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1.
PLoS One ; 15(4): e0231867, 2020.
Article in English | MEDLINE | ID: mdl-32353065

ABSTRACT

This study was conducted to explore specific chill models and the mechanisms underlying rhizome bud dormancy break in Polygonatum kingianum. Rhizome buds were subjected to various chilling temperatures for different duration and then transferred to warm conditions for germination and subsequent evaluation of their response to temperature and chilling requirements. A CUkingianum model was constructed to describe the contribution of low temperature to the chill unit, and it was suggested that 2.97°C was the optimum temperature and that 11.54°C was the upper limit for bud release. The CASkingianum model showed the relationship between chilling accumulation and sprouting percentage; therefore, rhizome bud development could be predicted through the model. Weighted correlation network analysis (WGCNA) of transcriptomic data of endo-, eco- and nondormant rhizome buds generated 33 gene modules, 6 of which were significantly related to bud sprouting percentage. In addition, 7 significantly matched transcription factors (TFs) were identified from the promoters of 17 "real" hub genes, and DAG2 was the best matched TF that bound to AAAG element to regulate gene expression. The current study is valuable for developing a highly efficient strategy for seedling cultivation and provides strong candidates for key genes related to rhizome bud dormancy in P. kingianum.


Subject(s)
Cold Temperature , Models, Statistical , Polygonatum/growth & development , Rhizome/growth & development , Gene Expression Profiling , Plant Dormancy , Polygonatum/genetics
2.
Plant Mol Biol ; 99(3): 205-217, 2019 Feb.
Article in English | MEDLINE | ID: mdl-30627860

ABSTRACT

KEY MESSAGE: We identified three dormant stages of Polygonatum kingianum and changes that occurred during dormancy transition in the following aspects including cell wall and hormones, as well as interaction among them. Polygonatum kingianum Coll.et Hemsl (P. kingianum) is an important traditional Chinese medicine, but the mechanism of its rhizome bud dormancy has not yet been studied systematically. In this study, three dormancy phases were induced under controlled conditions, and changes occurring during the transition were examined, focusing on phytohormones and the cell wall. As revealed by HPLC-MS (High Performance Liquid Chromatography-Mass Spectrometry) analysis, the endo- to non-dormancy transition was association with a reduced abscisic acid (ABA)/gibberellin (GA3) ratio, a decreased level of auxin (IAA) and an increased level of trans-zeatin (tZR). Transmission electron microscopy showed that plasmodesmata (PDs) and the cell wall of the bud underwent significant changes between endo- and eco-dormancy. A total of 95,462 differentially expressed genes (DEGs) were identified based on transcriptomics, and clustering and principal component analysis confirmed the different physiological statuses of the three types of bud samples. Changes in the abundance of transcripts associated with IAA, cytokinins (CTKs), GA, ABA, brassinolide (BR), jasmonic acid (JA), ethylene, salicylic acid (SA), PDs and cell wall-loosening factors were analysed during the bud dormancy transition in P. kingianum. Furthermore, nitrilase 4 (NIT4) and tryptophan synthase alpha chain (TSA1), which are related to IAA synthesis, were identified as hub genes of the co-expression network, and strong interactions between hormones and cell wall-related factors were observed. This research will provide a good model for chilling-treated rhizome bud dormancy in P. kingianum and cultivation of this plant.


Subject(s)
Cell Wall/genetics , Gene Expression Regulation, Plant , Gene Regulatory Networks , Indoleacetic Acids/metabolism , Plant Dormancy/genetics , Plant Growth Regulators/genetics , Polygonatum/genetics , Rhizome/genetics , Abscisic Acid/genetics , Abscisic Acid/metabolism , Brassinosteroids/metabolism , Cell Wall/metabolism , Cell Wall/ultrastructure , Cluster Analysis , Cyclopentanes/metabolism , Cytokinins/metabolism , Ethylenes/metabolism , Gene Expression Profiling , Gibberellins/genetics , Gibberellins/metabolism , Medicine, Chinese Traditional , Oxylipins/metabolism , Plant Dormancy/physiology , Plant Growth Regulators/metabolism , Plant Proteins/genetics , Plant Proteins/metabolism , Polygonatum/metabolism , Rhizome/metabolism , Salicylic Acid/metabolism , Signal Transduction/genetics , Signal Transduction/physiology , Steroids, Heterocyclic/metabolism , Tryptophan Synthase/metabolism
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