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Evolutionary conserved repressive activity of WOX proteins mediates leaf blade outgrowth and floral organ development in plants

机译:WOX蛋白的进化保守保守抑制活性介导植物叶片生长和花器官发育

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摘要

The WUSCHEL related homeobox {WOX) genes play key roles in stem cell maintenance, embryonic patterning, and lateral organ development. WOX genes have been categorized into three clades-ancient, intermediate, and modern/WUS-based on phy-logenetic analysis, but a functional basis for this classification has not been established. Using the classical bladeless Iam1 mutant of Nicotiana sylvestris as a genetic tool, we examined the function of the Medicago truncatula WOX gene, STENOFOLIA (STF). in controlling leaf blade outgrowth. STF and LAM1 are functional orthologs. We found that the introduction of mutations into the WUS-box of STF (STFm1) reduces its ability to complement the Iam1 mutant. Fusion of an exogenous repressor domain to STFmi restores complementation, whereas fusion of an exogenous activator domain to STFm1 enhances the narrow leaf phenotype. These results indicate that transcriptional repressor activity mediated by the WUS-box of STF acts to promote blade outgrowth. With the exception of WOX7, the WUS-box is conserved in the modern clade WOX genes, but is not found in members of the intermediate or ancient clades. Consistent with this, all members of the modern clade except WOX7 can complement the Iam1 mutant when expressed using the STF promoter, but members of the intermediate and ancient clades cannot. Furthermore, we found that fusion of either the WUS-box or an exogenous repressor domain to WOX7 or to members of intermediate and ancient WOX clades results in a gain-of-function ability to complement Iam1 blade outgrowth. These results suggest that modern clade WOX genes have evolved for repressor activity through acquisition of the WUS-box.
机译:WUSCHEL相关的同源盒(WOX)基因在干细胞维持,胚胎形成和侧器官发育中起关键作用。 WOX基因已被分为三个进化枝,古代,中级,和现代/ WUS-基于系统发育分析,但尚未建立这种分类的功能基础。使用经典的无烟烟草Iam1突变体作为遗传工具,我们检查了紫花苜蓿WOX基因STENOFOLIA(STF)的功能。在控制叶片的生长。 STF和LAM1是功能性直系同源物。我们发现将突变引入STF WUS盒(STFm1)会降低其与Iam1突变体互补的能力。外源阻遏域与STFmi融合融合恢复互补,而外源激活域与STFm1融合融合增强窄叶表型。这些结果表明,由STF的WUS-box介导的转录阻遏物活性促进了叶片的生长。除WOX7外,WUS盒在现代进化枝WOX基因中是保守的,但在中等进化枝或古代进化枝中均未发现。与此相一致,当使用STF启动子表达时,除WOX7以外的现代进化枝的所有成员都可以补充Iam1突变体,而中进化枝和古代进化枝的成员则不能。此外,我们发现WUS-box或外源阻遏域与WOX7或中间和古代WOX进化枝成员的融合会导致功能增强能力,以补充Iam1叶片生长。这些结果表明,现代进化枝WOX基因已经通过获得WUS-box进化为阻遏物活性。

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    Department of Plant and Soil Sciences, Institute for Agricultural Biosciences, Oklahoma State University, Ardmore, OK 73401;

    Department of Plant and Soil Sciences, Institute for Agricultural Biosciences, Oklahoma State University, Ardmore, OK 73401;

    Department of Biochemistry and Genetics, Connecticut Agricultural Experiment Station, New Haven, CT 06504;

    Bioproduction Research Institute, National Institute of Advanced Industrial Science and Technology, Tsukuba 305-8562, Japan;

    Plant Biology Division, The Samuel Roberts Noble Foundation, Ardmore, OK 73401;

    Department of Plant and Soil Sciences, Institute for Agricultural Biosciences, Oklahoma State University, Ardmore, OK 73401;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 00:39:51

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