Sweet osmanthus(Osmanthus fragrans) is a having general approval aromatic tree in China that is widely applied to landscaping and gardening. However, the evergreen tree adaptability is limited by many environmental st...Sweet osmanthus(Osmanthus fragrans) is a having general approval aromatic tree in China that is widely applied to landscaping and gardening. However, the evergreen tree adaptability is limited by many environmental stresses. Currently, limited information is available regarding the genetic analysis and functional identification of expansin genes in response to abiotic stress in sweet osmanthus. In this study, a total of 29 expansin genes were identified and divided into four groups by genome-wide analysis from the sweet osmanthus genome. Transcriptome and quantitative Real-time PCR analysis showed that the cell wall-localized protein expansin-like A(OfEXLA1) gene was significantly induced by salt and drought treatment. Histochemical GUS staining of transgenic Arabidopsis lines in which GUS activity was driven with the OfEXLA1 promoter, GUS activity was significantly induced by salt, drought, and exogenous abscisic acid(ABA). In yeast, we found OfEXLA1overexpression significantly improved the population of cells compared with wild-type strains after NaCl and polyethylene glycol(PEG)treatment. Additionally, OfEXLA1 overexpression not only promoted plant growth, but also improved the salt and drought tolerance in Arabidopsis. To gain insight into the role of ABA signaling in the regulation of OfEXLA1 improving abiotic tolerance in sweet osmanthus, four differentially expressed ABA Insensitive 5(ABI5)-like genes(OfABL4, OfABL5, OfABL7, and OfABL8) were identified from transcriptome, and dualluciferase(dual-LUC) and yeast one hybrid(Y1H) assay showed that OfABL4 and OfABL5 might bind to OfEXLA1 promoter to accumulate the OfEXLA1 expression by responding to ABA signaling to improve abiotic tolerance in sweet osmanthus. These results provide the information for understanding the molecular functions of expansin-like A gene and molecular breeding of sweet osmanthus in future.展开更多
Objective:To explore the molecular mechanism of Osmanthus Fragrans Lour.(OFL)in enhancing immunity.Methods:The compounds and action targets of OFL were collected from the Traditional Chinese Medicine Systematic Pharma...Objective:To explore the molecular mechanism of Osmanthus Fragrans Lour.(OFL)in enhancing immunity.Methods:The compounds and action targets of OFL were collected from the Traditional Chinese Medicine Systematic Pharmacology Database and Analysis Platform.Protein targets of compounds were obtained from the UniProt database and relevant targets of boosting immunity were retrieved from the Genecards database.The Kyoto Encyclopedia of Genes and Genomes pathway enrichment analysis and Gene Ontology function enrichment analysis were performed through the DAVID analysis website,Visualization and Integrated Discovery.Finally,the results of the network analysis were validated by performing molecular docking using AutoDock vina.Results:A total of 7 active compounds and 167 potential active targets were identified in OFL.A total of 1549 genes with a correlation score of≥1 were retrieved from the Genecards website with the keyword“boost immunity”,and 107 genes were obtained by crossing the 167 genes of OFL with the 1549 genes of boosting immunity.A total of 4802 entries were obtained from Gene Ontology functional enrichment(P<0.05).A total of 234 signaling pathways were obtained through a Kyoto Encyclopedia of Genes and Genomes pathway analysis(P<0.05).Tumor necrosis factor(TNF)and interleukin 17(IL-17)signaling pathways were closely related to body immunity.The molecular docking results showed that all the core compounds in OFL the characteristics including low energy,a stable structure and high binding activity when bound to IL-17 and TNF-αprotein.Kaempferol showed the highest affinity with IL-17,and fucosterol showed the highest affinity with TNF-α.Conclusions:Through studies on network pharmacology and molecular docking,we have further demonstrated that OFL could enhance the immunity of the body through multi-component,multi-target and multi-pathway actions,and that IL-17/TNF-αsignalling pathway is the key molecular mechanism.展开更多
基金supported by the National Natural Science Foundation of China (Grant Nos.31902057 and 32072615)Zhejiang Provincial Natural Science Foundation of China (Grant No.LQ19C160012)the key research and development program of Zhejiang Province (Grant No.2021C02071)。
文摘Sweet osmanthus(Osmanthus fragrans) is a having general approval aromatic tree in China that is widely applied to landscaping and gardening. However, the evergreen tree adaptability is limited by many environmental stresses. Currently, limited information is available regarding the genetic analysis and functional identification of expansin genes in response to abiotic stress in sweet osmanthus. In this study, a total of 29 expansin genes were identified and divided into four groups by genome-wide analysis from the sweet osmanthus genome. Transcriptome and quantitative Real-time PCR analysis showed that the cell wall-localized protein expansin-like A(OfEXLA1) gene was significantly induced by salt and drought treatment. Histochemical GUS staining of transgenic Arabidopsis lines in which GUS activity was driven with the OfEXLA1 promoter, GUS activity was significantly induced by salt, drought, and exogenous abscisic acid(ABA). In yeast, we found OfEXLA1overexpression significantly improved the population of cells compared with wild-type strains after NaCl and polyethylene glycol(PEG)treatment. Additionally, OfEXLA1 overexpression not only promoted plant growth, but also improved the salt and drought tolerance in Arabidopsis. To gain insight into the role of ABA signaling in the regulation of OfEXLA1 improving abiotic tolerance in sweet osmanthus, four differentially expressed ABA Insensitive 5(ABI5)-like genes(OfABL4, OfABL5, OfABL7, and OfABL8) were identified from transcriptome, and dualluciferase(dual-LUC) and yeast one hybrid(Y1H) assay showed that OfABL4 and OfABL5 might bind to OfEXLA1 promoter to accumulate the OfEXLA1 expression by responding to ABA signaling to improve abiotic tolerance in sweet osmanthus. These results provide the information for understanding the molecular functions of expansin-like A gene and molecular breeding of sweet osmanthus in future.
基金We are grateful for the supports from the China Postdoctoral Science Foundation(No.2021M693961)Hubei University of Science and Technology Special Scientific Research Fund of Medical School of Ophthalmology and Otorhinolaryngology(No.2020WG13)+3 种基金Young and Middle-aged Talent Project of Hubei Provincial Department of Education(No.Q20222808)Youth Talent Project of Health Commission of Hubei Province(No.ZY2021Q026)Hubei University of Science and Technology Doctoral Startup Fund Project(No.BK202029)National Undergraduate Innovation and Entrepreneurship Project(No.202010927004).
文摘Objective:To explore the molecular mechanism of Osmanthus Fragrans Lour.(OFL)in enhancing immunity.Methods:The compounds and action targets of OFL were collected from the Traditional Chinese Medicine Systematic Pharmacology Database and Analysis Platform.Protein targets of compounds were obtained from the UniProt database and relevant targets of boosting immunity were retrieved from the Genecards database.The Kyoto Encyclopedia of Genes and Genomes pathway enrichment analysis and Gene Ontology function enrichment analysis were performed through the DAVID analysis website,Visualization and Integrated Discovery.Finally,the results of the network analysis were validated by performing molecular docking using AutoDock vina.Results:A total of 7 active compounds and 167 potential active targets were identified in OFL.A total of 1549 genes with a correlation score of≥1 were retrieved from the Genecards website with the keyword“boost immunity”,and 107 genes were obtained by crossing the 167 genes of OFL with the 1549 genes of boosting immunity.A total of 4802 entries were obtained from Gene Ontology functional enrichment(P<0.05).A total of 234 signaling pathways were obtained through a Kyoto Encyclopedia of Genes and Genomes pathway analysis(P<0.05).Tumor necrosis factor(TNF)and interleukin 17(IL-17)signaling pathways were closely related to body immunity.The molecular docking results showed that all the core compounds in OFL the characteristics including low energy,a stable structure and high binding activity when bound to IL-17 and TNF-αprotein.Kaempferol showed the highest affinity with IL-17,and fucosterol showed the highest affinity with TNF-α.Conclusions:Through studies on network pharmacology and molecular docking,we have further demonstrated that OFL could enhance the immunity of the body through multi-component,multi-target and multi-pathway actions,and that IL-17/TNF-αsignalling pathway is the key molecular mechanism.