Cargando…

Transcriptional profile of genes involved in the production of terpenes and glyceollins in response to biotic stresses in soybean

Terpenes produced by plants comprise a diverse range of secondary metabolites, including volatile organic compounds (VOCs). Terpene VOC production may be altered after damage or by biological stimuli such as bacterial, fungal and insects, and subsequent triggering of plant defense responses. These V...

Descripción completa

Detalles Bibliográficos
Autores principales: Parmezan, Talitta Regina, Brito, Salvador Lima, de Carvalho, Kenia, de Aquino, Moisés, Birkett, Michael, Pickett, John, Nunes, Estela de Oliveira, Abdelnor, Ricardo Vilela, Campo, Clara Beatriz Hoffmann, Marcelino-Guimarães, Francismar Corrêa
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sociedade Brasileira de Genética 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7644969/
https://www.ncbi.nlm.nih.gov/pubmed/33174975
http://dx.doi.org/10.1590/1678-4685-GMB-2019-0388
_version_ 1783606565986631680
author Parmezan, Talitta Regina
Brito, Salvador Lima
de Carvalho, Kenia
de Aquino, Moisés
Birkett, Michael
Pickett, John
Nunes, Estela de Oliveira
Abdelnor, Ricardo Vilela
Campo, Clara Beatriz Hoffmann
Marcelino-Guimarães, Francismar Corrêa
author_facet Parmezan, Talitta Regina
Brito, Salvador Lima
de Carvalho, Kenia
de Aquino, Moisés
Birkett, Michael
Pickett, John
Nunes, Estela de Oliveira
Abdelnor, Ricardo Vilela
Campo, Clara Beatriz Hoffmann
Marcelino-Guimarães, Francismar Corrêa
author_sort Parmezan, Talitta Regina
collection PubMed
description Terpenes produced by plants comprise a diverse range of secondary metabolites, including volatile organic compounds (VOCs). Terpene VOC production may be altered after damage or by biological stimuli such as bacterial, fungal and insects, and subsequent triggering of plant defense responses. These VOCs originate in plants from two independent pathways: the mevalonate and the methylerythritol phosphate pathways, which utilize dimethylallyl and isopentenyl diphosphates to form the terpenoidal precursors. Phakopsora pachyrhizi fungi causes Asian soybean rust, limiting soybean production and resulting in losses of up to 80% if no control strategies are applied. By using a transcriptome datasets, we investigated the regulation of genes of the mevalonate pathway under different biotic stresses. We studied the impact of P. pachyrhizi infection in vivo expression profile of genes involved in terpenoid and glyceollin biosynthesis in genotypes harboring different resistance genes (Rpp), and across the infection cycle. In addition, we used UPLC and UPGC analysis to evaluate glyceollin and VOC production, respectively, to identify metabolites associated with soybean responses to pathogen infection. The regulation of soybean genes involved in terpene production was influenced by genotypes, depending on the Rpp gene, while glyceollin was induced in all genotypes. Furthermore, a sesquiterpene was identified as a potential marker associated with rust symptoms on soybean.
format Online
Article
Text
id pubmed-7644969
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Sociedade Brasileira de Genética
record_format MEDLINE/PubMed
spelling pubmed-76449692020-11-16 Transcriptional profile of genes involved in the production of terpenes and glyceollins in response to biotic stresses in soybean Parmezan, Talitta Regina Brito, Salvador Lima de Carvalho, Kenia de Aquino, Moisés Birkett, Michael Pickett, John Nunes, Estela de Oliveira Abdelnor, Ricardo Vilela Campo, Clara Beatriz Hoffmann Marcelino-Guimarães, Francismar Corrêa Genet Mol Biol Plant Genetics Terpenes produced by plants comprise a diverse range of secondary metabolites, including volatile organic compounds (VOCs). Terpene VOC production may be altered after damage or by biological stimuli such as bacterial, fungal and insects, and subsequent triggering of plant defense responses. These VOCs originate in plants from two independent pathways: the mevalonate and the methylerythritol phosphate pathways, which utilize dimethylallyl and isopentenyl diphosphates to form the terpenoidal precursors. Phakopsora pachyrhizi fungi causes Asian soybean rust, limiting soybean production and resulting in losses of up to 80% if no control strategies are applied. By using a transcriptome datasets, we investigated the regulation of genes of the mevalonate pathway under different biotic stresses. We studied the impact of P. pachyrhizi infection in vivo expression profile of genes involved in terpenoid and glyceollin biosynthesis in genotypes harboring different resistance genes (Rpp), and across the infection cycle. In addition, we used UPLC and UPGC analysis to evaluate glyceollin and VOC production, respectively, to identify metabolites associated with soybean responses to pathogen infection. The regulation of soybean genes involved in terpene production was influenced by genotypes, depending on the Rpp gene, while glyceollin was induced in all genotypes. Furthermore, a sesquiterpene was identified as a potential marker associated with rust symptoms on soybean. Sociedade Brasileira de Genética 2020-11-06 /pmc/articles/PMC7644969/ /pubmed/33174975 http://dx.doi.org/10.1590/1678-4685-GMB-2019-0388 Text en Copyright © 2020, Sociedade Brasileira de Genética. https://creativecommons.org/licenses/by/4.0/ License information: This is an open-access article distributed under the terms of the Creative Commons Attribution License (type CC-BY), which permits unrestricted use, distribution and reproduction in any medium, provided the original article is properly cited.
spellingShingle Plant Genetics
Parmezan, Talitta Regina
Brito, Salvador Lima
de Carvalho, Kenia
de Aquino, Moisés
Birkett, Michael
Pickett, John
Nunes, Estela de Oliveira
Abdelnor, Ricardo Vilela
Campo, Clara Beatriz Hoffmann
Marcelino-Guimarães, Francismar Corrêa
Transcriptional profile of genes involved in the production of terpenes and glyceollins in response to biotic stresses in soybean
title Transcriptional profile of genes involved in the production of terpenes and glyceollins in response to biotic stresses in soybean
title_full Transcriptional profile of genes involved in the production of terpenes and glyceollins in response to biotic stresses in soybean
title_fullStr Transcriptional profile of genes involved in the production of terpenes and glyceollins in response to biotic stresses in soybean
title_full_unstemmed Transcriptional profile of genes involved in the production of terpenes and glyceollins in response to biotic stresses in soybean
title_short Transcriptional profile of genes involved in the production of terpenes and glyceollins in response to biotic stresses in soybean
title_sort transcriptional profile of genes involved in the production of terpenes and glyceollins in response to biotic stresses in soybean
topic Plant Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7644969/
https://www.ncbi.nlm.nih.gov/pubmed/33174975
http://dx.doi.org/10.1590/1678-4685-GMB-2019-0388
work_keys_str_mv AT parmezantalittaregina transcriptionalprofileofgenesinvolvedintheproductionofterpenesandglyceollinsinresponsetobioticstressesinsoybean
AT britosalvadorlima transcriptionalprofileofgenesinvolvedintheproductionofterpenesandglyceollinsinresponsetobioticstressesinsoybean
AT decarvalhokenia transcriptionalprofileofgenesinvolvedintheproductionofterpenesandglyceollinsinresponsetobioticstressesinsoybean
AT deaquinomoises transcriptionalprofileofgenesinvolvedintheproductionofterpenesandglyceollinsinresponsetobioticstressesinsoybean
AT birkettmichael transcriptionalprofileofgenesinvolvedintheproductionofterpenesandglyceollinsinresponsetobioticstressesinsoybean
AT pickettjohn transcriptionalprofileofgenesinvolvedintheproductionofterpenesandglyceollinsinresponsetobioticstressesinsoybean
AT nunesesteladeoliveira transcriptionalprofileofgenesinvolvedintheproductionofterpenesandglyceollinsinresponsetobioticstressesinsoybean
AT abdelnorricardovilela transcriptionalprofileofgenesinvolvedintheproductionofterpenesandglyceollinsinresponsetobioticstressesinsoybean
AT campoclarabeatrizhoffmann transcriptionalprofileofgenesinvolvedintheproductionofterpenesandglyceollinsinresponsetobioticstressesinsoybean
AT marcelinoguimaraesfrancismarcorrea transcriptionalprofileofgenesinvolvedintheproductionofterpenesandglyceollinsinresponsetobioticstressesinsoybean