopies. The results show that SOM macromolecules once adsorbed on the substrate self-assembled in a layered structure and induced the oriented growth of calcite, inhibiting the formation of vaterite. Differently, when SOM macromolecules were dispersed in solution, they induced the deposition of amorphous calcium carbonate (ACC), still preserving a layered structure. The entity of these effects was species-dependent, in agreement with previous studies. In conclusion, we observed that in the setup required by the experimental procedure, the SOM from corals appears to present a 2D lamellar structure. This structure is preserved when the SOM interacts with ACC but is lost when the interaction occurs with calcite. This knowledge not only is completely new for coral biomineralization but also has strong relevance in the study of biomineralization on other organisms.

摘要

石珊瑚骨骼的形成是一个文石成核和生长的异质过程,其中骨骼内的可溶性有机基质分子(通常称为SOM)起着关键作用。多项研究表明,它们会影响碳酸钙的形状和多晶型沉淀。然而,文石生长过程中的结构方面受到的关注较少。在本研究中,我们研究了在从两种代表不同生活栖息地和定殖策略的珊瑚骨骼中提取的SOM存在下,碳酸钙在模型底物硅上的沉积情况,我们之前已对这两种珊瑚进行了表征。该研究主要通过掠入射X射线衍射进行,并辅以拉曼光谱以及电子显微镜和光学显微镜。结果表明,SOM大分子一旦吸附在底物上,就会自组装成层状结构,并诱导方解石的定向生长,抑制球霰石的形成。不同的是,当SOM大分子分散在溶液中时,它们会诱导无定形碳酸钙(ACC)的沉积,且仍保留层状结构。这些效应的程度因物种而异,这与之前的研究一致。总之,我们观察到在实验过程所需的设置中,来自珊瑚的SOM似乎呈现出二维层状结构。当SOM与ACC相互作用时,这种结构得以保留,但当与方解石相互作用时则会消失。这一知识不仅对珊瑚生物矿化来说是全新的,而且在其他生物体生物矿化的研究中也具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d607/10401569/6e099d9da2cd/cg3c00401_0001.jpg

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