Flower development plays vital role in horticultural plants.Post-transcriptional regulation via small RNAs is important for plant flower development.To uncover post-transcriptional regulatory networks during the flowe...Flower development plays vital role in horticultural plants.Post-transcriptional regulation via small RNAs is important for plant flower development.To uncover post-transcriptional regulatory networks during the flower development in Dimocarpus longan Lour.‘Shixia’,an economically important fruit crop in subtropical regions,we collected and analyzed sRNA deep-sequencing datasets and degradome libraries Apart from identifying miRNAs and phased siRNA generating loci(PHAS loci),120 hairpin loci,producing abundant sRNAs,were identified by in-house protocols.Our results suggested that 56 miRNA-target pairs,2221-nt-PHAS loci,and 111 hairpin loci are involved in posttranscriptional gene silencing during longan reproductive development.Lineage-specific or species-specific post-transcriptional regulatory modules have been unveiled,including miR482-PHAS and miRN15.miR482-PHAS might be involved in longan flower development beyond their conserved roles in plant defense,and miRN15 is a novel miRNA likely associated with a hairpin locus(HPL-056)to regulate strigolactone receptor gene DWARF14(D14)and the biogenesis of phasiRNAs from D14.These small RNAs are enriched in flower buds,suggesting they are likely involved in post-transcriptional regulatory networks essential for longan flower development via the strigolactone signaling pathway.展开更多
Paederia scandens(Lour.)Merr.is a traditional Chinese medicine,which mainly has the functions of analgesia,detoxification,anti-inflammatory and anticonvulsant.Modern studies show that the main chemical constituents of...Paederia scandens(Lour.)Merr.is a traditional Chinese medicine,which mainly has the functions of analgesia,detoxification,anti-inflammatory and anticonvulsant.Modern studies show that the main chemical constituents of this plant are iridoids and volatile oil,which have biological activities such as analgesia,anti-inflammatory,hepatoprotection,renoprotection and antibacterial.This review highlights the chemical constituents and biological activities of P.scandens based on studies published in last decades and provides the references for the further development and utilization of this medicinal plant.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
[目的]低温是导致香蕉减产的主要自然灾害之一。基于转录组与蛋白质组关联分析参与香蕉抗寒的相关基因、蛋白及信号、代谢通路调控网络,探讨香蕉抗寒的分子机制。[方法]以巴西蕉为试材,在7℃低温下处理1 d(Cold1)和3 d(Cold3),以28℃培...[目的]低温是导致香蕉减产的主要自然灾害之一。基于转录组与蛋白质组关联分析参与香蕉抗寒的相关基因、蛋白及信号、代谢通路调控网络,探讨香蕉抗寒的分子机制。[方法]以巴西蕉为试材,在7℃低温下处理1 d(Cold1)和3 d(Cold3),以28℃培养的巴西蕉为对照(CK),基于笔者课题组前期获得的蛋白质组数据,利用转录组测序技术检测巴西蕉在低温胁迫下基因调控网络的变化,同时与蛋白质组学数据进行关联分析,共同解析巴西蕉响应低温胁迫的分子机制。[结果]转录组分析结果显示,Cold1 vs CK、Cold3 vs CK和Cold1 vs Cold3三个对比组分别鉴定出11 370、15 460和9 619个差异表达基因,对这些基因的KEGG富集分析发现,差异表达基因在光合作用信号、谷胱甘肽代谢、α-亚麻酸代谢途径和苯丙素生物合成等多个低温胁迫关键信号代谢通路中富集。对部分差异表达基因进行实时荧光定量(qRT-PCR)分析,其中DREB、MAPK和MYB等低温调控关键基因的表达量在低温处理后显著上升,所选20个基因的表达变化趋势与RNA-seq基本相符,证实了RNA-seq的准确性。转录组与蛋白质组关联分析结果显示,共鉴定到6 211个与转录本相对应的蛋白,转录组与蛋白质呈现正相关关系,共有105个转录本及其对应的蛋白表达量共同上调,有218个转录本及其对应的蛋白表达量共同下调。GO富集分析显示,差异表达基因和蛋白在光响应、叶绿体、氧化还原酶活性等功能大量富集。此外,对差异表达基因和蛋白KEGG通路的关联分析发现,低温处理抑制了苯丙素生物合成和光合作用信号途径相关基因及蛋白的表达,促进了α-亚麻酸代谢和谷胱甘肽途径的表达。[结论]运用转录组结合蛋白质组学技术绘制了基因和蛋白质水平上的香蕉抗寒调控网络,并发现香蕉响应低温的信号通路主要涉及光合作用信号、谷胱甘肽代谢、α-亚麻酸代谢途径和苯丙素生物合成等途径。展开更多
基金funded by the National Key Research and Developmental Program of China(Grant No.2018YFD1000104)supported by awards from the National Natural Science Foundation of China(Grant Nos.32002009 and 32072547)The Special Support Program of Guangdong Province(Grant No.2019TX05N193).
文摘Flower development plays vital role in horticultural plants.Post-transcriptional regulation via small RNAs is important for plant flower development.To uncover post-transcriptional regulatory networks during the flower development in Dimocarpus longan Lour.‘Shixia’,an economically important fruit crop in subtropical regions,we collected and analyzed sRNA deep-sequencing datasets and degradome libraries Apart from identifying miRNAs and phased siRNA generating loci(PHAS loci),120 hairpin loci,producing abundant sRNAs,were identified by in-house protocols.Our results suggested that 56 miRNA-target pairs,2221-nt-PHAS loci,and 111 hairpin loci are involved in posttranscriptional gene silencing during longan reproductive development.Lineage-specific or species-specific post-transcriptional regulatory modules have been unveiled,including miR482-PHAS and miRN15.miR482-PHAS might be involved in longan flower development beyond their conserved roles in plant defense,and miRN15 is a novel miRNA likely associated with a hairpin locus(HPL-056)to regulate strigolactone receptor gene DWARF14(D14)and the biogenesis of phasiRNAs from D14.These small RNAs are enriched in flower buds,suggesting they are likely involved in post-transcriptional regulatory networks essential for longan flower development via the strigolactone signaling pathway.
基金Health Industry Research Project of Hainan Province (No.21A200095)Youth Cultivation Fund Project of the First Affiliated Hospital of Hainan Medical College (No.HYYFYPY201909)。
文摘Paederia scandens(Lour.)Merr.is a traditional Chinese medicine,which mainly has the functions of analgesia,detoxification,anti-inflammatory and anticonvulsant.Modern studies show that the main chemical constituents of this plant are iridoids and volatile oil,which have biological activities such as analgesia,anti-inflammatory,hepatoprotection,renoprotection and antibacterial.This review highlights the chemical constituents and biological activities of P.scandens based on studies published in last decades and provides the references for the further development and utilization of this medicinal plant.
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.
文摘[目的]低温是导致香蕉减产的主要自然灾害之一。基于转录组与蛋白质组关联分析参与香蕉抗寒的相关基因、蛋白及信号、代谢通路调控网络,探讨香蕉抗寒的分子机制。[方法]以巴西蕉为试材,在7℃低温下处理1 d(Cold1)和3 d(Cold3),以28℃培养的巴西蕉为对照(CK),基于笔者课题组前期获得的蛋白质组数据,利用转录组测序技术检测巴西蕉在低温胁迫下基因调控网络的变化,同时与蛋白质组学数据进行关联分析,共同解析巴西蕉响应低温胁迫的分子机制。[结果]转录组分析结果显示,Cold1 vs CK、Cold3 vs CK和Cold1 vs Cold3三个对比组分别鉴定出11 370、15 460和9 619个差异表达基因,对这些基因的KEGG富集分析发现,差异表达基因在光合作用信号、谷胱甘肽代谢、α-亚麻酸代谢途径和苯丙素生物合成等多个低温胁迫关键信号代谢通路中富集。对部分差异表达基因进行实时荧光定量(qRT-PCR)分析,其中DREB、MAPK和MYB等低温调控关键基因的表达量在低温处理后显著上升,所选20个基因的表达变化趋势与RNA-seq基本相符,证实了RNA-seq的准确性。转录组与蛋白质组关联分析结果显示,共鉴定到6 211个与转录本相对应的蛋白,转录组与蛋白质呈现正相关关系,共有105个转录本及其对应的蛋白表达量共同上调,有218个转录本及其对应的蛋白表达量共同下调。GO富集分析显示,差异表达基因和蛋白在光响应、叶绿体、氧化还原酶活性等功能大量富集。此外,对差异表达基因和蛋白KEGG通路的关联分析发现,低温处理抑制了苯丙素生物合成和光合作用信号途径相关基因及蛋白的表达,促进了α-亚麻酸代谢和谷胱甘肽途径的表达。[结论]运用转录组结合蛋白质组学技术绘制了基因和蛋白质水平上的香蕉抗寒调控网络,并发现香蕉响应低温的信号通路主要涉及光合作用信号、谷胱甘肽代谢、α-亚麻酸代谢途径和苯丙素生物合成等途径。