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Light Triggers the miRNA-Biogenetic Inconsistency for De-etiolated Seedling Survivability in Arabidopsis thaliana

摘要The shift of dark-grown seedlings into light causes enormous transcriptome changes followed by a dramatic developmental transition.Here,we show that microRNA (miRNA) biogenesis also undergoes regulatory changes during de-etiolation.Etiolated seedlings maintain low levels of primary miRNAs (pri-miRNAs)and miRNA processing core proteins,such as Dicer-like 1,SERRATE,and HYPONASTIC LEAVES 1,whereas during de-etiolation both pri-miRNAs and the processing components accumulate to high levels.However,the levels of most miRNAs do not notably increase in response to light.To reconcile this inconsistency,we demonstrated that an unknown suppressor decreases miRNA-processing activity and lightinduced SMALL RNA DEGRADING NUCLEASE 1 shortens the half-life of several miRNAs in de-etiolated seedlings.Taken together,these data suggest a novel mechanism,miRNA-biogenetic inconsistency,which accounts for the intricacy of miRNA biogenesis during de-etiolation.This mechanism is essential for the survival of de-etiolated seedlings after long-term skotomorphogenesis and their optimal adaptation to ever-changing light conditions.

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作者单位 Department of Systems Biology,Institute of Life Science and Biotechnology,Yonsei University,Seoul 120-749,Korea [1] Institute of Plant Biology,Biological Research Centre(BRC),Hungarian Academy of Sciences,Temesvári krt.62,Szeged 6726,Hungary [2] Instituto de Agrobiotecnología del Litoral(IAL)Centro Científico Tecnológico Santa Fe(CCT),Santa Fe,Argentina [3] Laboratoire de Recherche en Sciences Végétales,24,chemin de Borde-Rouge,BP 42617 Auzeville,Castanet-Tolosan 31326,France [4] Department of Plant and Environmental Sciences,Faculty of Science,University of Copenhagen,Thorvaldsensvej 40,Frederiksberg,Copenhagen 1871,Denmark [5] Institute of Molecular Plant Sciences,School of Biological Sciences,The King's Buildings,University of Edinburgh,Edinburgh EH9 3BF,UK [6] Department of Systems Biology,Institute of Life Science and Biotechnology,Yonsei University,Seoul 120-749,Korea;Department of Plant and Environmental Sciences,Faculty of Science,University of Copenhagen,Thorvaldsensvej 40,Frederiksberg,Copenhagen 1871,Denmark [7]
栏目名称 Research Articles
发布时间 2020-05-25
基金项目
This research was supported by the Basic Science Research Program through the National Research Foundation of Korea (NRF) funded by the Ministry of Science,ICT and Future Planning NRF-2017R1A6A3A11035981 to M.Y.R NRF-2017H1A2A1044209 to S.W.C.The research was supported in part by Brain Korea 21 (BK21) PLUS program S.W.C.and G.M.K.are fellowship awardees of the BK21 PLUS program.The research in Hungary was supported by grants from the Economic Development and Innovation Operative Program
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分子植物(英文版)

分子植物(英文版)

2020年13卷3期

431-445页

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