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Targeted Mutagenesis of the Multicopy Myrosinase Gene Family in Allotetraploid Brassica juncea Reduces Pungency in Fresh Leaves across Environments

Recent breeding efforts in Brassica have focused on the development of new oilseed feedstock crop for biofuels (e.g., ethanol, biodiesel, bio-jet fuel), bio-industrial uses (e.g., bio-plastics, lubricants), specialty fatty acids (e.g., erucic acid), and producing low glucosinolates levels for oilsee...

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Autores principales: Karlson, Dale, Mojica, Julius P., Poorten, Thomas J., Lawit, Shai J., Jali, Sathya, Chauhan, Raj Deepika, Pham, Gina M., Marri, Pradeep, Guffy, Sharon L., Fear, Justin M., Ochsenfeld, Cherie A., (Lincoln) Chapman, Tracey A., Casamali, Bruno, Venegas, Jorge P., Kim, Hae Jin, Call, Ashley, Sublett, William L., Mathew, Lolita G., Shariff, Aabid, Watts, Joseph M., Mann, Mike, Hummel, Aaron, Rapp, Ryan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9572489/
https://www.ncbi.nlm.nih.gov/pubmed/36235360
http://dx.doi.org/10.3390/plants11192494
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author Karlson, Dale
Mojica, Julius P.
Poorten, Thomas J.
Lawit, Shai J.
Jali, Sathya
Chauhan, Raj Deepika
Pham, Gina M.
Marri, Pradeep
Guffy, Sharon L.
Fear, Justin M.
Ochsenfeld, Cherie A.
(Lincoln) Chapman, Tracey A.
Casamali, Bruno
Venegas, Jorge P.
Kim, Hae Jin
Call, Ashley
Sublett, William L.
Mathew, Lolita G.
Shariff, Aabid
Watts, Joseph M.
Mann, Mike
Hummel, Aaron
Rapp, Ryan
author_facet Karlson, Dale
Mojica, Julius P.
Poorten, Thomas J.
Lawit, Shai J.
Jali, Sathya
Chauhan, Raj Deepika
Pham, Gina M.
Marri, Pradeep
Guffy, Sharon L.
Fear, Justin M.
Ochsenfeld, Cherie A.
(Lincoln) Chapman, Tracey A.
Casamali, Bruno
Venegas, Jorge P.
Kim, Hae Jin
Call, Ashley
Sublett, William L.
Mathew, Lolita G.
Shariff, Aabid
Watts, Joseph M.
Mann, Mike
Hummel, Aaron
Rapp, Ryan
author_sort Karlson, Dale
collection PubMed
description Recent breeding efforts in Brassica have focused on the development of new oilseed feedstock crop for biofuels (e.g., ethanol, biodiesel, bio-jet fuel), bio-industrial uses (e.g., bio-plastics, lubricants), specialty fatty acids (e.g., erucic acid), and producing low glucosinolates levels for oilseed and feed meal production for animal consumption. We identified a novel opportunity to enhance the availability of nutritious, fresh leafy greens for human consumption. Here, we demonstrated the efficacy of disarming the ‘mustard bomb’ reaction in reducing pungency upon the mastication of fresh tissue—a major source of unpleasant flavor and/or odor in leafy Brassica. Using gene-specific mutagenesis via CRISPR-Cas12a, we created knockouts of all functional copies of the type-I myrosinase multigene family in tetraploid Brassica juncea. Our greenhouse and field trials demonstrate, via sensory and biochemical analyses, a stable reduction in pungency in edited plants across multiple environments. Collectively, these efforts provide a compelling path toward boosting the human consumption of nutrient-dense, fresh, leafy green vegetables.
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spelling pubmed-95724892022-10-17 Targeted Mutagenesis of the Multicopy Myrosinase Gene Family in Allotetraploid Brassica juncea Reduces Pungency in Fresh Leaves across Environments Karlson, Dale Mojica, Julius P. Poorten, Thomas J. Lawit, Shai J. Jali, Sathya Chauhan, Raj Deepika Pham, Gina M. Marri, Pradeep Guffy, Sharon L. Fear, Justin M. Ochsenfeld, Cherie A. (Lincoln) Chapman, Tracey A. Casamali, Bruno Venegas, Jorge P. Kim, Hae Jin Call, Ashley Sublett, William L. Mathew, Lolita G. Shariff, Aabid Watts, Joseph M. Mann, Mike Hummel, Aaron Rapp, Ryan Plants (Basel) Article Recent breeding efforts in Brassica have focused on the development of new oilseed feedstock crop for biofuels (e.g., ethanol, biodiesel, bio-jet fuel), bio-industrial uses (e.g., bio-plastics, lubricants), specialty fatty acids (e.g., erucic acid), and producing low glucosinolates levels for oilseed and feed meal production for animal consumption. We identified a novel opportunity to enhance the availability of nutritious, fresh leafy greens for human consumption. Here, we demonstrated the efficacy of disarming the ‘mustard bomb’ reaction in reducing pungency upon the mastication of fresh tissue—a major source of unpleasant flavor and/or odor in leafy Brassica. Using gene-specific mutagenesis via CRISPR-Cas12a, we created knockouts of all functional copies of the type-I myrosinase multigene family in tetraploid Brassica juncea. Our greenhouse and field trials demonstrate, via sensory and biochemical analyses, a stable reduction in pungency in edited plants across multiple environments. Collectively, these efforts provide a compelling path toward boosting the human consumption of nutrient-dense, fresh, leafy green vegetables. MDPI 2022-09-23 /pmc/articles/PMC9572489/ /pubmed/36235360 http://dx.doi.org/10.3390/plants11192494 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Karlson, Dale
Mojica, Julius P.
Poorten, Thomas J.
Lawit, Shai J.
Jali, Sathya
Chauhan, Raj Deepika
Pham, Gina M.
Marri, Pradeep
Guffy, Sharon L.
Fear, Justin M.
Ochsenfeld, Cherie A.
(Lincoln) Chapman, Tracey A.
Casamali, Bruno
Venegas, Jorge P.
Kim, Hae Jin
Call, Ashley
Sublett, William L.
Mathew, Lolita G.
Shariff, Aabid
Watts, Joseph M.
Mann, Mike
Hummel, Aaron
Rapp, Ryan
Targeted Mutagenesis of the Multicopy Myrosinase Gene Family in Allotetraploid Brassica juncea Reduces Pungency in Fresh Leaves across Environments
title Targeted Mutagenesis of the Multicopy Myrosinase Gene Family in Allotetraploid Brassica juncea Reduces Pungency in Fresh Leaves across Environments
title_full Targeted Mutagenesis of the Multicopy Myrosinase Gene Family in Allotetraploid Brassica juncea Reduces Pungency in Fresh Leaves across Environments
title_fullStr Targeted Mutagenesis of the Multicopy Myrosinase Gene Family in Allotetraploid Brassica juncea Reduces Pungency in Fresh Leaves across Environments
title_full_unstemmed Targeted Mutagenesis of the Multicopy Myrosinase Gene Family in Allotetraploid Brassica juncea Reduces Pungency in Fresh Leaves across Environments
title_short Targeted Mutagenesis of the Multicopy Myrosinase Gene Family in Allotetraploid Brassica juncea Reduces Pungency in Fresh Leaves across Environments
title_sort targeted mutagenesis of the multicopy myrosinase gene family in allotetraploid brassica juncea reduces pungency in fresh leaves across environments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9572489/
https://www.ncbi.nlm.nih.gov/pubmed/36235360
http://dx.doi.org/10.3390/plants11192494
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