[Objectives]To screen the tissue culture rapid propagation formula suitable for each tissue culture stage of Anoectochilus roxburghii( Wall) Lind. [Methods] The stem segments of Fujian A. roxburghii were used as expla...[Objectives]To screen the tissue culture rapid propagation formula suitable for each tissue culture stage of Anoectochilus roxburghii( Wall) Lind. [Methods] The stem segments of Fujian A. roxburghii were used as explant to study the tissue culture rapid propagation and transplantation techniques. The comparative experiment was carried out to study the effects of different hormone concentrations on the induction of stem segments,proliferation of cluster buds,rooting and seedling hardening of A. roxburghii,and study the effects of transplantation matrix on the transplantation of A. roxburghii. [Results]MS + 0. 5 mg/L NAA + 2 mg/L BA + 20 g/L sucrose + 6 g/L agar was suitable for induction of stem segments of A. roxburghii; MS + 0. 5 mg/L NAA + 2 mg/L BA + 1 mg/L KT + 25 g/L sucrose + 6 g/L agar was most suitable for proliferation of cluster buds of A. roxburghii; MS + 1. 0 mg/L IBA + 1. 0 mg/L NAA + 1 g/L activated carbon + 50 g/L mashed banana + 25 g/L sucrose + 6 g/L agar was most suitable for rooting and seedling hardening of A. roxburghii; using peat soil: fine sand( 3∶ 1) as transplantation matrix,the survival rate was the highest. [Conclusions] The experiment results are expected to provide references for factory production of A. roxburghii.展开更多
Objective:Diterpenoids with a wide variety of biological activities from Anoectochilus roxburghii,a precious medicinal plant,are important active components.However,due to the lack of genetic information on the metabo...Objective:Diterpenoids with a wide variety of biological activities from Anoectochilus roxburghii,a precious medicinal plant,are important active components.However,due to the lack of genetic information on the metabolic process of diterpenoids in A.roxburghii,the genes involved in the molecular regulation mechanism of diterpenoid metabolism are still unclear.This study revealed the complex metabolic genes for diterpenoids biosynthesis in different organs of A.roxburghii by combining analysis of transcriptomics and metabolomics.Methods:The differences in diterpenoid accumulation in roots,stems and leaves of A.roxburghii were analyzed by metabonomic analysis,and its metabolic gene information was obtained by transcriptome sequencing.Then,the molecular mechanism of differential diterpenoid accumulation in different organs of A.roxburghii was analyzed from the perspective of gene expression patterns.Results:A total of 296 terpenoid metabolites were identified in the five terpenoid metabolic pathways in A.roxburghii.There were 38,34,and 18 diterpenoids with different contents between roots and leaves,between leaves and stems,and between roots and stems,respectively.Twenty-nine metabolic enzyme genes with 883 unigenes in the diterpenoid synthesis process were identified,and the DXS and FDPS in the terpenoid backbone biosynthesis stage and CPA,GA20ox,GA3ox,GA2ox,and MAS in the diterpenoid biosynthesis stage were predicted to be the key metabolic enzymes for the accumulation of diterpenoids.In addition,14 key transcription factor coding genes were predicted to be involved in the regulation of the diterpenoid biosynthesis.The expression of genes such as GA2ox,MAS,CPA,GA20ox and GA3ox might be activated by some of the 14 transcription factors.The transcription factor NTF-Y and PRE6 were predicted to be the most important transcription factors.Conclusion:This study determined 29 metabolic enzyme genes and predicted 14 transcription factors involved in the molecular regulation mechanism of diterpenoid metabolism in A.roxburghii,which provided a reference for the further study of the molecular regulation mechanism of the accumulation of diterpenoids in different organs of A.roxburghii.展开更多
基金Supported by Science and Technology Project of Huizhou City(2014C040007001)
文摘[Objectives]To screen the tissue culture rapid propagation formula suitable for each tissue culture stage of Anoectochilus roxburghii( Wall) Lind. [Methods] The stem segments of Fujian A. roxburghii were used as explant to study the tissue culture rapid propagation and transplantation techniques. The comparative experiment was carried out to study the effects of different hormone concentrations on the induction of stem segments,proliferation of cluster buds,rooting and seedling hardening of A. roxburghii,and study the effects of transplantation matrix on the transplantation of A. roxburghii. [Results]MS + 0. 5 mg/L NAA + 2 mg/L BA + 20 g/L sucrose + 6 g/L agar was suitable for induction of stem segments of A. roxburghii; MS + 0. 5 mg/L NAA + 2 mg/L BA + 1 mg/L KT + 25 g/L sucrose + 6 g/L agar was most suitable for proliferation of cluster buds of A. roxburghii; MS + 1. 0 mg/L IBA + 1. 0 mg/L NAA + 1 g/L activated carbon + 50 g/L mashed banana + 25 g/L sucrose + 6 g/L agar was most suitable for rooting and seedling hardening of A. roxburghii; using peat soil: fine sand( 3∶ 1) as transplantation matrix,the survival rate was the highest. [Conclusions] The experiment results are expected to provide references for factory production of A. roxburghii.
基金This work was financially supported by grants from the Department of Technology and Science of the Fujian Provincial Government(No.2021J01132,No.2020J01732)the Fujian Agriculture and Forestry University Science and Technology Innovation Special Fund(No.KFA18071A).
文摘Objective:Diterpenoids with a wide variety of biological activities from Anoectochilus roxburghii,a precious medicinal plant,are important active components.However,due to the lack of genetic information on the metabolic process of diterpenoids in A.roxburghii,the genes involved in the molecular regulation mechanism of diterpenoid metabolism are still unclear.This study revealed the complex metabolic genes for diterpenoids biosynthesis in different organs of A.roxburghii by combining analysis of transcriptomics and metabolomics.Methods:The differences in diterpenoid accumulation in roots,stems and leaves of A.roxburghii were analyzed by metabonomic analysis,and its metabolic gene information was obtained by transcriptome sequencing.Then,the molecular mechanism of differential diterpenoid accumulation in different organs of A.roxburghii was analyzed from the perspective of gene expression patterns.Results:A total of 296 terpenoid metabolites were identified in the five terpenoid metabolic pathways in A.roxburghii.There were 38,34,and 18 diterpenoids with different contents between roots and leaves,between leaves and stems,and between roots and stems,respectively.Twenty-nine metabolic enzyme genes with 883 unigenes in the diterpenoid synthesis process were identified,and the DXS and FDPS in the terpenoid backbone biosynthesis stage and CPA,GA20ox,GA3ox,GA2ox,and MAS in the diterpenoid biosynthesis stage were predicted to be the key metabolic enzymes for the accumulation of diterpenoids.In addition,14 key transcription factor coding genes were predicted to be involved in the regulation of the diterpenoid biosynthesis.The expression of genes such as GA2ox,MAS,CPA,GA20ox and GA3ox might be activated by some of the 14 transcription factors.The transcription factor NTF-Y and PRE6 were predicted to be the most important transcription factors.Conclusion:This study determined 29 metabolic enzyme genes and predicted 14 transcription factors involved in the molecular regulation mechanism of diterpenoid metabolism in A.roxburghii,which provided a reference for the further study of the molecular regulation mechanism of the accumulation of diterpenoids in different organs of A.roxburghii.