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The INDEHISCENT protein regulates unequal cell divisions in Arabidopsis fruit

机译:INDEHISCENT蛋白调节拟南芥果实中不平等的细胞分裂

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INDEHISCENT (IND) is one of the major factors of a transcriptional network regulating fruit dehiscence in Arabidopsis thaliana. However, partially owing to the lack of knowledge on the morphogenic process at the junction between the valve margin and the replum, the cellular processes regulated by IND have not been elucidated. Here we report the identification of a zone of seven layers of cells relevant to silique dehiscence, and the isolation and characterization of a transposon-enhancer-trap-generated null allele of IND, ind-6. Light microscopy analysis revealed that the β-glucuronidase from the enhancer trap was expressed in a seven-layer zone, encompassing the valve margin and the replum border. Electron and light microscopy analyses also revealed that unequal cell divisions actively occurred at stage 15 in the seven-layer zone in wild type (WT), which apparently produced the distinct cell types in the WT seven-layer zone. In contrast, siliques of ind-6 at stage 15 did not exhibit such cell divisions but fewer cells and defective cytokinesis, hence lacking the distinct cell types in the seven-layer zone. These results demonstrate a cellular mechanism for establishing the distinct cell types and a role for IND in regulating the unequal cell divisions in the seven-layer zone.
机译:INDEHISCENT(IND)是调节拟南芥果实开裂的转录网络的主要因素之一。然而,部分由于对瓣膜边缘和瓣膜之间的交界处的形态发生过程的了解不足,因此尚未阐明由IND调控的细胞过程。在这里,我们报告确定与角果裂裂有关的七层细胞的区域的鉴定,以及转座子-诱捕器诱集产生的IND,ind-6无效等位基因的分离和表征。光学显微镜分析显示,来自增强子阱的β-葡萄糖醛酸苷酶在七层区域表达,包括瓣膜边缘和再形成边界。电子和光学显微镜分析还显示,野生型(WT)的七层区中的第15阶段活跃地发生​​了不相等的细胞分裂,这显然在WT七层区中产生了不同的细胞类型。相比之下,第15阶段的ind-6孤群并没有表现出这种细胞分裂,而是更少的细胞和有缺陷的胞质分裂,因此在七层区域中缺乏独特的细胞类型。这些结果证明了建立不同细胞类型的细胞机制以及IND在调节七层区域中不平等的细胞分裂中的作用。

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