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通过极性生长素运输控制叶片维管束模式

Control of leaf vascular patterning by polar auxin transport.

作者信息

Scarpella Enrico, Marcos Danielle, Friml Jirí, Berleth Thomas

机构信息

Department of Biological Sciences, University of Alberta, Edmonton, Alberta T6G 2E9, Canada.

出版信息

Genes Dev. 2006 Apr 15;20(8):1015-27. doi: 10.1101/gad.1402406.

Abstract

The formation of the leaf vascular pattern has fascinated biologists for centuries. In the early leaf primordium, complex networks of procambial cells emerge from homogeneous subepidermal tissue. The molecular nature of the underlying positional information is unknown, but various lines of evidence implicate gradually restricted transport routes of the plant hormone auxin in defining sites of procambium formation. Here we show that a crucial member of the AtPIN family of auxin-efflux-associated proteins, AtPIN1, is expressed prior to pre-procambial and procambial cell fate markers in domains that become restricted toward sites of procambium formation. Subcellular AtPIN1 polarity indicates that auxin is directed to distinct "convergence points" in the epidermis, from where it defines the positions of major veins. Integrated polarities in all emerging veins indicate auxin drainage toward pre-existing veins, but veins display divergent polarities as they become connected at both ends. Auxin application and transport inhibition reveal that convergence point positioning and AtPIN1 expression domain dynamics are self-organizing, auxin-transport-dependent processes. We derive a model for self-regulated, reiterative patterning of all vein orders and postulate at its onset a common epidermal auxin-focusing mechanism for major-vein positioning and phyllotactic patterning.

摘要

几个世纪以来,叶片维管束模式的形成一直吸引着生物学家。在早期叶原基中,原形成层细胞的复杂网络从均匀的表皮下组织中出现。潜在位置信息的分子本质尚不清楚,但各种证据表明,植物激素生长素逐渐受限的运输途径在确定原形成层形成位点方面发挥了作用。在这里,我们表明,生长素外排相关蛋白AtPIN家族的一个关键成员AtPIN1,在原形成层前体细胞和原形成层细胞命运标记物之前,在朝着原形成层形成位点受限的区域表达。AtPIN1的亚细胞极性表明,生长素被导向表皮中不同的“汇聚点”,从那里它确定了主脉的位置。所有新出现叶脉中的整合极性表明生长素向已有叶脉引流,但叶脉在两端连接时显示出不同的极性。生长素应用和运输抑制表明,汇聚点定位和AtPIN1表达域动态是自组织的、依赖生长素运输的过程。我们推导了一个所有叶脉等级的自我调节、反复形成模式的模型,并假设在其开始时存在一种共同的表皮生长素聚焦机制,用于主脉定位和叶序模式形成。

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Vascular patterning.血管模式形成
Arabidopsis Book. 2003;2:e0073. doi: 10.1199/tab.0073. Epub 2003 Mar 22.
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Polar PIN localization directs auxin flow in plants.极性PIN定位引导植物中的生长素流动。
Science. 2006 May 12;312(5775):883. doi: 10.1126/science.1121356. Epub 2006 Apr 6.

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