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首页> 外文期刊>Plant signaling & behavior >Analyses of WOX4 transgenics provide further evidence for the evolution of the WOX gene family during the regulation of diverse stem cell functions
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Analyses of WOX4 transgenics provide further evidence for the evolution of the WOX gene family during the regulation of diverse stem cell functions

机译:WOX4转基因的分析为调控多种干细胞功能期间WOX基因家族的进化提供了进一步的证据

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摘要

The WOX (WUSCHEL-RELATED HOMEOBOX) gene family of Arabidopsis comprises fifteen plant-specific transcriptional factors that play important development roles. Genetic, phylogenetic and genomic analyses suggest that WOX genes generally act non-autonomously to organize stem-cell and initial-cell populations within plant meristems and organ anlagen. Previous cross-complementation analyses indicate that the functional diversification of distinct WOX paralogs may be explained largely by promoter evolution,although paralog-specific protein: :protein interactions are also implicated. A recent report described WOX4 function during development of the procambium, which comprises the meristematic tissues of the plant vasculature. Here we show that WOX4 fails to complement PRS1/WOX3 function, when driven from the PRS1/WOX3 native promoter. These data suggest that WOX4 identifies different DNA targets and/or interacting proteins during development of the vasculature procambium than does PRS1/WOX3 during the specification of lateral organ initial cells. The identification of super-compound leaf pheno-types induced by overexpression of the SIWOX4 ortholog in tomato suggests a functional link between vascular patterning and leaf complexity.
机译:拟南芥的WOX(与WUSCHEL相关的HOMEOBOX)基因家族包含15种植物特异性转录因子,这些因子在重要的发育中起重要作用。遗传,系统发育和基因组分析表明,WOX基因通常非自主地起作用,以组织植物分生组织和器官胶原中的干细胞和初始细胞群体。先前的交叉互补分析表明,不同的WOX旁系同源物的功能多样化可能在很大程度上由启动子进化解释,尽管还牵涉到旁系同源物特异性蛋白质::蛋白质的相互作用。最近的报道描述了WOX4在原微生物发育过程中的功能,该原细菌包括植物脉管的分生组织。在这里,我们显示了当从PRS1 / WOX3本机启动子驱动时,WOX4无法补充PRS1 / WOX3功能。这些数据表明,WOX4在脉管原位形成过程中鉴定出与PRS1 / WOX3不同的DNA靶标和/或相互作用蛋白,而PRS1 / WOX3在侧向器官初始细胞鉴定过程中鉴定出不同的DNA靶标和/或相互作用蛋白。番茄中SIWOX4直向同源物的过表达诱导的超复合叶表型的鉴定表明,在血管模式和叶片复杂性之间存在功能联系。

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