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揭示共生和温度对珊瑚钙化的影响。

Uncovering the Effects of Symbiosis and Temperature on Coral Calcification.

出版信息

Biol Bull. 2022 Feb;242(1):62-73. doi: 10.1086/716711. Epub 2022 Jan 10.

DOI:10.1086/716711
PMID:35245159
Abstract

AbstractWe tested the impact of temperature and symbiont state on calcification in corals, using the facultatively symbiotic coral as a model system. Symbiotic and aposymbiotic colonies of were reared in 15, 20, and 27 °C conditions. We used scanning electron microscopy to quantify how these physiological and environmental conditions impact skeletal structure. Buoyant weight data over time revealed that temperature significantly affects calcification rates. Scanning electron microscopy of skeletons showed that aposymbiotic colonies appear to have a lower density of calcium carbonate in actively growing septal spines. We describe a novel approach to analyze the roughness and texture of scanning electron microscopy images. Quantitative analysis of the roughness of septal spines revealed that aposymbiotic colonies have a rougher surface than symbiotic colonies in tropical conditions (27 °C). This trend reversed at 15 °C, a temperature at which the symbionts of may exhibit parasitic properties. Analysis of surface texture patterns showed that temperature impacts the spatial variance of crystals on the spine surface. Few published studies have examined the skeleton of by using scanning electron microscopy. Our approach provides a way to study detailed changes in skeletal microstructure in response to environmental parameters and can serve as a proxy for more expensive and time-consuming analyses. Utilizing a facultatively symbiotic coral that is native to both temperate and tropical regions provides new insights into the impact of both symbiosis and temperature on calcification in corals.

摘要

摘要

本研究以兼性共生珊瑚 为模式系统,测试了温度和共生体状态对珊瑚钙化的影响。将共生和非共生的 培养在 15、20 和 27°C 的条件下。我们使用扫描电子显微镜来定量研究这些生理和环境条件如何影响骨骼结构。随着时间的推移,浮力重量数据表明温度显著影响钙化速率。对 骨骼的扫描电子显微镜观察表明,非共生群体在活跃生长的隔膜刺中似乎具有较低密度的碳酸钙。我们描述了一种分析扫描电子显微镜图像粗糙度和纹理的新方法。对隔膜刺粗糙度的定量分析表明,在热带条件(27°C)下,非共生群体的表面比共生群体更粗糙。这一趋势在 15°C 时发生逆转,在这个温度下, 共生体可能表现出寄生特性。对表面纹理模式的分析表明,温度会影响刺表面晶体的空间变化。很少有研究使用扫描电子显微镜研究 的骨骼。我们的方法提供了一种研究骨骼微观结构对环境参数变化的详细变化的方法,并且可以作为更昂贵和耗时的分析的替代方法。利用既存在于温带又存在于热带地区的兼性共生珊瑚,为共生和温度对珊瑚钙化的影响提供了新的见解。

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Uncovering the Effects of Symbiosis and Temperature on Coral Calcification.揭示共生和温度对珊瑚钙化的影响。
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