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[Synthesis of triterpenoid saponins from Aesculus chinensis based on transcriptome data].
Wei, Yi-Ding; Xiong, Chao; Zhang, Tian-Yuan; Gao, Han; Yin, Qing-Gang; Yao, Hui; Sun, Wei; Hu, Zhi-Gang; Chen, Shi-Lin.
Afiliação
  • Wei YD; School of Pharmacy,Hubei University of Chinese Medicine Wuhan 430065,China Institute of Chinese Materia Medica,China Academy of Chinese Medical Sciences Beijing 100700,China.
  • Xiong C; School of Pharmacy,Hubei University of Chinese Medicine Wuhan 430065,China Institute of Chinese Materia Medica,China Academy of Chinese Medical Sciences Beijing 100700,China.
  • Zhang TY; Institute of Chinese Materia Medica,China Academy of Chinese Medical Sciences Beijing 100700,China.
  • Gao H; Institute of Chinese Materia Medica,China Academy of Chinese Medical Sciences Beijing 100700,China.
  • Yin QG; Institute of Chinese Materia Medica,China Academy of Chinese Medical Sciences Beijing 100700,China.
  • Yao H; Institute of Medicinal Plant Development,Chinese Academy of Medical Sciences and Peking Union Medical College Beijing 100193,China.
  • Sun W; Institute of Chinese Materia Medica,China Academy of Chinese Medical Sciences Beijing 100700,China.
  • Hu ZG; School of Pharmacy,Hubei University of Chinese Medicine Wuhan 430065,China.
  • Chen SL; School of Pharmacy,Hubei University of Chinese Medicine Wuhan 430065,China Institute of Chinese Materia Medica,China Academy of Chinese Medical Sciences Beijing 100700,China.
Zhongguo Zhong Yao Za Zhi ; 44(6): 1135-1144, 2019 Mar.
Article em Zh | MEDLINE | ID: mdl-30989975
ABSTRACT
Aesculus chinensis belongs to Hippocastanaceae family,bears medicinal and ornamental values. The oleanane type triterpenoid saponin aescin is regarded as active ingredient and accumulated in seed. In order to understand its molecular basis of the triterpenoid biosynthesis,we used high-throughput sequencing under Illumina Hi Seq 2000 platform to obtain the transcriptome data of seed and flower from A. chinensis to further mine the genes involved in its metabolic pathway. Unigene's de novo splicing was performed using Trinity software; the transcriptome results were annotated with KEGG database to predict the specific pathways of the aescin triterpenoid metabolism. Terpenoid and triterpenoid pathways were found from transcriptome data,and forty seven and twenty seven corresponding genes were uncovered respectively. It was found that there are eight kinds of enzymes related to the terpenoid metabolism pathway precursors and three kinds of enzymes related to the triterpenoid metabolism pathway. In this study,five genes corresponding to triterpene cyclase were analyzed in A. chinensis for the first time,which may participate in the synthesis of triterpenoid. It' s revealed that there were thirty three differential genes associated with the ko00900 and ko00909 pathways by analysis on the difference in transcriptome expression between seeds and flowers; seventeen unigenes were up-regulated and sixteen unigenes were down-regulated in the seeds relative to flowers. In this study, qRT-PCR experiments were used to verify the expression of three key enzyme genes of SQE( Unigene25806),HMGS( Unigene36710),and ß-AS( Unigene33291). The results of qRT-PCR were consistent with the transcriptome data. The candidate genes related to triterpenoid saponin aescin synthesis in A. chinensis found in this study can provide theoretical basis for the metabolism synthesis and regulation of aescin.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Saponinas / Triterpenos / Aesculus Idioma: Zh Revista: Zhongguo Zhong Yao Za Zhi Assunto da revista: FARMACOLOGIA / TERAPIAS COMPLEMENTARES Ano de publicação: 2019 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Saponinas / Triterpenos / Aesculus Idioma: Zh Revista: Zhongguo Zhong Yao Za Zhi Assunto da revista: FARMACOLOGIA / TERAPIAS COMPLEMENTARES Ano de publicação: 2019 Tipo de documento: Article País de afiliação: China