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Cell layer specific roles for hormones in root development: Gibberellins suppress infection thread progression, promote nodule and lateral root development in the endodermis and interact with auxin and cytokinin

Velandia, K.; Correa-Lozano, A.; McGuiness, P. M.; Reid, J.; Foo, E.

2023-09-05 plant biology
10.1101/2023.09.04.555035 bioRxiv
Show abstract

O_LIGibberellins have a profound influence on the formation of lateral root organs. However, the precise role this hormone plays in the cell-specific events during lateral root formation, rhizobial infection and nodule organogenesis, including interactions with auxin and cytokinin, is not clear. C_LIO_LIWe performed epidermal- and endodermal-specific complementation of the severely gibberellin-deficient na pea (Pisum sativum) mutant with Agrobacterium rhizogenes. Gibberellin mutants were used to examine the spatial expression pattern of cytokinin (TCSn) and auxin (DR5) responsive promoters and hormone levels. C_LIO_LIWe found that gibberellins produced in the endodermis promote lateral root and nodule organogenesis and can induce a mobile signal(s) that suppresses rhizobial infection. In contrast, epidermal-derived gibberellins suppress infection but have little influence on root or nodule development. Gibberellins suppress the cytokinin-responsive TCSn promoter in the cortex and are required for normal auxin activation during nodule primordia formation. C_LIO_LIOur findings indicate that gibberellins regulate the checkpoints between infection thread penetration of the cortex and invasion of nodule primordial cells and promotes the subsequent progression of nodule development. It appears that gibberellins limit the progression and branching of infection threads in the cortex by restricting cytokinin response and activate auxin response to promote nodule primordia development. C_LI

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