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The receptor-like kinases GSO1 and GSO2 together regulate root growth in arabidopsis through control of cell division and cell fate specification

机译:受体样激酶GSO1和GSO2一起通过控制细胞分裂和细胞命运规范来调节拟南芥中的根生长

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Background: The root apical meristem of Arabidopsis is established post-embryonically as the main source of root cells, and its activity is maintained by complex bidirectional signaling between stem cells and mature cells. The receptor-like kinases GASSHO1 (GSO1) and GSO2 have been shown to regulate aerial epidermal function and seedling growth in Arabidopsis. Results: Here we show that gso1; gso2 seedlings also have root growth and patterning defects. Analyses of mutant root morphology indicate abnormal numbers of cells in longitudinal files and radial cell layers, as well as aberrant stem cell division planes. gso1; gso2 double mutants misexpress markers for stem cells and differentiated root cell types. In addition, gso1; gso2 root growth defects, but not marker missexpression or patterning phenotypes, are rescued by growth on media containing metabolizable sugars. Conclusions: We conclude that GSO1 and GSO2 function together in intercellular signaling to positively regulate cell proliferation, differentiation of root cell types, and stem cell identity. In addition, GSO1 and GSO2 control seedling root growth by modulating sucrose response after germination. Developmental Dynamics 243:257-278, 2014.
机译:背景:拟南芥的根尖分生组织在胚胎后被确立为根细胞的主要来源,其活性通过干细胞和成熟细胞之间复杂的双向信号传导得以维持。已显示受体样激酶GASSHO1(GSO1)和GSO2调节拟南芥中的空中表皮功能和幼苗生长。结果:这里我们显示gso1; gso2幼苗还具有根系生长和构图缺陷。突变根形态的分析表明纵向文件和径向细胞层中的细胞数量异常,以及干细胞分裂平面异常。 gso1; gso2双重突变体会误表达干细胞和分化的根细胞类型的标记。另外,gso1;通过在含有可代谢糖类的培养基上生长,可以挽救gso2根生长缺陷,但不能消除标志物的过表达或模式表型缺陷。结论:我们得出结论,GSO1和GSO2在细胞间信号传导中共同起作用,以正向调节细胞增殖,根细胞类型分化和干细胞特性。此外,GSO1和GSO2通过调节发芽后的蔗糖响应来控制幼苗的根系生长。发展动力学243:257-278,2014。

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