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Erythrina velutina Willd. alkaloids: Piecing biosynthesis together from transcriptome analysis and metabolite profiling of seeds and leaves

INTRODUCTION: Natural products of pharmaceutical interest often do not reach the drug market due to the associated low yields and difficult extraction. Knowledge of biosynthetic pathways is a key element in the development of biotechnological strategies for plant specialized metabolite production. E...

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Autores principales: Chacon, Daisy Sotero, Torres, Taffarel Melo, da Silva, Ivanice Bezerra, de Araújo, Thiago Ferreira, Roque, Alan de Araújo, Pinheiro, Francisco Ayrton Senna Domingos, Selegato, Denise, Pilon, Alan, Reginaldo, Fernanda Priscila Santos, da Costa, Cibele Tesser, Vilasboa, Johnatan, Freire, Rafael Teixeira, Voigt, Eduardo Luiz, Zuanazzi, José Angelo Silveira, Libonati, Renata, Rodrigues, Julia Abrantes, Santos, Filippe Lemos Maia, Scortecci, Kátia Castanho, Lopes, Norberto Peporine, Ferreira, Leandro De Santis, dos Santos, Leandro Vieira, Cavalheiro, Alberto José, Fett-Neto, Arthur Germano, Giordani, Raquel Brandt
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8655131/
https://www.ncbi.nlm.nih.gov/pubmed/35024185
http://dx.doi.org/10.1016/j.jare.2021.01.017
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author Chacon, Daisy Sotero
Torres, Taffarel Melo
da Silva, Ivanice Bezerra
de Araújo, Thiago Ferreira
Roque, Alan de Araújo
Pinheiro, Francisco Ayrton Senna Domingos
Selegato, Denise
Pilon, Alan
Reginaldo, Fernanda Priscila Santos
da Costa, Cibele Tesser
Vilasboa, Johnatan
Freire, Rafael Teixeira
Voigt, Eduardo Luiz
Zuanazzi, José Angelo Silveira
Libonati, Renata
Rodrigues, Julia Abrantes
Santos, Filippe Lemos Maia
Scortecci, Kátia Castanho
Lopes, Norberto Peporine
Ferreira, Leandro De Santis
dos Santos, Leandro Vieira
Cavalheiro, Alberto José
Fett-Neto, Arthur Germano
Giordani, Raquel Brandt
author_facet Chacon, Daisy Sotero
Torres, Taffarel Melo
da Silva, Ivanice Bezerra
de Araújo, Thiago Ferreira
Roque, Alan de Araújo
Pinheiro, Francisco Ayrton Senna Domingos
Selegato, Denise
Pilon, Alan
Reginaldo, Fernanda Priscila Santos
da Costa, Cibele Tesser
Vilasboa, Johnatan
Freire, Rafael Teixeira
Voigt, Eduardo Luiz
Zuanazzi, José Angelo Silveira
Libonati, Renata
Rodrigues, Julia Abrantes
Santos, Filippe Lemos Maia
Scortecci, Kátia Castanho
Lopes, Norberto Peporine
Ferreira, Leandro De Santis
dos Santos, Leandro Vieira
Cavalheiro, Alberto José
Fett-Neto, Arthur Germano
Giordani, Raquel Brandt
author_sort Chacon, Daisy Sotero
collection PubMed
description INTRODUCTION: Natural products of pharmaceutical interest often do not reach the drug market due to the associated low yields and difficult extraction. Knowledge of biosynthetic pathways is a key element in the development of biotechnological strategies for plant specialized metabolite production. Erythrina species are mainly used as central nervous system depressants in folk medicine and are important sources of bioactive tetracyclic benzylisoquinoline alkaloids (BIAs), which can act on several pathology-related biological targets. OBJECTIVES: In this sense, in an unprecedented approach used with a non-model Fabaceae species grown in its unique arid natural habitat, a combined transcriptome and metabolome analyses (seeds and leaves) is presented. METHODS: The Next Generation Sequencing-based transcriptome (de novo RNA sequencing) was carried out in a NextSeq 500 platform. Regarding metabolite profiling, the High-resolution Liquid Chromatography was coupled to DAD and a micrOTOF-QII mass spectrometer by using electrospray ionization (ESI) and Time of Flight (TOF) analyzer. The tandem MS/MS data were processed and analyzed through Molecular Networking approach. RESULTS: This detailed macro and micromolecular approach applied to seeds and leaves of E. velutina revealed 42 alkaloids, several of them unique. Based on the combined evidence, 24 gene candidates were put together in a putative pathway leading to the singular alkaloid diversity of this species. CONCLUSION: Overall, these results could contribute by indicating potential biotechnological targets for modulation of erythrina alkaloids biosynthesis as well as improve molecular databases with omic data from a non-model medicinal plant, and reveal an interesting chemical diversity of Erythrina BIA harvested in Caatinga.
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spelling pubmed-86551312022-01-11 Erythrina velutina Willd. alkaloids: Piecing biosynthesis together from transcriptome analysis and metabolite profiling of seeds and leaves Chacon, Daisy Sotero Torres, Taffarel Melo da Silva, Ivanice Bezerra de Araújo, Thiago Ferreira Roque, Alan de Araújo Pinheiro, Francisco Ayrton Senna Domingos Selegato, Denise Pilon, Alan Reginaldo, Fernanda Priscila Santos da Costa, Cibele Tesser Vilasboa, Johnatan Freire, Rafael Teixeira Voigt, Eduardo Luiz Zuanazzi, José Angelo Silveira Libonati, Renata Rodrigues, Julia Abrantes Santos, Filippe Lemos Maia Scortecci, Kátia Castanho Lopes, Norberto Peporine Ferreira, Leandro De Santis dos Santos, Leandro Vieira Cavalheiro, Alberto José Fett-Neto, Arthur Germano Giordani, Raquel Brandt J Adv Res Article INTRODUCTION: Natural products of pharmaceutical interest often do not reach the drug market due to the associated low yields and difficult extraction. Knowledge of biosynthetic pathways is a key element in the development of biotechnological strategies for plant specialized metabolite production. Erythrina species are mainly used as central nervous system depressants in folk medicine and are important sources of bioactive tetracyclic benzylisoquinoline alkaloids (BIAs), which can act on several pathology-related biological targets. OBJECTIVES: In this sense, in an unprecedented approach used with a non-model Fabaceae species grown in its unique arid natural habitat, a combined transcriptome and metabolome analyses (seeds and leaves) is presented. METHODS: The Next Generation Sequencing-based transcriptome (de novo RNA sequencing) was carried out in a NextSeq 500 platform. Regarding metabolite profiling, the High-resolution Liquid Chromatography was coupled to DAD and a micrOTOF-QII mass spectrometer by using electrospray ionization (ESI) and Time of Flight (TOF) analyzer. The tandem MS/MS data were processed and analyzed through Molecular Networking approach. RESULTS: This detailed macro and micromolecular approach applied to seeds and leaves of E. velutina revealed 42 alkaloids, several of them unique. Based on the combined evidence, 24 gene candidates were put together in a putative pathway leading to the singular alkaloid diversity of this species. CONCLUSION: Overall, these results could contribute by indicating potential biotechnological targets for modulation of erythrina alkaloids biosynthesis as well as improve molecular databases with omic data from a non-model medicinal plant, and reveal an interesting chemical diversity of Erythrina BIA harvested in Caatinga. Elsevier 2021-02-10 /pmc/articles/PMC8655131/ /pubmed/35024185 http://dx.doi.org/10.1016/j.jare.2021.01.017 Text en © 2021 The Authors. Published by Elsevier B.V. on behalf of Cairo University. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Chacon, Daisy Sotero
Torres, Taffarel Melo
da Silva, Ivanice Bezerra
de Araújo, Thiago Ferreira
Roque, Alan de Araújo
Pinheiro, Francisco Ayrton Senna Domingos
Selegato, Denise
Pilon, Alan
Reginaldo, Fernanda Priscila Santos
da Costa, Cibele Tesser
Vilasboa, Johnatan
Freire, Rafael Teixeira
Voigt, Eduardo Luiz
Zuanazzi, José Angelo Silveira
Libonati, Renata
Rodrigues, Julia Abrantes
Santos, Filippe Lemos Maia
Scortecci, Kátia Castanho
Lopes, Norberto Peporine
Ferreira, Leandro De Santis
dos Santos, Leandro Vieira
Cavalheiro, Alberto José
Fett-Neto, Arthur Germano
Giordani, Raquel Brandt
Erythrina velutina Willd. alkaloids: Piecing biosynthesis together from transcriptome analysis and metabolite profiling of seeds and leaves
title Erythrina velutina Willd. alkaloids: Piecing biosynthesis together from transcriptome analysis and metabolite profiling of seeds and leaves
title_full Erythrina velutina Willd. alkaloids: Piecing biosynthesis together from transcriptome analysis and metabolite profiling of seeds and leaves
title_fullStr Erythrina velutina Willd. alkaloids: Piecing biosynthesis together from transcriptome analysis and metabolite profiling of seeds and leaves
title_full_unstemmed Erythrina velutina Willd. alkaloids: Piecing biosynthesis together from transcriptome analysis and metabolite profiling of seeds and leaves
title_short Erythrina velutina Willd. alkaloids: Piecing biosynthesis together from transcriptome analysis and metabolite profiling of seeds and leaves
title_sort erythrina velutina willd. alkaloids: piecing biosynthesis together from transcriptome analysis and metabolite profiling of seeds and leaves
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8655131/
https://www.ncbi.nlm.nih.gov/pubmed/35024185
http://dx.doi.org/10.1016/j.jare.2021.01.017
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