Integrated transcriptome, small RNA, and degradome analysis to elucidate the regulation of rice seedling mesocotyl development during the passage from darkness to light
Integrated transcriptome, small RNA, and degradome analysis to elucidate the regulation of rice seedling mesocotyl development during the passage from darkness to light作者机构:State Key Laboratory of Rice BiologyChina National Center for Rice ImprovementChina National Rice Research InstituteHangzhou 310006ZhejiangChina National Key Laboratory of Crop Genetic ImprovementHuazhong Agricultural UniversityWuhan 430070HubeiChina
出 版 物:《The Crop Journal》 (作物学报(英文版))
年 卷 期:2020年第8卷第6期
页 面:918-928页
核心收录:
基 金:financially supported by the National S&T Major Project of China(2016ZX08001006) the National Key Research and Development Program of China(2016YFD0101801 and 2017YFD0100300) the Agricultural Science and Technology Innovation Program of CAAS
主 题:Oryza sativa L. Mesocotyl Transcriptome MicroRNAome Degradome
摘 要:The mesocotyl,a structure located between the basal part of the seminal root and the coleoptile node of seedlings,contributes to pushing the shoot tip through the soil surface,a function that is essential for the uniform emergence of direct-seeded *** elongation is inhibited by light and induced in *** investigation of an indica rice(P25)with vigorous mesocotyl elongation was aimed at identifying theomicsbasis of its lightinduced growth inhibition.A transcriptomic comparison between mesocotyl tissues that had developed in the dark and then been exposed to light identified many differentially expressed genes(DEGs)and differentially abundant micro RNAs(mi RNAs).Degradome sequencing analysis revealed 27 negative mi RNA-target pairs.A co-expression regulatory network was constructed based on the mi RNAs,their corresponding targets,and DEGs with a common Gene Ontology *** suggested that auxin and light,probably antagonistically,affect mesocotyl elongation by regulating polyamine oxidase activity.