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根分生组织中细胞分裂和分化控制的遗传框架。

A genetic framework for the control of cell division and differentiation in the root meristem.

作者信息

Dello Ioio Raffaele, Nakamura Kinu, Moubayidin Laila, Perilli Serena, Taniguchi Masatoshi, Morita Miyo T, Aoyama Takashi, Costantino Paolo, Sabatini Sabrina

机构信息

Dipartimento di Genetica e Biologia Molecolare, Laboratorio di Genomica e Proteomica Funzionale dei Sistemi Modello (FGPL), Università La Sapienza - Piazzale Aldo Moro 5, 00185 Rome, Italy.

出版信息

Science. 2008 Nov 28;322(5906):1380-4. doi: 10.1126/science.1164147.

Abstract

Plant growth and development are sustained by meristems. Meristem activity is controlled by auxin and cytokinin, two hormones whose interactions in determining a specific developmental output are still poorly understood. By means of a comprehensive genetic and molecular analysis in Arabidopsis, we show that a primary cytokinin-response transcription factor, ARR1, activates the gene SHY2/IAA3 (SHY2), a repressor of auxin signaling that negatively regulates the PIN auxin transport facilitator genes: thereby, cytokinin causes auxin redistribution, prompting cell differentiation. Conversely, auxin mediates degradation of the SHY2 protein, sustaining PIN activities and cell division. Thus, the cell differentiation and division balance necessary for controlling root meristem size and root growth is the result of the interaction between cytokinin and auxin through a simple regulatory circuit converging on the SHY2 gene.

摘要

植物的生长和发育由分生组织维持。分生组织的活动受生长素和细胞分裂素的控制,这两种激素在决定特定发育结果方面的相互作用仍知之甚少。通过对拟南芥进行全面的遗传和分子分析,我们发现一种主要的细胞分裂素响应转录因子ARR1激活了基因SHY2/IAA3(SHY2),SHY2是生长素信号传导的抑制因子,它负向调节PIN生长素转运促进基因:因此,细胞分裂素导致生长素重新分布,促使细胞分化。相反,生长素介导SHY2蛋白的降解,维持PIN活性和细胞分裂。因此,控制根分生组织大小和根生长所需的细胞分化和分裂平衡是细胞分裂素和生长素通过汇聚在SHY2基因上的简单调控回路相互作用的结果。

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