中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
A comparative full-length transcriptomic resource provides insight into the perennial monocarpic mass flowering

文献类型:期刊论文

作者Zhao,Jiu-Xia; Wang,Shu; Liu,Jiazhi; Jiang,Xiao-Dong; Wen,Jing; Suo,Zhi-Quan; Liu,Jie; Zhong,Mi-Cai; Wang,Qin; Gu,Zhirong
刊名PLANT JOURNAL
出版日期2023
卷号116期号:6页码:1842-1855
关键词perennial monocarpic mass flowering Strobilanthes ISO-seq RNA-seq BlueOmics PSEUDO-RESPONSE REGULATORS STROBILANTHES ACANTHACEAE EXPRESSION ANALYSIS GENE TIME PROTEIN LONG FKF1 PRR5 CLASSIFICATION
ISSN号1365-313X
DOI10.1111/tpj.16452
英文摘要Perennial monocarpic mass flowering represents as a key developmental innovation in flowering time diver-sity in several biological and economical essential families, such as the woody bamboos and the shrubby Strobilanthes. However, molecular and genetic mechanisms underlying this important biodiversity remain poorly investigated. Here, we generated a full-length transcriptome resource incorporated into the BlueO-mics database (http://blueomics.iflora.cn) for two Strobilanthes species, which feature contrasting flowering time behaviors. Using about 112 and 104 Gb Iso-seq reads together with similar to 185 and similar to 75 Gb strand-specific RNA seq data, we annotated 80 971 and 79 985 non-redundant full-length transcripts for the perennial polycarpic Strobilanthes tetrasperma and the perennial monocarpic Strobilanthes biocullata, respectively. In S. tetrasperma, we identified 8794 transcripts showing spatiotemporal expression in nine tissues. In leaves and shoot apical meristems at two developmental stages, 977 and 1121 transcripts were differen-tially accumulated in S. tetrasperma and S. biocullata, respectively. Interestingly, among the 33 transcrip-tion factors showing differential expression in S. tetrasperma but without differential expression in S. biocullata, three were involved potentially in the photoperiod and circadian-clock pathway of flowering time regulation (FAR1 RELATED SEQUENCE 12, FRS12; NUCLEAR FACTOR Y A1, NFYA1; PSEUDO-RESPONSE REGULATOR 5, PRR5), hence provides an important clue in deciphering the flowering diversity mechanisms. Our data serve as a key resource for further dissection of molecular and genetic mechanisms underpinning key biological innovations, here, the perennial monocarpic mass flowering.
WOS记录号WOS:001061282200001
源URL[http://ir.kib.ac.cn/handle/151853/75247]  
专题中国科学院昆明植物研究所
推荐引用方式
GB/T 7714
Zhao,Jiu-Xia,Wang,Shu,Liu,Jiazhi,et al. A comparative full-length transcriptomic resource provides insight into the perennial monocarpic mass flowering[J]. PLANT JOURNAL,2023,116(6):1842-1855.
APA Zhao,Jiu-Xia.,Wang,Shu.,Liu,Jiazhi.,Jiang,Xiao-Dong.,Wen,Jing.,...&Li,De-Zhu.(2023).A comparative full-length transcriptomic resource provides insight into the perennial monocarpic mass flowering.PLANT JOURNAL,116(6),1842-1855.
MLA Zhao,Jiu-Xia,et al."A comparative full-length transcriptomic resource provides insight into the perennial monocarpic mass flowering".PLANT JOURNAL 116.6(2023):1842-1855.

入库方式: OAI收割

来源:昆明植物研究所

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