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首页> 外文期刊>Annals of Botany >The ERECTA gene controls spatial and temporal patterns of epidermal cell number and size in successive developing leaves of Arabidopsis thaliana
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The ERECTA gene controls spatial and temporal patterns of epidermal cell number and size in successive developing leaves of Arabidopsis thaliana

机译:ERECTA基因控制拟南芥连续发育叶片中表皮细胞数量和大小的时空分布

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摘要

Background and Aims ERECTA has been identified as a pleiotropic regulator of developmental and physiological processes in Arabidopsis thaliana. Previous work demonstrated a role for ERECTA in the control of compensation between epidermal cell expansion and division in leavesMethods In this work, spatial and temporal analyses of epidermal cell division and expansion were performed on successive developing vegetative leaves of Arabidopsis thaliana in both ERECTA and erecta lines, LER and Ler, respectively, to understand how the ERECTA gene regulates compensation between these two processes.Key Results The loss of ERECTA function leads to a low cell expansion rate in all zones of a leaf and in all successive leaves of a plant. This low cell expansion rate is counterbalanced by an increase in the duration of cell division. As a consequence, the ERECTA mutation eliminates the tip to base cellular gradient generally observed in the leaf epidermis and also flattens the heteroblastic changes in epidermal cell area and number within a rosette. Ablation of floral buds eliminates the heteroblastic changes in cellular patterns in an ERECTA-dependent manner.Conclusions The results provide a detailed description of changes in leaf growth dynamics and cellular variables in both LER and Ler. Altogether they suggest that ERECTA influences leaf cellular development in relation to whole plant ontogeny.
机译:背景和目的ERECTA被认为是拟南芥发育和生理过程的多效性调节剂。以前的工作证明了ERECTA在控制叶片表皮细胞膨胀和分裂之间的补偿中的作用。分别是LER和Ler,以了解ERECTA基因是如何调节这两个过程之间的补偿的。主要结果ERECTA功能的丧失导致植物叶片的所有区域和所有后续叶片中的细胞增殖率降低。通过细胞分裂持续时间的增加来抵消这种低的细胞扩增速率。结果,ERECTA突变消除了通常在叶表皮中观察到的从尖端到基础的细胞梯度,并且还使莲座丛中表皮细胞的面积和数量的异胚细胞变化变平坦。消融花芽以ERECTA依赖的方式消除了细胞模式的异胚性变化。结论该结果详细描述了LER和Ler中叶片生长动态和细胞变量的变化。他们总体上认为,ERECTA影响与整个植物个体发育有关的叶细胞发育。

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