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共质体细胞间连接调控侧根模式形成。

Symplastic intercellular connectivity regulates lateral root patterning.

机构信息

John Innes Centre, Norwich Research Park, Norwich, Norfolk NR4 7UH, UK.

出版信息

Dev Cell. 2013 Jul 29;26(2):136-47. doi: 10.1016/j.devcel.2013.06.010. Epub 2013 Jul 11.

Abstract

Cell-to-cell communication coordinates the behavior of individual cells to establish organ patterning and development. Although mobile signals are known to be important in lateral root development, the role of plasmodesmata (PD)-mediated transport in this process has not been investigated. Here, we show that changes in symplastic connectivity accompany and regulate lateral root organogenesis in Arabidopsis. This connectivity is dependent upon callose deposition around PD affecting molecular flux through the channel. Two plasmodesmal-localized β-1,3 glucanases (PdBGs) were identified that regulate callose accumulation and the number and distribution of lateral roots. The fundamental role of PD-associated callose in this process was illustrated by the induction of similar phenotypes in lines with altered callose turnover. Our results show that regulation of callose and cell-to-cell connectivity is critical in determining the pattern of lateral root formation, which influences root architecture and optimal plant performance.

摘要

细胞间通讯协调单个细胞的行为,以建立器官模式和发育。虽然已知移动信号在侧根发育中很重要,但 PD 介导的运输在这个过程中的作用尚未被研究。在这里,我们表明,胞质连接的变化伴随着并调节拟南芥侧根器官发生。这种连接性依赖于 PD 周围的胼胝质沉积,影响通道中的分子通量。鉴定了两种质膜定位的β-1,3 葡聚糖酶(PdBGs),它们调节胼胝质的积累以及侧根的数量和分布。PD 相关胼胝质在这个过程中的基本作用通过改变胼胝质周转率的系的类似表型的诱导来说明。我们的结果表明,胼胝质和细胞间连接性的调节对于确定侧根形成的模式至关重要,这影响了根结构和植物的最佳性能。

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