• 中文核心期刊
  • CSCD来源期刊
  • 中国科技核心期刊
  • CA、CABI、ZR收录期刊

Message Board

Respected readers, authors and reviewers, you can add comments to this page on any questions about the contribution, review,        editing and publication of this journal. We will give you an answer as soon as possible. Thank you for your support!

Name
E-mail
Phone
Title
Content
Verification Code
Volume 34 Issue 9
Sep.  2019
Turn off MathJax
Article Contents
LIN J B, WANG W Y, ZOU H, et al. Transcriptome Analysis on Pathway of and Genes Related to Flavonoid Synthesis in Dendrobium officinale [J]. Fujian Journal of Agricultural Sciences,2019,34(9):1019−1025. doi: 10.19303/j.issn.1008-0384.2019.09.004
Citation: LIN J B, WANG W Y, ZOU H, et al. Transcriptome Analysis on Pathway of and Genes Related to Flavonoid Synthesis in Dendrobium officinale [J]. Fujian Journal of Agricultural Sciences,2019,34(9):1019−1025. doi: 10.19303/j.issn.1008-0384.2019.09.004

Transcriptome Analysis on Pathway of and Genes Related to Flavonoid Synthesis in Dendrobium officinale

doi: 10.19303/j.issn.1008-0384.2019.09.004
  • Received Date: 2019-07-17
  • Rev Recd Date: 2019-08-05
  • Publish Date: 2019-09-01
  •   Objective  Pathway and genes related to the flavonoid synthesis in Dendrobium officinale were analyzed for studying on the metabolic regulation and medicinal applications of flavonoids.  Method  Transcriptomes of the stems and leaves of D. officinale plants at two growth stages were determined by means of Illumina HiSeq 4000 high-throughput sequencing. The assembled unigenes were used for the functional annotation and genetic analysis of the flavonoid biosynthetic pathway.  Result  There were 48 unigenes involving 14 enzymes found to be associated with the flavonoid metabolism. Among them, the 5 CHS-related unigenes showed a CHS-like conserved domain, highly conserved amino acid residues (Cys-His-Asn) at the active site, and mutated amino acid residues at the malonyl-CoA and product binding sites; and, the CHI (Unigene0013781) was identified as a Type I chalcone isomerase, isomerizing 6'-hydroxychalone to 5-hydroxyflavanone. The expressions of CHS (Unigene0008250), CHI (Unigene0013781) and F3H were higher than those of CHS (Unigene 0012884) and C3′H in the stems and leaves of the plants at both growth stages.  Conclusion  Forty-eight unigenes involving 14 enzymes associated with the flavonoid metabolism in D. officinale plants were identified by the transcriptome analysis. Of the 5 CHS-related unigenes, two encoded chalcone synthase, and 3 bibenzyl synthase, while the CHI (Unigene0013781) a Type I chalcone isomerase.
  • loading
  • [1]
    郭军, 凌和平, 李良俊, 等. 园艺作物黄酮类化合物研究进展 [J]. 江苏农业学报, 2011, 27(2):430−436. doi: 10.3969/j.issn.1000-4440.2011.02.035

    GUO J, LING H P, LI L J, et al. Research advances in flavonoids of horticultural crops [J]. Jiangsu Journal of Agricultural Sciences, 2011, 27(2): 430−436.(in Chinese) doi: 10.3969/j.issn.1000-4440.2011.02.035
    [2]
    张刚, 李军营, 黎旺姐, 等. 烟草黄酮类化合物的代谢及其调控机制 [J]. 基因组学与应用生物学, 2017, 36(4):1672−1681.

    ZHANG G, LI J Y, LI W J, et al. Metabolism and regulation mechanisms of flavonoids in Tobacco [J]. Genomics and Applied Biology, 2017, 36(4): 1672−1681.(in Chinese)
    [3]
    TSUCHIYA H. Structure-dependent membrane interaction of flavonoids associated with their bioactivity [J]. Food chemistry, 2010, 120(4): 1089−1096. doi: 10.1016/j.foodchem.2009.11.057
    [4]
    胡云霞, 樊金玲, 武涛. 黄酮类化合物分类和生物活性机理 [J]. 枣庄学院学报, 2014, 31(2):72−78. doi: 10.3969/j.issn.1004-7077.2014.02.017

    HU Y X, FAN J L, WU T. Classification and bioactivity mechanism of flavonoids [J]. Journal of Zaozhuang University, 2014, 31(2): 72−78.(in Chinese) doi: 10.3969/j.issn.1004-7077.2014.02.017
    [5]
    蓝晓雪, 杨洁. 黄酮类化合物降糖功能研究进展 [J]. 安徽农业科学, 2016, 44(17):255−257. doi: 10.3969/j.issn.0517-6611.2016.17.082

    LAN X X, YANG J. Research advances in hypoglycemic functions of flavonoids [J]. Journal of Anhui Agricultural Sciences, 2016, 44(17): 255−257.(in Chinese) doi: 10.3969/j.issn.0517-6611.2016.17.082
    [6]
    程艳刚, 李国艳, 谭金燕, 等. 黄酮类化合物抗心肌缺血作用机制研究进展 [J]. 辽宁中医药大学学报, 2018, 20(6):82−85.

    CHENG Y G, LI G Y, TAN J Y, et al. Research progress on flavonoids for mechanism of anti-myocardial ischemia [J]. Journal of Liaoning University of Traditional Chinese Medicine, 2018, 20(6): 82−85.(in Chinese)
    [7]
    廖俊杰, 李文静, 李进进, 等. 铁皮石斛有效成分与功效研究进展 [J]. 广东轻工职业技术学院学报, 2015, 14(3):16−19, 26. doi: 10.3969/j.issn.1672-1950.2015.03.004

    LIAO J J, LI W J, LI J J, et al. Advances in the of constituents and pharmacological effects of Dendrobium candidum Wall. ex. Lind [J]. Journal of Guangdong Industry Technical College, 2015, 14(3): 16−19, 26.(in Chinese) doi: 10.3969/j.issn.1672-1950.2015.03.004
    [8]
    孙恒, 胡强, 金航, 等. 铁皮石斛化学成分及药理活性研究进展 [J]. 中国实验方剂学杂志, 2017, 23(11):225−234.

    SUN H, HU Q, JIN H, et al. Research advances in chemical constituents and pharmacological activities of Dendrobii officinalis caulis [J]. Chinese Journal of Experimental Traditional Medical Formulae, 2017, 23(11): 225−234.(in Chinese)
    [9]
    徐丽红, 周鑫, 郑蔚然, 等. 不同仿野生栽培铁皮石斛多品质指标的比较 [J]. 浙江农业科学, 2018, 59(7):1253−1257.

    XU L H, ZHOU X, ZHENG W R, et al. Comparison of multi-quality of Dendrobium candidum in different imitative wild culture [J]. Journal of Zhejiang Agricultural Sciences, 2018, 59(7): 1253−1257.(in Chinese)
    [10]
    唐丽, 李菁, 龙华, 等. 不同生长龄铁皮石斛茎与叶中总多糖、总生物碱及总黄酮含量的差异 [J]. 广东农业科学, 2015, 42(8):17−21. doi: 10.3969/j.issn.1004-874X.2015.08.004

    TANG L, LI J, LONG H, et al. Content differences of total polysaccharides, total alkaloids and total flavonoids from stems and leaves of Dendrobium candidum at different growth ages [J]. Journal of Guangdong Agricultural Sciences, 2015, 42(8): 17−21.(in Chinese) doi: 10.3969/j.issn.1004-874X.2015.08.004
    [11]
    黄秀红, 王再花, 李杰, 等. 不同花期石斛花主要营养成分分析与品质比较 [J]. 热带作物学报, 2017, 38(1):45−52. doi: 10.3969/j.issn.1000-2561.2017.01.009

    HUANG X H, WANG Z H, LI J, et al. Comparative analysis of quality properties and main nutrients in Dendrobium flowers during different flowering phases [J]. Chinese Journal of Tropical Crops, 2017, 38(1): 45−52.(in Chinese) doi: 10.3969/j.issn.1000-2561.2017.01.009
    [12]
    唐静月, 颜美秋, 齐芳芳, 等. 铁皮石斛花总黄酮提取工艺优化及体外抗氧化活性研究 [J]. 浙江中医药大学学报, 2017, 41(3):235−242.

    TANG J Y, YAN M Q, QI F F, et al. Study on optimum extraction of total flavones in Dendrobium Officinale flower and its antioxidant activity in vitro [J]. Journal of Zhejiang Chinese Medical University, 2017, 41(3): 235−242.(in Chinese)
    [13]
    缪园欣, 廖明星, 孙爱红, 等. 超声-乙醇法提取铁皮石斛花总黄酮及其体外抗氧化性的研究 [J]. 中国酿造, 2019, 38(4):155−159.

    MIAO Y X, LIAO M X, SUN A H, et al. Extraction of total flavonoids from Dendrobium officinale flowers by ultrasonic-ethanol synergistic and its antioxidant activity [J]. China Brewing, 2019, 38(4): 155−159.(in Chinese)
    [14]
    李芳, 魏云, 陈艳杰. 铁皮石斛茎、叶、花中黄酮含量及其体外抗氧化活性研究 [J]. 中医学报, 2019, 34(5):1020−1023.

    LI F, WEI Y, CHEN Y J. Study on the content of flavonoids in stems, leaves and flowers of Dendrobium Officinale Kimura & Migo and its antioxidant activity in vitro [J]. Journal of Chinese Medicine, 2019, 34(5): 1020−1023.(in Chinese)
    [15]
    张小凤, 周春花, 张龙开, 等. 丹霞种、云南广南种铁皮石斛中主要黄酮苷的分离鉴定 [J]. 中国实验方剂学杂志, 2019, 25(1):29−34.

    ZHANG X F, ZHOU C H, ZHANG L K, et al. Isolation and identification of main flavonoid glycosides of Dendrobium Officinale from Danxia species and Yunnan guangnan species [J]. Chinese Journal of Experimental Traditional Medical Formulae, 2019, 25(1): 29−34.(in Chinese)
    [16]
    梁芷韵, 谢镇山, 黄月纯, 等. 铁皮石斛黄酮苷类成分HPLC特征图谱优化及不同种源特征性分析 [J]. 中国实验方剂学杂志, 2019, 25(1):22−28.

    LIANG Z Y, XIE Z S, HUANG Y C, et al. HPLC characteristic spectrum optimization of flavonoid glycosides on Dendrobium officinale and characteristics analysis of different provenances [J]. Chinese Journal of Experimental Traditional Medical Formulae, 2019, 25(1): 22−28.(in Chinese)
    [17]
    罗颖懿, 李运容, 雷胄熙, 等. 铁皮石斛共性黄酮类成分新西兰牡荆苷Ⅱ的体外抗氧化与诱导HepG2细胞凋亡的作用 [J]. 中国实验方剂学杂志, 2019, 25(1):43−50.

    LUO Y Y, LI Y R, LEI Z X, et al. Antioxidation activities in vitro of vicenin Ⅱ isolated from Dendrobii Officinalis Caulis and effect on HepG2 cells [J]. Chinese Journal of Experimental Traditional Medical Formulae, 2019, 25(1): 43−50.(in Chinese)
    [18]
    马婧, 成铁龙, 孙灿岳, 等. 草麻黄高通量转录组分析及黄酮类代谢途径相关基因的鉴定 [J]. 浙江农业学报, 2016, 28(4):609−617. doi: 10.3969/j.issn.1004-1524.2016.04.11

    MA J, CHENG T L, SUN C Y, et al. Characterization of transcriptome reveals pathway of flavonoids in Ephedra sinica Stapf [J]. Acta Agriculturae Zhejiangensis, 2016, 28(4): 609−617.(in Chinese) doi: 10.3969/j.issn.1004-1524.2016.04.11
    [19]
    邹毅辉, 刘昌勇, 林泽燕, 等. 半枝莲转录组高通量测序及黄酮类相关基因解析 [J]. 福建农业学报, 2018, 33(12):1242−1250.

    ZOU Y H, LIU C Y, LIN Z Y, et al. Transcriptome sequencing and flavonoid biosynthesis-related genes of Scutellaria barbata D. Don [J]. Fujian Journal of Agricultural Sciences, 2018, 33(12): 1242−1250.(in Chinese)
    [20]
    邹福贤, 许文, 黄泽豪, 等. 金线莲转录组测序及其黄酮类合成相关基因分析 [J]. 中国药科大学学报, 2019, 50(1):66−74. doi: 10.11665/j.issn.1000-5048.20190109

    ZOU F X, XU W, HUANG Z H, et al. Analysis of transcriptome sequencing and related genes of flavonoid biosynthesis from Anoectochilus roxburghii [J]. Journal of China Pharmaceutical University, 2019, 50(1): 66−74.(in Chinese) doi: 10.11665/j.issn.1000-5048.20190109
    [21]
    TAMURA K, STECHER G, PETERSON D, et al. MEGA6: Molecular Evolutionary Genetics Analysis Version 6.0 [J]. Molecular Biology Evolution, 2013, 30(12): 2725−2729. doi: 10.1093/molbev/mst197
    [22]
    MORTAZAVI A, WILLIAMS B A, MCCUE K, et al. Mapping and quantifying mammalian transcriptomes by RNA-Seq [J]. Nature Methods, 2008, 5(7): 621−628. doi: 10.1038/nmeth.1226
    [23]
    PREISIG-MULLER R, GNAU P, KINDL H. The inducible 9,10-dihydrophenanthrene pathway: Characterization and expression of bibenzyl synthase and s-adenosylhomocysteine hydrolase [J]. Archives of Biochemistry Biophysics, 1995, 317(1): 201−207. doi: 10.1006/abbi.1995.1154
    [24]
    SCHRODER J. The family of chalcone synthase-related proteins functional diversity and evolution [J]. Recent Advances in Phytochemistry, 2000, 34: 55−89. doi: 10.1016/S0079-9920(00)80004-0
    [25]
    AUSTIN M B, NOEL J P. The chalcone synthase superfamily of type Ⅲ polyketide synthases [J]. Natural Product Reports, 2003, 20(1): 79−110. doi: 10.1039/b100917f
    [26]
    AUSTIN M B, BOWMAN M E, FERRER J L, et al. An aldol switch discovered in stilbene synthases mediates cyclization specificity of type Ⅲ polyketide synthases [J]. Chemistry & Biology, 2004, 11: 1179−1194.
    [27]
    SHIMADA N, AOKI T, SATO S, et a1. A cluster of genes encodes the two types of chalcone isomerase involved in the biosynthesis of general flavonoids and legume-specific 5-deoxy (iso) flavonoids in Lotus japonicas [J]. Plant Physiology, 2003, 131(3): 941−951. doi: 10.1104/pp.004820
    [28]
    COOMAN L D, EVERAERT E S W, FACHE P, et a1. Flavonoid biosynthesis in Petals of Rhododendron simsii [J]. Phytochemistry, 1993, 33(6): 1419−1426. doi: 10.1016/0031-9422(93)85102-W
    [29]
    CHRISTENSEN A B, GREGERSEN P L, SCHRODER J, et a1. A chaleone synthase with an unusual substrate preference is expressed in barley leaves in response to UV-light and pathogen attack [J]. Plant Molecular Biology, 1998, 37(5): 849−857. doi: 10.1023/A:1006031822141
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Figures(4)  / Tables(1)

    Article Metrics

    Article views (3343) PDF downloads(113) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return