衰老
生物
拟南芥
转录因子
突变体
细胞生物学
原基
染色质免疫沉淀
遗传学
锌指转录因子
植物
锌指
基因
基因表达
发起人
作者
Jin Hee Kim,Jeongsik Kim,Sang Eun Jun,Sanghoon Park,Rupak Timilsina,Da Som Kwon,Yong Min Kim,Sung‐Jin Park,Ji Young Hwang,Hong Gil Nam,Gyung‐Tae Kim,Hye Ryun Woo
摘要
Summary Plant leaves undergo a series of developmental changes from leaf primordium initiation through growth and maturation to senescence throughout their life span. Although the mechanisms underlying leaf senescence have been intensively elucidated, our knowledge of the interrelationship between early leaf development and senescence is still fragmentary. We isolated the oresara15‐1Dominant ( ore15‐1D ) mutant, which had an extended leaf longevity and an enlarged leaf size, from activation‐tagged lines of Arabidopsis . Plasmid rescue identified that ORE 15 encodes a PLANT A/T‐ RICH SEQUENCE ‐ AND ZINC ‐ BINDING PROTEIN family transcription factor. Phenotypes of ore15‐1D and ore15‐2 , a loss‐of‐function mutant, were evaluated through physiological and anatomical analyses. Microarray, quantitative reverse transcription polymerase chain reaction, and chromatin immunoprecipitation as well as genetic analysis were employed to reveal the molecular mechanism of ORE 15 in the regulation of leaf growth and senescence. ORE 15 enhanced leaf growth by promoting the rate and duration of cell proliferation in the earlier stage and suppressed leaf senescence in the later stage by modulating the GROWTH ‐ REGULATING FACTOR ( GRF )/ GRF ‐ INTERACTING FACTOR regulatory pathway. Our study highlighted a molecular conjunction through ORE 15 between growth and senescence, which are two temporally separate developmental processes during leaf life span.
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