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血管植物非细胞自主调控的进化方面:结构背景与研究模型。

Evolutionary aspects of non-cell-autonomous regulation in vascular plants: structural background and models to study.

机构信息

Laboratory of Plant Ecological Physiology, Komarov Botanical Institute, Russian Academy of Sciences Saint Petersburg, Russia.

Department of Botany, Saint Petersburg State University Saint Petersburg, Russia.

出版信息

Front Plant Sci. 2014 Feb 11;5:31. doi: 10.3389/fpls.2014.00031. eCollection 2014.

Abstract

Plasmodesmata (PD) serve for the exchange of information in form of miRNA, proteins, and mRNA between adjacent cells in the course of plant development. This fundamental role of PD is well established in angiosperms but has not yet been traced back to the evolutionary ancient plant taxa where functional studies lag behind studies of PD structure and ontogenetic origin. There is convincing evidence that the ability to form secondary (post-cytokinesis) PD, which can connect any adjacent cells, contrary to primary PD which form during cytokinesis and link only cells of the same lineage, appeared in the evolution of higher plants at least twice: in seed plants and in some representatives of the Lycopodiophyta. The (in)ability to form secondary PD is manifested in the symplasmic organization of the shoot apical meristem (SAM) which in most taxa of seedless vascular plants differs dramatically from that in seed plants. Lycopodiophyta appear to be suitable models to analyze the transport of developmental regulators via PD in SAMs with symplasmic organization both different from, as well as analogous to, that in angiosperms, and to understand the evolutionary aspects of the role of this transport in the morphogenesis of vascular plant taxa.

摘要

胞间连丝在植物发育过程中充当相邻细胞间信息交换的通道,交换的物质包括 miRNA、蛋白质和 mRNA。尽管胞间连丝在被子植物中的这一基本功能已得到充分证实,但在进化上较为古老的植物类群中,这一功能尚未被追溯到,而这些植物类群的胞间连丝结构和发生来源的研究则较为深入。有确凿的证据表明,形成二次胞间连丝(胞质分裂后形成)的能力至少在高等植物的进化过程中出现了两次:一次在种子植物中,另一次在石松类植物的某些代表中。与仅连接同一谱系细胞的初级胞间连丝不同,二次胞间连丝可以连接任何相邻的细胞。这种形成二次胞间连丝的(或不)能力表现在茎尖分生组织(SAM)的共质体组织中,在大多数无种子维管植物类群中,这与种子植物中的情况有很大的不同。石松类植物似乎是分析具有共质体组织的 SAM 中通过胞间连丝运输发育调节剂的合适模型,其共质体组织与被子植物中的情况既不同又相似,并有助于理解这种运输在维管植物类群形态发生中的作用的进化方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ccb/3920070/6280f5ce23a1/fpls-05-00031-g001.jpg

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