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首页> 外文期刊>Photosynthesis Research: An International Journal >Chloroplast structure: from chlorophyll granules to supra-molecular architecture of thylakoid membranes [Review]
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Chloroplast structure: from chlorophyll granules to supra-molecular architecture of thylakoid membranes [Review]

机译:叶绿体结构:从叶绿素颗粒到类囊体膜的超分子结构[综述]

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摘要

This review provides a brief historical account of how microscopical studies of chloroplasts have contributed to our current knowledge of the structural and functional organization of thylakoid membranes. It starts by tracing the origins of the terms plastid, grana, stroma and chloroplasts to light microscopic studies of 19th century German botanists, and then describes how different types of electron microscopical techniques have added to this field. The most notable contributions of thin section electron microscopy include the elucidation of the 3-D organization of thylakoid membranes, the discovery of prolamellar bodies in etioplasts, and the structural changes in thylakoid architecture that accompany the light-dependent transformation of etioplasts into chloroplasts. Attention is then focused on the roles that freeze-fracture and freeze-etch electron microscopy and immuno electron microscopy have played in defining the extent to which the functional complexes of thylakoids are non-randomly distributed between appressed, grana and non-appressed stroma thylakoids. Studies reporting on how this lateral differentiation can be altered experimentally, and how the spatial organization of functional complexes is affected by alterations in the light environment of plants are also included in this discussion. Finally, the review points to the possible uses of electron microscope tomography techniques in future structural studies of thylakoid membranes.
机译:这篇综述提供了关于叶绿体的微观研究如何有助于我们目前对类囊体膜的结构和功能组织的认识的简要历史说明。首先从追溯质体,颗粒,基质和叶绿体这两个术语的起源到19世纪德国植物学家的光学显微镜研究开始,然后描述如何将不同类型的电子显微镜技术添加到该领域。薄截面电子显微镜的最显着贡献包括阐明类囊体膜的3-D结构,在原生质体中发现层状小体,以及类固醇结构的结构变化,这些结构变化伴随着依赖于光生化的原生质体向叶绿体的转化。然后将注意力集中在冷冻断裂和冷冻蚀刻电子显微镜以及免疫电子显微镜在确定类囊体功能复合物在上皮的,颗粒状的和未压迫的基质类囊体之间非随机分布的程度方面所起的作用。本报告还包括有关如何通过实验改变这种横向分化以及植物的光照环境变化如何影响功能性复合物的空间组织的研究报告。最后,综述指出电子显微镜层析成像技术在类囊体膜的未来结构研究中的可能用途。

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