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两种云杉属植物叶肉细胞叶绿体的季节性运动。

Seasonal movement of chloroplasts in mesophyll cells of two Picea species.

机构信息

Institute Botanic Garden: Ural Branch Russian: Academy of Science, 8 Marta St., 202a, Yekaterinburg, 620144, Russia.

Komarov Botanical Institute Russian Academy of Science, Saint Petersburg, 197376, Russia.

出版信息

Protoplasma. 2020 Jan;257(1):183-195. doi: 10.1007/s00709-019-01427-6. Epub 2019 Aug 13.

Abstract

Cold acclimation in evergreen conifers of temperate zone is associated with seasonal structural changes of mesophyll cells. Photoprotective reactions include the movement of chloroplasts from summer position when they are located along the cell walls to winter arrangement with their aggregation in one part of the cell. Special spatial arrangement of mesophyll in Picea species with chloroplasts located along the two opposite cell walls causes the very specific pattern of chloroplast movement. To reveal the intracellular apparatus involved in the seasonal organelle position changes, 3D reconstruction of mesophyll cell structure was applied. Two Picea species, P. obovata and P. pungens, from two geographic regions were studied in a 3-year course. The involvement of small transparent vacuoles in the development of cytoplasmic strands penetrating through the central vacuole and connecting two opposite lateral sides of the cell was shown. The nucleus and cytoplasmic organelles including chloroplasts move inwards the strand forming the cytoplasmic conglomerate enclosed by the vacuole at the cell center. Two Picea species have distinct differences in spatial organization of winter mesophyll cells and in structural events leading to its formation. Analysis of Picea species from two geographic regions over 3 years of monitoring reveals dependence of seasonal organelle movement on the dynamics of temperature decline in autumn.

摘要

温带常绿针叶树的冷驯化与叶片细胞的季节性结构变化有关。光保护反应包括叶绿体从夏季位置的移动,此时它们位于细胞壁附近,到冬季排列在细胞的一部分,聚集在一起。在具有叶绿体沿两个相对细胞壁排列的云杉物种中,叶片的特殊空间排列导致了叶绿体运动的非常特殊的模式。为了揭示参与季节性细胞器位置变化的细胞内装置,应用了叶片细胞结构的 3D 重建。在 3 年的研究中,对来自两个地理区域的两个云杉物种,即 Picea obovata 和 P. pungens 进行了研究。结果表明,小透明液泡参与了细胞质链的发育,细胞质链穿过中央液泡并连接细胞的两个相对侧。核和细胞质细胞器包括叶绿体在内向链内移动,形成由中央液泡包围的细胞质聚集体。两个云杉物种在冬季叶片细胞的空间组织和导致其形成的结构事件方面存在明显差异。对来自两个地理区域的云杉物种进行 3 年的监测分析表明,季节性细胞器运动依赖于秋季温度下降的动态。

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