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作 者:Jinku Kang Kiyoon Kang Sang-Ji Lee Yejin Shim Sung-Hwan Cho Nam-Chon Paek
机构地区:[1]Department of Agriculture,Forestry and Bioresources,Plant Genomics and Breeding Institute,Research Institute of Agriculture and Life Sciences,Seoul National University,Seoul 08826,Republic of Korea [2]Division of Life Sciences,Incheon National University,Incheon 22012,Republic of Korea
出 处:《The Crop Journal》2024年第6期1607-1618,共12页作物学报(英文版)
基 金:supported by the Cooperative Research Program for Agriculture Science and Technology Development (PJ016992 to Nam-Chon Paek);Rural Development Administration,and the National Research Foundation of Korea (2022R1F1A1075022 to Kiyoon Kang),Republic of Korea.
摘 要:The transition from the vegetative to reproductive stage(flowering)is a critical stage in the life cycle of plants.Transition to flowering is controlled by a complex photoperiod-dependent network.Here,we report the functional analysis of NAC transcription factor ONAC005 as a positive regulator of flowering in rice.An onac005-1 T-DNA insertion mutant showed late flowering only under long-day(LD)conditions,indicating that ONAC005 is an LD-dependent flowering activator.Expression analysis of flowering time genes revealed that ONAC005 negatively regulates expression of OsLFL1,which is a LD-specific repressor of flowering in rice.Consequently,ONAC005 up-regulates expression of downstream genes Ehd1,Hd3a,and RFT1 under LD conditions.ONAC005 physically interacts with previously reported upstream regulators of OsLFL1,OsMADS50 and OsMADS56.Binding assays showed that ONAC005 binds to the promoter regions of OsLFL1.We further found that the ONAC005-OsMADS50-OsMADS56 complex weakly repressed OsLFL1 at the early vegetative stage and then gradually repressed it at the transcriptional level as the plant developed.Taken together,our results suggest that ONAC005 specifically affects flowering under LD-dependent conditions by interacting with an antagonistic protein complex.
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