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In vivo assembly of the sorgoleone biosynthetic pathway and its impact on agroinfiltrated leaves of Nicotiana benthamiana

Sorgoleone, a hydrophobic compound exuded from root hair cells of Sorghum spp., accounts for much of the allelopathic activity of the genus. The enzymes involved in the biosynthesis of this compound have been identified and functionally characterized. Here, we report the successful assembly of the b...

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Autores principales: Pan, Zhiqiang, Bajsa‐Hirschel, Joanna, Vaughn, Justin N., Rimando, Agnes M., Baerson, Scott R., Duke, Stephen O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8048663/
https://www.ncbi.nlm.nih.gov/pubmed/33460457
http://dx.doi.org/10.1111/nph.17213
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author Pan, Zhiqiang
Bajsa‐Hirschel, Joanna
Vaughn, Justin N.
Rimando, Agnes M.
Baerson, Scott R.
Duke, Stephen O.
author_facet Pan, Zhiqiang
Bajsa‐Hirschel, Joanna
Vaughn, Justin N.
Rimando, Agnes M.
Baerson, Scott R.
Duke, Stephen O.
author_sort Pan, Zhiqiang
collection PubMed
description Sorgoleone, a hydrophobic compound exuded from root hair cells of Sorghum spp., accounts for much of the allelopathic activity of the genus. The enzymes involved in the biosynthesis of this compound have been identified and functionally characterized. Here, we report the successful assembly of the biosynthetic pathway and the significant impact of in vivo synthesized sorgoleone on the heterologous host Nicotiana benthamiana. A multigene DNA construct was prepared for the expression of genes required for sorgoleone biosynthesis in planta and deployed in N. benthamiana leaf tissues via Agrobacterium‐mediated transient expression. RNA‐sequencing was conducted to investigate the effects of sorgoleone, via expression of its biosynthesis pathway, on host gene expression. The production of sorgoleone in agroinfiltrated leaves as detected by gas chromatography/mass spectrometry (GC/MS) resulted in the formation of necrotic lesions, indicating that the compound caused severe phytotoxicity to these tissues. RNA‐sequencing profiling revealed significant changes in gene expression in the leaf tissues expressing the pathway during the formation of sorgoleone‐induced necrotic lesions. Transcriptome analysis suggested that the compound produced in vivo impaired the photosynthetic system as a result of downregulated gene expression for the photosynthesis apparatus and elevated expression of proteasomal genes which may play a major role in the phytotoxicity of sorgoleone.
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spelling pubmed-80486632021-04-19 In vivo assembly of the sorgoleone biosynthetic pathway and its impact on agroinfiltrated leaves of Nicotiana benthamiana Pan, Zhiqiang Bajsa‐Hirschel, Joanna Vaughn, Justin N. Rimando, Agnes M. Baerson, Scott R. Duke, Stephen O. New Phytol Research Sorgoleone, a hydrophobic compound exuded from root hair cells of Sorghum spp., accounts for much of the allelopathic activity of the genus. The enzymes involved in the biosynthesis of this compound have been identified and functionally characterized. Here, we report the successful assembly of the biosynthetic pathway and the significant impact of in vivo synthesized sorgoleone on the heterologous host Nicotiana benthamiana. A multigene DNA construct was prepared for the expression of genes required for sorgoleone biosynthesis in planta and deployed in N. benthamiana leaf tissues via Agrobacterium‐mediated transient expression. RNA‐sequencing was conducted to investigate the effects of sorgoleone, via expression of its biosynthesis pathway, on host gene expression. The production of sorgoleone in agroinfiltrated leaves as detected by gas chromatography/mass spectrometry (GC/MS) resulted in the formation of necrotic lesions, indicating that the compound caused severe phytotoxicity to these tissues. RNA‐sequencing profiling revealed significant changes in gene expression in the leaf tissues expressing the pathway during the formation of sorgoleone‐induced necrotic lesions. Transcriptome analysis suggested that the compound produced in vivo impaired the photosynthetic system as a result of downregulated gene expression for the photosynthesis apparatus and elevated expression of proteasomal genes which may play a major role in the phytotoxicity of sorgoleone. John Wiley and Sons Inc. 2021-02-13 2021-04 /pmc/articles/PMC8048663/ /pubmed/33460457 http://dx.doi.org/10.1111/nph.17213 Text en © 2021 The Authors. New Phytologist © 2021 New Phytologist Foundation https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Research
Pan, Zhiqiang
Bajsa‐Hirschel, Joanna
Vaughn, Justin N.
Rimando, Agnes M.
Baerson, Scott R.
Duke, Stephen O.
In vivo assembly of the sorgoleone biosynthetic pathway and its impact on agroinfiltrated leaves of Nicotiana benthamiana
title In vivo assembly of the sorgoleone biosynthetic pathway and its impact on agroinfiltrated leaves of Nicotiana benthamiana
title_full In vivo assembly of the sorgoleone biosynthetic pathway and its impact on agroinfiltrated leaves of Nicotiana benthamiana
title_fullStr In vivo assembly of the sorgoleone biosynthetic pathway and its impact on agroinfiltrated leaves of Nicotiana benthamiana
title_full_unstemmed In vivo assembly of the sorgoleone biosynthetic pathway and its impact on agroinfiltrated leaves of Nicotiana benthamiana
title_short In vivo assembly of the sorgoleone biosynthetic pathway and its impact on agroinfiltrated leaves of Nicotiana benthamiana
title_sort in vivo assembly of the sorgoleone biosynthetic pathway and its impact on agroinfiltrated leaves of nicotiana benthamiana
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8048663/
https://www.ncbi.nlm.nih.gov/pubmed/33460457
http://dx.doi.org/10.1111/nph.17213
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