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树木中远距胞质运输和通讯的空间模式。

Spatial pattern of long-distance symplasmic transport and communication in trees.

机构信息

Institute of Experimental Biology; Department of Plant Developmental Biology; Faculty of Biological Sciences; University of Wrocław; Kanonia, Wroclaw, Poland.

出版信息

Plant Signal Behav. 2013 Nov;8(11):e26191. doi: 10.4161/psb.26191. Epub 2013 Aug 29.

Abstract

Symplasmic short- and long-distance communication may be regulated at different levels of plant body organization. It depends on cell-to-cell transport modulated by plasmodesmata conductivity and frequency but above all on morphogenetic fields that integrate a plant at the supracellular level. Their control of physiological and developmental processes is especially important in trees, where the continuum consists of 3-dimensional systems of: 1) stem cells in cambium, and 2) living parenchyma cells in the secondary conductive tissues. We found that long-distance symplasmic transport in trees is spatially regulated. Uneven distribution of fluorescent tracer in cambial cells along the branches examined illustrates an unknown intrinsic phenomenon that can possibly be important for plant organism integration. Here we illustrate the spatial dynamics of symplasmic transport in cambium, test and exclude the role of callose in its regulation, and discuss the mechanism that could possibly be responsible for the maintenance of this spatial pattern.

摘要

胞质短距离和长距离通讯可能在植物机体组织的不同水平上受到调节。它取决于由胞间连丝传导性和频率调节的细胞间运输,但最重要的是取决于形态发生场,这些场在超细胞水平上整合植物。它们对生理和发育过程的控制在树木中尤为重要,在树木中,连续统由以下三维系统组成:1)形成层中的干细胞,和 2)次生导组织中的活薄壁细胞。我们发现,树木中的长距离胞质共质体运输是空间调节的。在检查的枝条中,胞间连丝细胞中荧光示踪剂的不均匀分布说明了一种未知的内在现象,这种现象可能对植物整体整合很重要。在这里,我们说明了形成层中胞质共质体运输的空间动力学,测试并排除了胼胝质在其调节中的作用,并讨论了可能负责维持这种空间模式的机制。

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