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Expression of a fungal ferulic acid esterase in alfalfa modifies cell wall digestibility

BACKGROUND: Alfalfa (Medicago sativa) is an important forage crop in North America owing to its high biomass production, perennial nature and ability to fix nitrogen. Feruloyl esterase (EC 3.1.1.73) hydrolyzes ester linkages in plant cell walls and has the potential to further improve alfalfa as bio...

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Autores principales: Badhan, Ajay, Jin, Long, Wang, Yuxi, Han, Shuyou, Kowalczys, Katarzyna, Brown, Daniel CW, Ayala, Carlos Juarez, Latoszek-Green, Marysia, Miki, Brian, Tsang, Adrian, McAllister, Tim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3999942/
https://www.ncbi.nlm.nih.gov/pubmed/24650274
http://dx.doi.org/10.1186/1754-6834-7-39
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author Badhan, Ajay
Jin, Long
Wang, Yuxi
Han, Shuyou
Kowalczys, Katarzyna
Brown, Daniel CW
Ayala, Carlos Juarez
Latoszek-Green, Marysia
Miki, Brian
Tsang, Adrian
McAllister, Tim
author_facet Badhan, Ajay
Jin, Long
Wang, Yuxi
Han, Shuyou
Kowalczys, Katarzyna
Brown, Daniel CW
Ayala, Carlos Juarez
Latoszek-Green, Marysia
Miki, Brian
Tsang, Adrian
McAllister, Tim
author_sort Badhan, Ajay
collection PubMed
description BACKGROUND: Alfalfa (Medicago sativa) is an important forage crop in North America owing to its high biomass production, perennial nature and ability to fix nitrogen. Feruloyl esterase (EC 3.1.1.73) hydrolyzes ester linkages in plant cell walls and has the potential to further improve alfalfa as biomass for biofuel production. RESULTS: In this study, faeB [GenBank:AJ309807] was synthesized at GenScript and sub-cloned into a novel pEACH vector containing different signaling peptides to target type B ferulic acid esterase (FAEB) proteins to the apoplast, chloroplast, endoplasmic reticulum and vacuole. Four constructs harboring faeB were transiently expressed in Nicotiana leaves, with FAEB accumulating at high levels in all target sites, except chloroplast. Stable transformed lines of alfalfa were subsequently obtained using Agrobacterium tumefaciens (LBA4404). Out of 136 transgenic plants regenerated, 18 independent lines exhibited FAEB activity. Subsequent in vitro digestibility and Fourier transformed infrared spectroscopy (FTIR) analysis of FAEB-expressing lines showed that they possessed modified cell wall morphology and composition with a reduction in ester linkages and elevated lignin content. Consequently, they were more recalcitrant to digestion by mixed ruminal microorganisms. Interestingly, delignification by alkaline peroxide treatment followed by exposure to a commercial cellulase mixture resulted in higher glucose release from transgenic lines as compared to the control line. CONCLUSION: Modifying cell wall crosslinking has the potential to lower recalcitrance of holocellulose, but also exhibited unintended consequences on alfalfa cell wall digestibility due to elevated lignin content. The combination of efficient delignification treatment (alkaline peroxide) and transgenic esterase activity complement each other towards efficient and effective digestion of transgenic lines.
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spelling pubmed-39999422014-04-26 Expression of a fungal ferulic acid esterase in alfalfa modifies cell wall digestibility Badhan, Ajay Jin, Long Wang, Yuxi Han, Shuyou Kowalczys, Katarzyna Brown, Daniel CW Ayala, Carlos Juarez Latoszek-Green, Marysia Miki, Brian Tsang, Adrian McAllister, Tim Biotechnol Biofuels Research BACKGROUND: Alfalfa (Medicago sativa) is an important forage crop in North America owing to its high biomass production, perennial nature and ability to fix nitrogen. Feruloyl esterase (EC 3.1.1.73) hydrolyzes ester linkages in plant cell walls and has the potential to further improve alfalfa as biomass for biofuel production. RESULTS: In this study, faeB [GenBank:AJ309807] was synthesized at GenScript and sub-cloned into a novel pEACH vector containing different signaling peptides to target type B ferulic acid esterase (FAEB) proteins to the apoplast, chloroplast, endoplasmic reticulum and vacuole. Four constructs harboring faeB were transiently expressed in Nicotiana leaves, with FAEB accumulating at high levels in all target sites, except chloroplast. Stable transformed lines of alfalfa were subsequently obtained using Agrobacterium tumefaciens (LBA4404). Out of 136 transgenic plants regenerated, 18 independent lines exhibited FAEB activity. Subsequent in vitro digestibility and Fourier transformed infrared spectroscopy (FTIR) analysis of FAEB-expressing lines showed that they possessed modified cell wall morphology and composition with a reduction in ester linkages and elevated lignin content. Consequently, they were more recalcitrant to digestion by mixed ruminal microorganisms. Interestingly, delignification by alkaline peroxide treatment followed by exposure to a commercial cellulase mixture resulted in higher glucose release from transgenic lines as compared to the control line. CONCLUSION: Modifying cell wall crosslinking has the potential to lower recalcitrance of holocellulose, but also exhibited unintended consequences on alfalfa cell wall digestibility due to elevated lignin content. The combination of efficient delignification treatment (alkaline peroxide) and transgenic esterase activity complement each other towards efficient and effective digestion of transgenic lines. BioMed Central 2014-03-20 /pmc/articles/PMC3999942/ /pubmed/24650274 http://dx.doi.org/10.1186/1754-6834-7-39 Text en Copyright © 2014 Badhan et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Badhan, Ajay
Jin, Long
Wang, Yuxi
Han, Shuyou
Kowalczys, Katarzyna
Brown, Daniel CW
Ayala, Carlos Juarez
Latoszek-Green, Marysia
Miki, Brian
Tsang, Adrian
McAllister, Tim
Expression of a fungal ferulic acid esterase in alfalfa modifies cell wall digestibility
title Expression of a fungal ferulic acid esterase in alfalfa modifies cell wall digestibility
title_full Expression of a fungal ferulic acid esterase in alfalfa modifies cell wall digestibility
title_fullStr Expression of a fungal ferulic acid esterase in alfalfa modifies cell wall digestibility
title_full_unstemmed Expression of a fungal ferulic acid esterase in alfalfa modifies cell wall digestibility
title_short Expression of a fungal ferulic acid esterase in alfalfa modifies cell wall digestibility
title_sort expression of a fungal ferulic acid esterase in alfalfa modifies cell wall digestibility
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3999942/
https://www.ncbi.nlm.nih.gov/pubmed/24650274
http://dx.doi.org/10.1186/1754-6834-7-39
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