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首页> 外文期刊>Journal of Microscopy >Chemical imaging of a Symbiodinium sp Symbiodinium sp . cell using synchrotron infrared microspectroscopy: a feasibility study
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Chemical imaging of a Symbiodinium sp Symbiodinium sp . cell using synchrotron infrared microspectroscopy: a feasibility study

机译:Symbiodinium sp Symbiodinium sp的化学成像。 电池使用同步射线红外线测定:可行性研究

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Summary The symbiotic relationship between corals and Symbiodinium spp . is the key to the success and survival of coral reef ecosystems the world over. Nutrient exchange and chemical communication between the two partners provides the foundation of this key relationship, yet we are far from a complete understanding of these processes. This is due, in part, to the difficulties associated with studying an intracellular symbiosis at the small spatial scales required to elucidate metabolic interactions between the two partners. This feasibility study, which accompanied a more extensive investigation of fixed Symbiodinium cells (data unpublished), examines the potential of using synchrotron radiation infrared microspectroscopy (SR‐IRM) for exploring metabolite localisation within a single Symbiodinium cell. In doing so, three chemically distinct subcellular regions of a single Symbiodinium cell were established and correlated to cellular function based on assignment of diagnostic chemical classes.
机译:概述珊瑚与Symbiodininium SPP之间的共生关系。是世界上珊瑚礁生态系统成功和生存的关键。两位合作伙伴之间的营养交换和化学沟通提供了这一关键关系的基础,但我们远未完全了解这些过程。这部分是由于与在两个合作伙伴之间阐明代谢相互作用所需的小空间尺度上研究细胞内共生的困难。这种可行性研究,伴随着更广泛地研究了固定对齐的Symbiodininium细胞(未发表的数据),研究了使用同步辐射红外微斑张(SR-IRM)来探讨单个Symbiodinium细胞内代谢物定位的可能性。在这样做时,基于诊断化学类别的分配建立并与细胞功能建立和相关的三种化学上不同的亚细胞区域。

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