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通过依赖KLUH/CYP78A5的细胞间信号传导控制植物器官大小

Control of plant organ size by KLUH/CYP78A5-dependent intercellular signaling.

作者信息

Anastasiou Elena, Kenz Sabine, Gerstung Moritz, MacLean Daniel, Timmer Jens, Fleck Christian, Lenhard Michael

机构信息

Institut für Biologie III, Universität Freiburg, Schänzlestrasse 1, D-79104 Freiburg, Germany.

出版信息

Dev Cell. 2007 Dec;13(6):843-56. doi: 10.1016/j.devcel.2007.10.001.

Abstract

Plant organs grow to characteristic sizes that are genetically controlled. In animals, signaling by mobile growth factors is thought to be an effective mechanism for measuring primordium size, yet how plants gauge organ size is unclear. Here, we identify the Arabidopsis cytochrome P450 KLUH (KLU)/CYP78A5 as a stimulator of plant organ growth. While klu loss-of-function mutants form smaller organs because of a premature arrest of cell proliferation, KLU overexpression leads to larger organs with more cells. KLU promotes organ growth in a non-cell-autonomous manner, yet it does not appear to modulate the levels of known phytohormones. We therefore propose that KLU is involved in generating a mobile growth signal distinct from the classical phytohormones. The expression dynamics of KLU suggest a model of how the arrest of cell proliferation is coupled to the attainment of a certain primordium size, implying a common principle of size measurement in plants and animals.

摘要

植物器官生长到由基因控制的特征大小。在动物中,移动生长因子发出的信号被认为是测量原基大小的有效机制,但植物如何测量器官大小尚不清楚。在这里,我们确定拟南芥细胞色素P450 KLUH(KLU)/ CYP78A5是植物器官生长的刺激因子。虽然klu功能丧失突变体由于细胞增殖过早停止而形成较小的器官,但KLU的过表达导致器官更大且细胞更多。KLU以非细胞自主方式促进器官生长,但它似乎不调节已知植物激素的水平。因此,我们提出KLU参与产生一种不同于经典植物激素的移动生长信号。KLU的表达动态表明了一种细胞增殖停止如何与达到一定原基大小相关联的模型,这意味着植物和动物在大小测量方面有共同的原则。

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