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赢家通吃:生长素——植物胚胎发生中的主要参与者。

The Winner Takes It All: Auxin-The Main Player during Plant Embryogenesis.

机构信息

Department of Cytophysiology, Faculty of Biology and Environmental Protection, University of Lodz, 90-236 Lódź, Poland.

出版信息

Cells. 2020 Mar 3;9(3):606. doi: 10.3390/cells9030606.

Abstract

In plants, the first asymmetrical division of a zygote leads to the formation of two cells with different developmental fates. The establishment of various patterns relies on spatial and temporal gene expression, however the precise mechanism responsible for embryonic patterning still needs elucidation. Auxin seems to be the main player which regulates embryo development and controls expression of various genes in a dose-dependent manner. Thus, local auxin maxima and minima which are provided by polar auxin transport underlie cell fate specification. Diverse auxin concentrations in various regions of an embryo would easily explain distinct cell identities, however the question about the mechanism of cellular patterning in cells exposed to similar auxin concentrations still remains open. Thus, specification of cell fate might result not only from the cell position within an embryo but also from events occurring before and during mitosis. This review presents the impact of auxin on the orientation of the cell division plane and discusses the mechanism of auxin-dependent cytoskeleton alignment. Furthermore, close attention is paid to auxin-induced calcium fluxes, which regulate the activity of MAPKs during postembryonic development and which possibly might also underlie cellular patterning during embryogenesis.

摘要

在植物中,受精卵的第一次不对称分裂导致形成两个具有不同发育命运的细胞。各种模式的建立依赖于空间和时间的基因表达,但负责胚胎模式形成的确切机制仍需要阐明。生长素似乎是主要的参与者,它调节胚胎发育,并以剂量依赖的方式控制各种基因的表达。因此,由极性生长素运输提供的局部生长素最大值和最小值是细胞命运特化的基础。胚胎的不同区域中存在不同浓度的生长素很容易解释不同的细胞身份,但在暴露于相似生长素浓度的细胞中细胞模式形成的机制问题仍然没有答案。因此,细胞命运的特化不仅可能来自于胚胎内的细胞位置,还可能来自于有丝分裂前后发生的事件。这篇综述介绍了生长素对细胞分裂平面方向的影响,并讨论了生长素依赖的细胞骨架排列的机制。此外,还密切关注生长素诱导的钙流,它调节 MAPK 在胚胎后发育过程中的活性,并且可能也为胚胎发生过程中的细胞模式形成提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b79/7140527/75e6d402290d/cells-09-00606-g001.jpg

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