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Downregulation of GAUT12 in Populus deltoides by RNA silencing results in reduced recalcitrance, increased growth and reduced xylan and pectin in a woody biofuel feedstock

BACKGROUND: The inherent recalcitrance of woody bioenergy feedstocks is a major challenge for their use as a source of second-generation biofuel. Secondary cell walls that constitute the majority of hardwood biomass are rich in cellulose, xylan, and lignin. The interactions among these polymers prev...

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Autores principales: Biswal, Ajaya K, Hao, Zhangying, Pattathil, Sivakumar, Yang, Xiaohan, Winkeler, Kim, Collins, Cassandra, Mohanty, Sushree S, Richardson, Elizabeth A, Gelineo-Albersheim, Ivana, Hunt, Kimberly, Ryno, David, Sykes, Robert W, Turner, Geoffrey B, Ziebell, Angela, Gjersing, Erica, Lukowitz, Wolfgang, Davis, Mark F, Decker, Stephen R, Hahn, Michael G, Mohnen, Debra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4369864/
https://www.ncbi.nlm.nih.gov/pubmed/25802552
http://dx.doi.org/10.1186/s13068-015-0218-y
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author Biswal, Ajaya K
Hao, Zhangying
Pattathil, Sivakumar
Yang, Xiaohan
Winkeler, Kim
Collins, Cassandra
Mohanty, Sushree S
Richardson, Elizabeth A
Gelineo-Albersheim, Ivana
Hunt, Kimberly
Ryno, David
Sykes, Robert W
Turner, Geoffrey B
Ziebell, Angela
Gjersing, Erica
Lukowitz, Wolfgang
Davis, Mark F
Decker, Stephen R
Hahn, Michael G
Mohnen, Debra
author_facet Biswal, Ajaya K
Hao, Zhangying
Pattathil, Sivakumar
Yang, Xiaohan
Winkeler, Kim
Collins, Cassandra
Mohanty, Sushree S
Richardson, Elizabeth A
Gelineo-Albersheim, Ivana
Hunt, Kimberly
Ryno, David
Sykes, Robert W
Turner, Geoffrey B
Ziebell, Angela
Gjersing, Erica
Lukowitz, Wolfgang
Davis, Mark F
Decker, Stephen R
Hahn, Michael G
Mohnen, Debra
author_sort Biswal, Ajaya K
collection PubMed
description BACKGROUND: The inherent recalcitrance of woody bioenergy feedstocks is a major challenge for their use as a source of second-generation biofuel. Secondary cell walls that constitute the majority of hardwood biomass are rich in cellulose, xylan, and lignin. The interactions among these polymers prevent facile accessibility and deconstruction by enzymes and chemicals. Plant biomass that can with minimal pretreatment be degraded into sugars is required to produce renewable biofuels in a cost-effective manner. RESULTS: GAUT12/IRX8 is a putative glycosyltransferase proposed to be involved in secondary cell wall glucuronoxylan and/or pectin biosynthesis based on concomitant reductions of both xylan and the pectin homogalacturonan (HG) in Arabidopsis irx8 mutants. Two GAUT12 homologs exist in Populus trichocarpa, PtGAUT12.1 and PtGAUT12.2. Knockdown expression of both genes simultaneously has been shown to reduce xylan content in Populus wood. We tested the proposition that RNA interference (RNAi) downregulation of GAUT12.1 alone would lead to increased sugar release in Populus wood, that is, reduced recalcitrance, based on the hypothesis that GAUT12 synthesizes a wall structure required for deposition of xylan and that cell walls with less xylan and/or modified cell wall architecture would have reduced recalcitrance. Using an RNAi approach, we generated 11 Populus deltoides transgenic lines with 50 to 67% reduced PdGAUT12.1 transcript expression compared to wild type (WT) and vector controls. Ten of the eleven RNAi lines yielded 4 to 8% greater glucose release upon enzymatic saccharification than the controls. The PdGAUT12.1 knockdown (PdGAUT12.1-KD) lines also displayed 12 to 52% and 12 to 44% increased plant height and radial stem diameter, respectively, compared to the controls. Knockdown of PdGAUT12.1 resulted in a 25 to 47% reduction in galacturonic acid and 17 to 30% reduction in xylose without affecting total lignin content, revealing that in Populus wood as in Arabidopsis, GAUT12 affects both pectin and xylan formation. Analyses of the sugars present in sequential cell wall extracts revealed a reduction of glucuronoxylan and pectic HG and rhamnogalacturonan in extracts from PdGAUT12.1-KD lines. CONCLUSIONS: The results show that downregulation of GAUT12.1 leads to a reduction in a population of xylan and pectin during wood formation and to reduced recalcitrance, more easily extractable cell walls, and increased growth in Populus. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13068-015-0218-y) contains supplementary material, which is available to authorized users.
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spelling pubmed-43698642015-03-24 Downregulation of GAUT12 in Populus deltoides by RNA silencing results in reduced recalcitrance, increased growth and reduced xylan and pectin in a woody biofuel feedstock Biswal, Ajaya K Hao, Zhangying Pattathil, Sivakumar Yang, Xiaohan Winkeler, Kim Collins, Cassandra Mohanty, Sushree S Richardson, Elizabeth A Gelineo-Albersheim, Ivana Hunt, Kimberly Ryno, David Sykes, Robert W Turner, Geoffrey B Ziebell, Angela Gjersing, Erica Lukowitz, Wolfgang Davis, Mark F Decker, Stephen R Hahn, Michael G Mohnen, Debra Biotechnol Biofuels Research Article BACKGROUND: The inherent recalcitrance of woody bioenergy feedstocks is a major challenge for their use as a source of second-generation biofuel. Secondary cell walls that constitute the majority of hardwood biomass are rich in cellulose, xylan, and lignin. The interactions among these polymers prevent facile accessibility and deconstruction by enzymes and chemicals. Plant biomass that can with minimal pretreatment be degraded into sugars is required to produce renewable biofuels in a cost-effective manner. RESULTS: GAUT12/IRX8 is a putative glycosyltransferase proposed to be involved in secondary cell wall glucuronoxylan and/or pectin biosynthesis based on concomitant reductions of both xylan and the pectin homogalacturonan (HG) in Arabidopsis irx8 mutants. Two GAUT12 homologs exist in Populus trichocarpa, PtGAUT12.1 and PtGAUT12.2. Knockdown expression of both genes simultaneously has been shown to reduce xylan content in Populus wood. We tested the proposition that RNA interference (RNAi) downregulation of GAUT12.1 alone would lead to increased sugar release in Populus wood, that is, reduced recalcitrance, based on the hypothesis that GAUT12 synthesizes a wall structure required for deposition of xylan and that cell walls with less xylan and/or modified cell wall architecture would have reduced recalcitrance. Using an RNAi approach, we generated 11 Populus deltoides transgenic lines with 50 to 67% reduced PdGAUT12.1 transcript expression compared to wild type (WT) and vector controls. Ten of the eleven RNAi lines yielded 4 to 8% greater glucose release upon enzymatic saccharification than the controls. The PdGAUT12.1 knockdown (PdGAUT12.1-KD) lines also displayed 12 to 52% and 12 to 44% increased plant height and radial stem diameter, respectively, compared to the controls. Knockdown of PdGAUT12.1 resulted in a 25 to 47% reduction in galacturonic acid and 17 to 30% reduction in xylose without affecting total lignin content, revealing that in Populus wood as in Arabidopsis, GAUT12 affects both pectin and xylan formation. Analyses of the sugars present in sequential cell wall extracts revealed a reduction of glucuronoxylan and pectic HG and rhamnogalacturonan in extracts from PdGAUT12.1-KD lines. CONCLUSIONS: The results show that downregulation of GAUT12.1 leads to a reduction in a population of xylan and pectin during wood formation and to reduced recalcitrance, more easily extractable cell walls, and increased growth in Populus. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13068-015-0218-y) contains supplementary material, which is available to authorized users. BioMed Central 2015-03-12 /pmc/articles/PMC4369864/ /pubmed/25802552 http://dx.doi.org/10.1186/s13068-015-0218-y Text en © Biswal et al.; licensee BioMed Central. 2015 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), 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 Article
Biswal, Ajaya K
Hao, Zhangying
Pattathil, Sivakumar
Yang, Xiaohan
Winkeler, Kim
Collins, Cassandra
Mohanty, Sushree S
Richardson, Elizabeth A
Gelineo-Albersheim, Ivana
Hunt, Kimberly
Ryno, David
Sykes, Robert W
Turner, Geoffrey B
Ziebell, Angela
Gjersing, Erica
Lukowitz, Wolfgang
Davis, Mark F
Decker, Stephen R
Hahn, Michael G
Mohnen, Debra
Downregulation of GAUT12 in Populus deltoides by RNA silencing results in reduced recalcitrance, increased growth and reduced xylan and pectin in a woody biofuel feedstock
title Downregulation of GAUT12 in Populus deltoides by RNA silencing results in reduced recalcitrance, increased growth and reduced xylan and pectin in a woody biofuel feedstock
title_full Downregulation of GAUT12 in Populus deltoides by RNA silencing results in reduced recalcitrance, increased growth and reduced xylan and pectin in a woody biofuel feedstock
title_fullStr Downregulation of GAUT12 in Populus deltoides by RNA silencing results in reduced recalcitrance, increased growth and reduced xylan and pectin in a woody biofuel feedstock
title_full_unstemmed Downregulation of GAUT12 in Populus deltoides by RNA silencing results in reduced recalcitrance, increased growth and reduced xylan and pectin in a woody biofuel feedstock
title_short Downregulation of GAUT12 in Populus deltoides by RNA silencing results in reduced recalcitrance, increased growth and reduced xylan and pectin in a woody biofuel feedstock
title_sort downregulation of gaut12 in populus deltoides by rna silencing results in reduced recalcitrance, increased growth and reduced xylan and pectin in a woody biofuel feedstock
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4369864/
https://www.ncbi.nlm.nih.gov/pubmed/25802552
http://dx.doi.org/10.1186/s13068-015-0218-y
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