Symbiosis: Plasmodesmata Link Root-Nodule Organogenesis with Infection
During the establishment of root-nodule symbioses between plants and nitrogen-fixing rhizobia, nodule organogenesis in the inner cortex needs to be precisely coordinated with the rhizobial infection site at the root epidermis. A new study shows that rhizobia induce localized callose turnover at plas...
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Veröffentlicht in: | Current biology 2018-12, Vol.28 (24), p.R1400-R1403 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | During the establishment of root-nodule symbioses between plants and nitrogen-fixing rhizobia, nodule organogenesis in the inner cortex needs to be precisely coordinated with the rhizobial infection site at the root epidermis. A new study shows that rhizobia induce localized callose turnover at plasmodesmata to allow spatiotemporal synchronization of the two processes through symplastic connections.
During the establishment of root-nodule symbioses between plants and nitrogen-fixing rhizobia, nodule organogenesis in the inner cortex needs to be precisely coordinated with the rhizobial infection site at the root epidermis. A new study shows that rhizobia induce localized callose turnover at plasmodesmata to allow spatiotemporal synchronization of the two processes through symplastic connections. |
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ISSN: | 0960-9822 1879-0445 |
DOI: | 10.1016/j.cub.2018.11.013 |