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The rice EP3 and OsFBK1 E3 ligases alter plant architecture and flower development, and affect transcript accumulation of microRNA pathway genes and their targets

Borna, Rita S.; Murchie, Erik H.; Pyke, Kevin A.; Roberts, Jeremy A.; Gonzalez-Carranza, Zinnia H.

The rice EP3 and OsFBK1 E3 ligases alter plant architecture and flower development, and affect transcript accumulation of microRNA pathway genes and their targets Thumbnail


Authors

Rita S. Borna

Dr ERIK MURCHIE erik.murchie@nottingham.ac.uk
Professor of Applied Plant Physiology

Kevin A. Pyke

Jeremy A. Roberts



Abstract

ERECTA PANICLE 3 (EP3) and ORYZA SATIVA F-BOX KELCH 1 (OsFBK1) proteins share 57% and 54% sequence identity with the Arabidopsis F-box protein HAWAIIAN SKIRT (HWS). Previously we showed that EP3 is a functional orthologue of HWS. Here we demonstrate that OsFBK1 is another functional orthologue of HWS and show the complexity of interaction between EP3 and OsFBK1 genes at different developmental stages of the plant. qRT-PCR expression analyses and studies of EP3-GFP and OsFBK1-RFP promoter reporter lines demonstrate that although EP3 and OsFBK1 expression can be detected in the same tissues some cells exclusively express EP3 or OsFBK1 whilst others co-express both genes. Loss, reduction or gain-of-function lines for EP3 and OsFBK1, show that EP3 and OsFBK1 affect plant architecture, organ size, floral organ number and size, floral morphology, pollen viability, grain size and weight. We have identified the putative orthologue genes of the rice microRNA pathway for ORYZA SATIVA DAWDLE (OsDDL) and ORYZA SATIVA SERRATE (OsSE), and demonstrated that EP3 and OsFBK1 affect their transcript levels as well as those of CROWN ROOT DEFECT 1/ORYZA SATIVA Exportin-5 HASTY (CRD1/OsHST), ORYZA SATIVA DICER-LIKE 1 (OsDCL) and ORYZA SATIVA WEAVY LEAF1 (OsWAF1). We show that EP3 affects OsPri-MIR164, OsNAM1 and OsNAC1 transcript levels. OsNAC1 transcripts are modified by OsFBK1, suggesting two independent regulatory pathways, one via EP3 and OsMIR164 and the other via OsFBK1. Our data propose that EP3 and OsFBK1 conjointly play similar roles in rice to how HWS does in Arabidopsis.

Citation

Borna, R. S., Murchie, E. H., Pyke, K. A., Roberts, J. A., & Gonzalez-Carranza, Z. H. (2022). The rice EP3 and OsFBK1 E3 ligases alter plant architecture and flower development, and affect transcript accumulation of microRNA pathway genes and their targets. Plant Biotechnology Journal, 20(2), 297-309. https://doi.org/10.1111/pbi.13710

Journal Article Type Article
Acceptance Date Sep 10, 2021
Online Publication Date Sep 20, 2021
Publication Date 2022-02
Deposit Date Sep 20, 2021
Publicly Available Date Oct 1, 2021
Journal Plant Biotechnology Journal
Print ISSN 1467-7644
Electronic ISSN 1467-7652
Peer Reviewed Peer Reviewed
Volume 20
Issue 2
Pages 297-309
DOI https://doi.org/10.1111/pbi.13710
Keywords Rice; F-box proteins; flower development; micro RNA pathway
Public URL https://nottingham-repository.worktribe.com/output/6292238
Publisher URL https://onlinelibrary.wiley.com/doi/10.1111/pbi.13710

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