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Comparative transcriptomics characterized the distinct biosynthetic abilities of terpenoid and paeoniflorin biosynthesis in herbaceous peony strains

The herbaceous peony (Paeonia lactiflora Pall.) is a perennial flowering plant of the Paeoniaceae species that is widely cultivated for medical and ornamental uses. The monoterpene glucoside paeoniflorin and its derivatives are the active compounds of the P. lactiflora roots. However, the gene regul...

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Autores principales: Lu, Baowei, An, Fengxia, Cao, Liangjing, Gao, Qian, Wang, Xuan, Yang, Yongjian, Liu, Pengming, Yang, Baoliang, Chen, Tong, Li, Xin-Chang, Chen, Qinghua, Liu, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: PeerJ Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7179566/
https://www.ncbi.nlm.nih.gov/pubmed/32341893
http://dx.doi.org/10.7717/peerj.8895
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author Lu, Baowei
An, Fengxia
Cao, Liangjing
Gao, Qian
Wang, Xuan
Yang, Yongjian
Liu, Pengming
Yang, Baoliang
Chen, Tong
Li, Xin-Chang
Chen, Qinghua
Liu, Jun
author_facet Lu, Baowei
An, Fengxia
Cao, Liangjing
Gao, Qian
Wang, Xuan
Yang, Yongjian
Liu, Pengming
Yang, Baoliang
Chen, Tong
Li, Xin-Chang
Chen, Qinghua
Liu, Jun
author_sort Lu, Baowei
collection PubMed
description The herbaceous peony (Paeonia lactiflora Pall.) is a perennial flowering plant of the Paeoniaceae species that is widely cultivated for medical and ornamental uses. The monoterpene glucoside paeoniflorin and its derivatives are the active compounds of the P. lactiflora roots. However, the gene regulation pathways associated with monoterpene and paeoniflorin biosynthesis in P. lactiflora are still unclear. Here, we selected three genotypes of P. lactiflora with distinct morphologic features and chemical compositions that were a result of long-term reproductive isolation. We performed an RNA-sequencing experiment to profile the transcriptome changes of the shoots and roots. Using de novo assembly analysis, we identified 36,264 unigenes, including 521 genes responsible for encoding transcription factors. We also identified 28,925 unigenes that were differentially expressed in different organs and/or genotypes. Pathway enrichment analysis showed that the P. lactiflora unigenes were significantly overrepresented in several secondary metabolite biosynthesis pathways. We identified and profiled 33 genes responsible for encoding the enzymescontrolling the major catalytic reactions in the terpenoid backbone and in monoterpenoid biosynthesis. Our study identified the candidate genes in the terpenoid biosynthesis pathways, providing useful information for metabolic engineering of P. lactiflora intended for pharmaceutical uses and facilitating the development of strategies to improve marker-assist P. lactiflora in the future.
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spelling pubmed-71795662020-04-27 Comparative transcriptomics characterized the distinct biosynthetic abilities of terpenoid and paeoniflorin biosynthesis in herbaceous peony strains Lu, Baowei An, Fengxia Cao, Liangjing Gao, Qian Wang, Xuan Yang, Yongjian Liu, Pengming Yang, Baoliang Chen, Tong Li, Xin-Chang Chen, Qinghua Liu, Jun PeerJ Biodiversity The herbaceous peony (Paeonia lactiflora Pall.) is a perennial flowering plant of the Paeoniaceae species that is widely cultivated for medical and ornamental uses. The monoterpene glucoside paeoniflorin and its derivatives are the active compounds of the P. lactiflora roots. However, the gene regulation pathways associated with monoterpene and paeoniflorin biosynthesis in P. lactiflora are still unclear. Here, we selected three genotypes of P. lactiflora with distinct morphologic features and chemical compositions that were a result of long-term reproductive isolation. We performed an RNA-sequencing experiment to profile the transcriptome changes of the shoots and roots. Using de novo assembly analysis, we identified 36,264 unigenes, including 521 genes responsible for encoding transcription factors. We also identified 28,925 unigenes that were differentially expressed in different organs and/or genotypes. Pathway enrichment analysis showed that the P. lactiflora unigenes were significantly overrepresented in several secondary metabolite biosynthesis pathways. We identified and profiled 33 genes responsible for encoding the enzymescontrolling the major catalytic reactions in the terpenoid backbone and in monoterpenoid biosynthesis. Our study identified the candidate genes in the terpenoid biosynthesis pathways, providing useful information for metabolic engineering of P. lactiflora intended for pharmaceutical uses and facilitating the development of strategies to improve marker-assist P. lactiflora in the future. PeerJ Inc. 2020-04-20 /pmc/articles/PMC7179566/ /pubmed/32341893 http://dx.doi.org/10.7717/peerj.8895 Text en © 2020 Lu et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, reproduction and adaptation in any medium and for any purpose provided that it is properly attributed. For attribution, the original author(s), title, publication source (PeerJ) and either DOI or URL of the article must be cited.
spellingShingle Biodiversity
Lu, Baowei
An, Fengxia
Cao, Liangjing
Gao, Qian
Wang, Xuan
Yang, Yongjian
Liu, Pengming
Yang, Baoliang
Chen, Tong
Li, Xin-Chang
Chen, Qinghua
Liu, Jun
Comparative transcriptomics characterized the distinct biosynthetic abilities of terpenoid and paeoniflorin biosynthesis in herbaceous peony strains
title Comparative transcriptomics characterized the distinct biosynthetic abilities of terpenoid and paeoniflorin biosynthesis in herbaceous peony strains
title_full Comparative transcriptomics characterized the distinct biosynthetic abilities of terpenoid and paeoniflorin biosynthesis in herbaceous peony strains
title_fullStr Comparative transcriptomics characterized the distinct biosynthetic abilities of terpenoid and paeoniflorin biosynthesis in herbaceous peony strains
title_full_unstemmed Comparative transcriptomics characterized the distinct biosynthetic abilities of terpenoid and paeoniflorin biosynthesis in herbaceous peony strains
title_short Comparative transcriptomics characterized the distinct biosynthetic abilities of terpenoid and paeoniflorin biosynthesis in herbaceous peony strains
title_sort comparative transcriptomics characterized the distinct biosynthetic abilities of terpenoid and paeoniflorin biosynthesis in herbaceous peony strains
topic Biodiversity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7179566/
https://www.ncbi.nlm.nih.gov/pubmed/32341893
http://dx.doi.org/10.7717/peerj.8895
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