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虫黄藻中的尿酸沉积物是否起到眼点的作用?

Do uric acid deposits in zooxanthellae function as eye-spots?

作者信息

Yamashita Hiroshi, Kobiyama Atsushi, Koike Kazuhiko

机构信息

Graduate School of Biosphere Science, Hiroshima University, Hiroshima, Japan.

出版信息

PLoS One. 2009 Jul 17;4(7):e6303. doi: 10.1371/journal.pone.0006303.

Abstract

The symbiosis between zooxanthellae (dinoflagellate genus Symbiodinium) and corals is a fundamental basis of tropical marine ecosystems. However the physiological interactions of the hosts and symbionts are poorly understood. Recently, intracellular crystalline deposits in Symbiodinium were revealed to be uric acid functioning for nutrient storage. This is the first exploration of these enigmatic crystalline materials that had previously been misidentified as oxalic acid, providing new insights into the nutritional strategies of Symbiodinium in oligotrophic tropical waters. However, we believe these deposits also function as eye-spots on the basis of light and electron microscopic observations of motile cells of cultured Symbiodinium. The cells possessed crystalline deposit clusters in rows with each row 100-150 nm thick corresponding to 1/4 the wavelength of light and making them suitable for maximum wave interference and reflection of light. Crystalline clusters in cells observed with a light microscope strongly refracted and polarized light, and reflected or absorbed short wavelength light. The facts that purines, including uric acid, have been identified as the main constituents of light reflectors in many organisms, and that the photoreceptor protein, opsin, was detected in our Symbiodinium strain, support the idea that uric acid deposits in Symbiodinium motile cells may function as a component of an eye-spot.

摘要

虫黄藻(甲藻纲共生藻属)与珊瑚之间的共生关系是热带海洋生态系统的基本基础。然而,宿主与共生体之间的生理相互作用却鲜为人知。最近,研究发现共生藻细胞内的晶体沉积物是用于营养储存的尿酸。这是对这些此前被误认成草酸的神秘晶体物质的首次探索,为贫营养热带水域中共生藻的营养策略提供了新见解。不过,基于对培养的共生藻活动细胞的光学显微镜和电子显微镜观察,我们认为这些沉积物还具有眼点的功能。这些细胞拥有成排的晶体沉积物簇,每排厚度为100 - 150纳米,相当于光波长的1/4,这使得它们适合实现最大程度的光波干涉和光反射。用光学显微镜观察到的细胞中的晶体簇能强烈折射和偏振光,并反射或吸收短波长光。包括尿酸在内的嘌呤已被确定为许多生物体中光反射器的主要成分,而且在我们的共生藻菌株中检测到了光感受器蛋白视蛋白,这些事实支持了共生藻活动细胞中的尿酸沉积物可能作为眼点组成部分发挥作用的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d37/2707626/b7b861c476a0/pone.0006303.g001.jpg

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