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A coral-on-a-chip microfluidic platform enabling live-imaging microscopy of reef-building corals

机译:珊瑚礁微流体平台,可实现珊瑚礁珊瑚的实时成像显微镜检查

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摘要

Coral reefs, and the unique ecosystems they support, are facing severe threats by human activities and climate change. Our understanding of these threats is hampered by the lack of robust approaches for studying the micro-scale interactions between corals and their environment. Here we present an experimental platform, coral-on-a-chip, combining micropropagation and microfluidics to allow direct microscopic study of live coral polyps. The small and transparent coral micropropagates are ideally suited for live-imaging microscopy, while the microfluidic platform facilitates long-term visualization under controlled environmental conditions. We demonstrate the usefulness of this approach by imaging coral micropropagates at previously unattainable spatio-temporal resolutions, providing new insights into several micro-scale processes including coral calcification, coral-pathogen interaction and the loss of algal symbionts (coral bleaching). Coral-on-a-chip thus provides a powerful method for studying coral physiology in vivo at the micro-scale, opening new vistas in coral biology.
机译:珊瑚礁及其所支持的独特生态系统正面临人类活动和气候变化的严重威胁。由于缺乏研究珊瑚与其环境之间的微观相互作用的可靠方法,我们对这些威胁的理解受到了阻碍。在这里,我们介绍了一个实验平台,即单片珊瑚,结合了微繁殖和微流控技术,可以对活珊瑚息肉进行直接显微镜研究。小而透明的珊瑚微繁殖体非常适合实时成像显微镜,而微流体平台则有助于在受控环境条件下进行长期可视化。我们通过以以前无法实现的时空分辨率对珊瑚微繁殖体进行成像,证明了该方法的有效性,从而为包括珊瑚钙化,珊瑚-病原体相互作用和藻类共生体丧失(珊瑚白化)在内的多个微观过程提供了新见识。因此,片上珊瑚提供了一种在微观尺度上研究体内珊瑚生理的有力方法,为珊瑚生物学开辟了新的前景。

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