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Integrated transcriptome and miRNA analysis uncovers molecular regulators of aerial stem-to-rhizome transition in the medical herb Gynostemma pentaphyllum
- Source :
- BMC Genomics, BMC Genomics, Vol 20, Iss 1, Pp 1-15 (2019)
- Publication Year :
- 2019
- Publisher :
- Springer Science and Business Media LLC, 2019.
-
Abstract
- Background Gynostemma pentaphyllum is an important perennial medicinal herb belonging to the family Cucurbitaceae. Aerial stem-to-rhizome transition before entering the winter is an adaptive regenerative strategy in G. pentaphyllum that enables it to survive during winter. However, the molecular regulation of aerial stem-to-rhizome transition is unknown in plants. Here, integrated transcriptome and miRNA analysis was conducted to investigate the regulatory network of stem-to-rhizome transition. Results Nine transcriptome libraries prepared from stem/rhizome samples collected at three stages of developmental stem-to-rhizome transition were sequenced and a total of 5428 differentially expressed genes (DEGs) were identified. DEGs associated with gravitropism, cell wall biosynthesis, photoperiod, hormone signaling, and carbohydrate metabolism were found to regulate stem-to-rhizome transition. Nine small RNA libraries were parallelly sequenced, and seven significantly differentially expressed miRNAs (DEMs) were identified, including four known and three novel miRNAs. The seven DEMs targeted 123 mRNAs, and six pairs of miRNA-target showed significantly opposite expression trends. The GpmiR166b-GpECH2 module involved in stem-to-rhizome transition probably promotes cell expansion by IBA-to-IAA conversion, and the GpmiR166e-GpSGT-like module probably protects IAA from degradation, thereby promoting rhizome formation. GpmiR156a was found to be involved in stem-to-rhizome transition by inhibiting the expression of GpSPL13A/GpSPL6, which are believed to negatively regulate vegetative phase transition. GpmiR156a and a novel miRNA Co.47071 co-repressed the expression of growth inhibitor GpRAV-like during stem-to-rhizome transition. These miRNAs and their targets were first reported to be involved in the formation of rhizomes. In this study, the expression patterns of DEGs, DEMs and their targets were further validated by quantitative real-time PCR, supporting the reliability of sequencing data. Conclusions Our study revealed a comprehensive molecular network regulating the transition of aerial stem to rhizome in G. pentaphyllum. These results broaden our understanding of developmental phase transitions in plants.
- Subjects :
- China
Small RNA
Integrated analysis
lcsh:QH426-470
lcsh:Biotechnology
Gravitropism
Computational biology
Biology
Proteomics
Transcriptome
Gene Expression Regulation, Plant
lcsh:TP248.13-248.65
microRNA
Genetics
Gynostemma pentaphyllum
Gene Library
Plants, Medicinal
Aerial stem-to-rhizome transition
Gene Expression Profiling
Molecular Sequence Annotation
Plant Components, Aerial
biology.organism_classification
Adaptation, Physiological
Gynostemma
Rhizome
Cold Temperature
lcsh:Genetics
MicroRNAs
Gene Ontology
RNA, Plant
miRNAs
Carbohydrate Metabolism
DNA microarray
Signal Transduction
Research Article
Biotechnology
Subjects
Details
- ISSN :
- 14712164
- Volume :
- 20
- Database :
- OpenAIRE
- Journal :
- BMC Genomics
- Accession number :
- edsair.doi.dedup.....a5c742aceaf1bba1dba124e33a300ef7
- Full Text :
- https://doi.org/10.1186/s12864-019-6250-8