Development of a coral fluorescent protein monitoring system

Y. Furushima, Sadao Suzuki, T. Maruyama, W. Phoel, M. Nagao
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Abstract

This paper describes the development of an apparatus which can take a time series of coral fluorescence images. The purpose of this study is to provide an outline of a “coral fluorescent protein monitoring system”. We discuss the method of acquisition of the fluorescent images and the prospects for future studies. Fluorescent proteins are very common in reef corals. For example, fluorescent proteins such as Midoriishi-Cyan (MiCy), which produces blue-green fluorescence, and Azami-Green (AG), which produces green fluorescence, were identified in Galaxea fascicularis and Acropora sp‥ A correlation between bleaching resistance in corals and the concentration of fluorescent proteins in their tissue was found after the large-scale bleaching event which struck the Great Barrier Reef in 1998. Therefore, coral fluorescence proteins play an important role in protecting coral zooxanthellae (symbiotic algae) against excessive sunlight. Coral bleaching occurs when zooxanthellae leave their coral host. The result of this loss is the whitening of coral colonies. Therefore fluctuations in the concentration of fluorescent proteins in corals may be used as an index of coral activity. The responses of coral activity to environmental changes in coral reef regions may be evaluated by carrying out simultaneous measurements of coral fluorescence and environmental parameters.
珊瑚荧光蛋白监测系统的研制
本文介绍了一种可以拍摄珊瑚荧光时间序列图像的装置的研制。本研究的目的是提供一个“珊瑚荧光蛋白监测系统”的概述。讨论了荧光图像的获取方法,并对今后的研究进行了展望。荧光蛋白在珊瑚礁珊瑚中很常见。例如,荧光蛋白如Midoriishi-Cyan (MiCy),产生蓝绿色荧光,和Azami-Green (AG),产生绿色荧光,被确定在Galaxea fascicularis和疣sp‥珊瑚漂白阻力之间的相关性和荧光蛋白的浓度在他们的组织被发现后,大规模的漂白事件在1998年袭击了大堡礁。因此,珊瑚荧光蛋白在保护珊瑚虫黄藻(共生藻类)免受过度阳光照射方面起着重要作用。当虫黄藻离开它们的珊瑚宿主时,就会发生珊瑚白化。这种损失的结果是珊瑚群落的白化。因此,珊瑚中荧光蛋白浓度的波动可作为珊瑚活动的指标。珊瑚礁区珊瑚活动对环境变化的响应可以通过同时测量珊瑚荧光和环境参数来评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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