Higuchi Tomihiko, Fujimura Hiroyuki, Yuyama Ikuko, Harii Saki, Agostini Sylvain, Oomori Tamotsu
Graduate School of Science and Technology, Shizuoka University, Suruga-ku, Shizuoka, Japan.
Department of Chemistry, Biology and Marine Science, University of the Ryukyus, Nishihara, Okinawa, Japan.
PLoS One. 2014 Mar 7;9(3):e91021. doi: 10.1371/journal.pone.0091021. eCollection 2014.
Modern scleractinian coral skeletons are commonly composed of aragonite, the orthorhombic form of CaCO3. Under certain conditions, modern corals produce calcite as a secondary precipitate to fill pore space. However, coral construction of primary skeletons from calcite has yet to be demonstrated. We report a calcitic primary skeleton produced by the modern scleractinian coral Acropora tenuis. When uncalcified juveniles were incubated from the larval stage in seawater with low mMg/Ca levels, the juveniles constructed calcitic crystals in parts of the primary skeleton such as the septa; the deposits were observable under Raman microscopy. Using scanning electron microscopy, we observed different crystal morphologies of aragonite and calcite in a single juvenile skeleton. Quantitative analysis using X-ray diffraction showed that the majority of the skeleton was composed of aragonite even though we had exposed the juveniles to manipulated seawater before their initial crystal nucleation and growth processes. Our results indicate that the modern scleractinian coral Acropora mainly produces aragonite skeletons in both aragonite and calcite seas, but also has the ability to use calcite for part of its skeletal growth when incubated in calcite seas.
现代造礁石珊瑚骨骼通常由文石组成,文石是碳酸钙的正交晶型。在某些条件下,现代珊瑚会产生方解石作为次生沉淀物来填充孔隙空间。然而,由方解石构建初级骨骼的珊瑚尚未得到证实。我们报告了现代造礁石珊瑚细枝鹿角珊瑚产生的方解石初级骨骼。当未钙化的幼体从幼虫阶段开始在低镁钙比的海水中培育时,幼体会在初级骨骼的部分区域(如隔膜)构建方解石晶体;这些沉积物在拉曼显微镜下可见。使用扫描电子显微镜,我们在单个幼体骨骼中观察到了文石和方解石不同的晶体形态。使用X射线衍射进行的定量分析表明,尽管在幼体最初的晶体成核和生长过程之前我们将其暴露于经过处理的海水中,但大部分骨骼仍由文石组成。我们的结果表明,现代造礁石珊瑚细枝鹿角珊瑚在文石海和方解石海中主要产生文石骨骼,但在方解石海中培育时,它也有能力在部分骨骼生长过程中使用方解石。