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Lateral Root Initiation in the Parental Root Meristem of Cucurbits: Old Players in a New Position

机译:葫芦科父母根分生组织中的侧向根始:老球员处于新位置

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摘要

While in most higher plants, including the model system Arabidopsis thaliana, the formation of lateral root primordia is induced in the elongation zone of the parental root, in seven plant families, including Cucurbitaceae, an alternative root branching mechanism is established such that lateral roots are initiated directly in the apical meristem of the parental root. In Arabidopsis, the transcription factor GATA23 and MEMBRANE-ASSOCIATED KINASE REGULATOR4 (MAKR4) are involved in the gene regulatory network of lateral root initiation. Among all marker genes examined, these are the earliest known marker genes up-regulated by auxin during lateral root initiation. In this study, putative functional orthologs of Arabidopsis GATA23 and MAKR4 were identified in cucumber (Cucumis sativus) and squash (Cucurbita pepo). Both cucurbits contained 26 genes encoding GATA family transcription factors and only one MAKR4 gene. Phylogenetic and transcriptional analysis of up-regulation by auxin led to the identification of GATA23 putative functional orthologs in Cucurbitaceae – CpGATA24 and CsGATA24. In squash, CpMAKR4 was up-regulated by naphthylacetic acid (NAA) and, similar to MAKR4 in Arabidopsis, indole-3-butyric acid (IBA). A detailed analysis of the expression pattern of CpGATA24 and CpMAKR4 in squash roots from founder cell specification until emergence of lateral root primordia was carried out using promoter-fluorescent reporter gene fusions and confocal microscopy. Their expression was induced in the protoxylem, and then expanded to founder cells in the pericycle. Thus, while the overall expression pattern of these genes was significantly different from that in Arabidopsis, in founder cells their expression was induced in the same order as in Arabidopsis. Altogether, these findings suggest that in Cucurbitaceae the putative functional orthologs of GATA23 and MAKR4 might play a role in founder cell specification and primordium positioning during lateral root initiation. The role of the protoxylem in auxin transport as a trigger of founder cells specification and lateral root initiation is discussed.
机译:在包括模型系统拟南芥在内的大多数高等植物中,在包括葫芦科在内的七个植物科中,在亲本根的延伸区中诱导了侧根原基的形成,建立了一种替代性的根分支机制,使得侧根被直接起始于亲本根的分生组织。在拟南芥中,转录因子GATA23和膜相关激酶调节剂4(MAKR4)参与侧根起始的基因调节网络。在所有检查的标记基因中,这些是最早的已知标记基因,在侧根起始过程中被生长素上调。在这项研究中,在黄瓜(Cucumis sativus)和南瓜(Cucurbita pepo)中鉴定了拟南芥GATA23和MAKR4的功能直系同源物。两个葫芦丝都包含26个编码GATA家族转录因子的基因,并且仅包含一个MAKR4基因。生长素上调的系统发生和转录分析导致鉴定葫芦科中的GATA23假定功能直系同源物– CpGATA24和CsGATA24。在南瓜中,CpMAKR4被萘乙酸(NAA)上调,与拟南芥中的MAKR4相似,吲哚-3-丁酸(IBA)被上调。使用启动子-荧光报告基因融合和共聚焦显微镜,对始建细胞规范直至侧根原基出现之前CpGATA24和CpMAKR4在南瓜根中的表达模式进行了详细分析。它们的表达在protoxylem中被诱导,然后在周周期中扩展到基础细胞。因此,尽管这些基因的总体表达模式与拟南芥中的显着不同,但在奠基者细胞中它们的表达被诱导为与拟南芥中相同的顺序。总而言之,这些发现表明,在葫芦科中,GATA23和MAKR4的假定功能直系同源物可能在侧根起始过程中对基础细胞的规格和原基定位中起作用。讨论了植物生长素运输过程中protoxylem的作用,它是基础细胞规格和侧向根起始的触发因素。

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