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Callose-Regulated Symplastic Communication Coordinates Symbiotic Root Nodule Development.

Curr. Biol.. 2018; 
Gaudioso-Pedraza Rocio,Beck Martina,Frances Lisa,Kirk Philip,Ripodas Carolina,Niebel Andreas,Oldroyd Giles E D,Benitez-Alfonso Yoselin,de Carvalho-Niebel Fern
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摘要

The formation of nitrogen-fixing nodules in legumes involves the initiation of synchronized programs in the root epidermis and cortex to allow rhizobial infection and nodule development. In this study, we provide evidence that symplastic communication, regulated by callose turnover at plasmodesmata (PD), is important for coordinating nodule development and infection in Medicago truncatula. Here, we show that rhizobia promote a reduction in callose levels in inner tissues where nodules initiate. This downregulation coincides with the localized expression of M. truncatula β-1,3-glucanase 2 (MtBG2), encoding a novel PD-associated callose-degrading enzyme. Spatiotemporal analyses revealed that MtBG2 e... More

关键词

Medicago truncatula,NODULE INCEPTION,callose,cell-to-cell communication,legume root symbiosis,nodule development,rhizobial infection,symbiotic gene expression,symplastic connectivity,β-1,3-gluca