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Advanced Engineering of Lipid Metabolism in Nicotiana benthamiana Using a Draft Genome and the V2 Viral Silencing-Suppressor Protein

The transient leaf assay in Nicotiana benthamiana is widely used in plant sciences, with one application being the rapid assembly of complex multigene pathways that produce new fatty acid profiles. This rapid and facile assay would be further improved if it were possible to simultaneously overexpres...

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Autores principales: Naim, Fatima, Nakasugi, Kenlee, Crowhurst, Ross N., Hilario, Elena, Zwart, Alexander B., Hellens, Roger P., Taylor, Jennifer M., Waterhouse, Peter M., Wood, Craig C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3530501/
https://www.ncbi.nlm.nih.gov/pubmed/23300750
http://dx.doi.org/10.1371/journal.pone.0052717
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author Naim, Fatima
Nakasugi, Kenlee
Crowhurst, Ross N.
Hilario, Elena
Zwart, Alexander B.
Hellens, Roger P.
Taylor, Jennifer M.
Waterhouse, Peter M.
Wood, Craig C.
author_facet Naim, Fatima
Nakasugi, Kenlee
Crowhurst, Ross N.
Hilario, Elena
Zwart, Alexander B.
Hellens, Roger P.
Taylor, Jennifer M.
Waterhouse, Peter M.
Wood, Craig C.
author_sort Naim, Fatima
collection PubMed
description The transient leaf assay in Nicotiana benthamiana is widely used in plant sciences, with one application being the rapid assembly of complex multigene pathways that produce new fatty acid profiles. This rapid and facile assay would be further improved if it were possible to simultaneously overexpress transgenes while accurately silencing endogenes. Here, we report a draft genome resource for N. benthamiana spanning over 75% of the 3.1 Gb haploid genome. This resource revealed a two-member NbFAD2 family, NbFAD2.1 and NbFAD2.2, and quantitative RT-PCR (qRT-PCR) confirmed their expression in leaves. FAD2 activities were silenced using hairpin RNAi as monitored by qRT-PCR and biochemical assays. Silencing of endogenous FAD2 activities was combined with overexpression of transgenes via the use of the alternative viral silencing-suppressor protein, V2, from Tomato yellow leaf curl virus. We show that V2 permits maximal overexpression of transgenes but, crucially, also allows hairpin RNAi to operate unimpeded. To illustrate the efficacy of the V2-based leaf assay system, endogenous lipids were shunted from the desaturation of 18∶1 to elongation reactions beginning with 18∶1 as substrate. These V2-based leaf assays produced ∼50% more elongated fatty acid products than p19-based assays. Analyses of small RNA populations generated from hairpin RNAi against NbFAD2 confirm that the siRNA population is dominated by 21 and 22 nt species derived from the hairpin. Collectively, these new tools expand the range of uses and possibilities for metabolic engineering in transient leaf assays.
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spelling pubmed-35305012013-01-08 Advanced Engineering of Lipid Metabolism in Nicotiana benthamiana Using a Draft Genome and the V2 Viral Silencing-Suppressor Protein Naim, Fatima Nakasugi, Kenlee Crowhurst, Ross N. Hilario, Elena Zwart, Alexander B. Hellens, Roger P. Taylor, Jennifer M. Waterhouse, Peter M. Wood, Craig C. PLoS One Research Article The transient leaf assay in Nicotiana benthamiana is widely used in plant sciences, with one application being the rapid assembly of complex multigene pathways that produce new fatty acid profiles. This rapid and facile assay would be further improved if it were possible to simultaneously overexpress transgenes while accurately silencing endogenes. Here, we report a draft genome resource for N. benthamiana spanning over 75% of the 3.1 Gb haploid genome. This resource revealed a two-member NbFAD2 family, NbFAD2.1 and NbFAD2.2, and quantitative RT-PCR (qRT-PCR) confirmed their expression in leaves. FAD2 activities were silenced using hairpin RNAi as monitored by qRT-PCR and biochemical assays. Silencing of endogenous FAD2 activities was combined with overexpression of transgenes via the use of the alternative viral silencing-suppressor protein, V2, from Tomato yellow leaf curl virus. We show that V2 permits maximal overexpression of transgenes but, crucially, also allows hairpin RNAi to operate unimpeded. To illustrate the efficacy of the V2-based leaf assay system, endogenous lipids were shunted from the desaturation of 18∶1 to elongation reactions beginning with 18∶1 as substrate. These V2-based leaf assays produced ∼50% more elongated fatty acid products than p19-based assays. Analyses of small RNA populations generated from hairpin RNAi against NbFAD2 confirm that the siRNA population is dominated by 21 and 22 nt species derived from the hairpin. Collectively, these new tools expand the range of uses and possibilities for metabolic engineering in transient leaf assays. Public Library of Science 2012-12-26 /pmc/articles/PMC3530501/ /pubmed/23300750 http://dx.doi.org/10.1371/journal.pone.0052717 Text en © 2012 Naim et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Naim, Fatima
Nakasugi, Kenlee
Crowhurst, Ross N.
Hilario, Elena
Zwart, Alexander B.
Hellens, Roger P.
Taylor, Jennifer M.
Waterhouse, Peter M.
Wood, Craig C.
Advanced Engineering of Lipid Metabolism in Nicotiana benthamiana Using a Draft Genome and the V2 Viral Silencing-Suppressor Protein
title Advanced Engineering of Lipid Metabolism in Nicotiana benthamiana Using a Draft Genome and the V2 Viral Silencing-Suppressor Protein
title_full Advanced Engineering of Lipid Metabolism in Nicotiana benthamiana Using a Draft Genome and the V2 Viral Silencing-Suppressor Protein
title_fullStr Advanced Engineering of Lipid Metabolism in Nicotiana benthamiana Using a Draft Genome and the V2 Viral Silencing-Suppressor Protein
title_full_unstemmed Advanced Engineering of Lipid Metabolism in Nicotiana benthamiana Using a Draft Genome and the V2 Viral Silencing-Suppressor Protein
title_short Advanced Engineering of Lipid Metabolism in Nicotiana benthamiana Using a Draft Genome and the V2 Viral Silencing-Suppressor Protein
title_sort advanced engineering of lipid metabolism in nicotiana benthamiana using a draft genome and the v2 viral silencing-suppressor protein
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3530501/
https://www.ncbi.nlm.nih.gov/pubmed/23300750
http://dx.doi.org/10.1371/journal.pone.0052717
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