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MtCRE1 依赖性细胞分裂素信号转导整合了细菌和植物的信号,以协调蒺藜苜蓿共生结瘤器官发生。

MtCRE1-dependent cytokinin signaling integrates bacterial and plant cues to coordinate symbiotic nodule organogenesis in Medicago truncatula.

机构信息

Institut des Sciences du Végétal (ISV), Centre National de la Recherche Scientifique, 91198 Gif sur Yvette Cedex, France.

出版信息

Plant J. 2011 Feb;65(4):622-33. doi: 10.1111/j.1365-313X.2010.04447.x. Epub 2011 Jan 18.

Abstract

Phytohormonal interactions are essential to regulate plant organogenesis. In response to the presence of signals from symbiotic bacteria, the Nod factors, legume roots generate a new organ: the nitrogen-fixing nodule. Analysis of mutants in the Medicago truncatula CRE1 cytokinin receptor and of the MtRR4 cytokinin primary response gene expression pattern revealed that cytokinin acts in initial cortical cell divisions and later in the transition between meristematic and differentiation zones of the mature nodule. MtCRE1 signaling is required for activation of the downstream nodulation-related transcription factors MtERN1, MtNSP2 and MtNIN, as well as to regulate expression and accumulation of PIN auxin efflux carriers. Whereas the MtCRE1 pathway is required to allow the inhibition of polar auxin transport in response to rhizobia, nodulation is still negatively regulated by the MtEIN2/SICKLE-dependent ethylene pathway in cre1 mutants. Hence, MtCRE1 signaling acts as a regulatory knob, integrating positive plant and bacterial cues to control legume nodule organogenesis.

摘要

植物激素相互作用对于调节植物器官发生至关重要。在响应共生细菌信号(即结瘤因子)的情况下,豆科植物的根会生成一个新的器官:固氮根瘤。对 Medicago truncatula CRE1 细胞分裂素受体突变体和 MtRR4 细胞分裂素初级响应基因表达模式的分析表明,细胞分裂素在初始皮层细胞分裂中起作用,然后在成熟根瘤的分生组织和分化区之间的过渡中起作用。MtCRE1 信号传导对于激活下游的与结瘤相关的转录因子 MtERN1、MtNSP2 和 MtNIN 的表达以及调节 PIN 生长素外排载体的表达和积累是必需的。尽管 MtCRE1 途径是必需的,以允许响应根瘤菌抑制极性生长素运输,但在 cre1 突变体中,结瘤仍然受到 MtEIN2/SICKLE 依赖性乙烯途径的负调控。因此,MtCRE1 信号传导作为一个调节旋钮,整合植物和细菌的正向信号来控制豆科植物根瘤器官发生。

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