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植物与光照调控:秋葵叶片中的综合矿物质系统

Plants and Light Manipulation: The Integrated Mineral System in Okra Leaves.

作者信息

Pierantoni Maria, Tenne Ron, Brumfeld Vlad, Kiss Vladimir, Oron Dan, Addadi Lia, Weiner Steve

机构信息

Department of Structural Biology Weizmann Institute of Science Rehovot 76100 Israel.

Department of Physics and Complex Systems Weizmann Institute of Science Rehovot 76100 Israel.

出版信息

Adv Sci (Weinh). 2017 Feb 26;4(5):1600416. doi: 10.1002/advs.201600416. eCollection 2017 May.

Abstract

Calcium oxalate and silica minerals are common components of a variety of plant leaves. These minerals are found at different locations within the leaf, and there is little conclusive evidence about the functions they perform. Here tools are used from the fields of biology, optics, and imaging to investigate the distributions of calcium oxalate, silica minerals, and chloroplasts in okra leaves, in relation to their functions. A correlative approach is developed to simultaneously visualize calcium oxalates, silica minerals, chloroplasts, and leaf soft tissue in 3D without affecting the minerals or the organic components. This method shows that in okra leaves silica and calcium oxalates, together with chloroplasts, form a complex system with a highly regulated relative distribution. This distribution points to a significant role of oxalate and silica minerals to synergistically optimize the light regime in the leaf. The authors also show directly that the light scattered by the calcium oxalate crystals is utilized for photosynthesis, and that the ultraviolet component of light passing through silica bodies, is absorbed. This study thus demonstrates that calcium oxalates increase the illumination level into the underlying tissue by scattering the incoming light, and silica reduces the amount of UV radiation entering the tissue.

摘要

草酸钙和硅矿物是多种植物叶片的常见成分。这些矿物存在于叶片内的不同位置,关于它们所发挥的功能几乎没有确凿的证据。在此,利用生物学、光学和成像领域的工具来研究秋葵叶片中草酸钙、硅矿物和叶绿体的分布及其功能。开发了一种相关方法,可在不影响矿物或有机成分的情况下,以三维方式同时可视化草酸钙、硅矿物、叶绿体和叶片软组织。该方法表明,在秋葵叶片中,硅和草酸钙与叶绿体一起形成了一个相对分布高度受控的复杂系统。这种分布表明草酸和硅矿物在协同优化叶片光照条件方面发挥着重要作用。作者还直接表明,草酸钙晶体散射的光被用于光合作用,并且穿过硅体的光的紫外线成分被吸收。因此,这项研究表明,草酸钙通过散射入射光增加了下层组织的光照水平,而硅减少了进入组织的紫外线辐射量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ae4e/5441490/2d72c2a77a8c/ADVS-4-na-g001.jpg

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