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Overexpression of a Domain of Unknown Function 231-containing protein increases O-xylan acetylation and cellulose biosynthesis in Populus

Authors :
Yongil Yang
Chang Geun Yoo
Kimberly A. Winkeler
Cassandra M. Collins
Maud A. W. Hinchee
Sara S. Jawdy
Lee E. Gunter
Nancy L. Engle
Yunqiao Pu
Xiaohan Yang
Timothy J. Tschaplinski
Arthur J. Ragauskas
Gerald A. Tuskan
Jin-Gui Chen
Source :
Biotechnology for Biofuels, Vol 10, Iss 1, Pp 1-16 (2017)
Publication Year :
2017
Publisher :
BMC, 2017.

Abstract

Abstract Background Domain of Unknown Function 231-containing proteins (DUF231) are plant specific and their function is largely unknown. Studies in the model plants Arabidopsis and rice suggested that some DUF231 proteins act in the process of O-acetyl substitution of hemicellulose and esterification of pectin. However, little is known about the function of DUF231 proteins in woody plant species. Results This study provides evidence supporting that one member of DUF231 family proteins in the woody perennial plant Populus deltoides (genotype WV94), PdDUF231A, has a role in the acetylation of xylan and affects cellulose biosynthesis. A total of 52 DUF231-containing proteins were identified in the Populus genome. In P. deltoides transgenic lines overexpressing PdDUF231A (OXPdDUF231A), glucose and cellulose contents were increased. Consistent with these results, the transcript levels of cellulose biosynthesis-related genes were increased in the OXPdDUF231A transgenic lines. Furthermore, the relative content of total acetylated xylan was increased in the OXPdDUF231A transgenic lines. Enzymatic saccharification assays revealed that the rate of glucose release increased in OXPdDUF231A transgenic lines. Plant biomass productivity was also increased in OXPdDUF231A transgenic lines. Conclusions These results suggest that PdDUF231A affects cellulose biosynthesis and plays a role in the acetylation of xylan. PdDUF231A is a promising target for genetic modification for biofuel production because biomass productivity and compositional quality can be simultaneously improved through overexpression.

Details

Language :
English
ISSN :
17546834
Volume :
10
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Biotechnology for Biofuels
Publication Type :
Academic Journal
Accession number :
edsdoj.13b84c8b3644658bc033b113dfd8f32
Document Type :
article
Full Text :
https://doi.org/10.1186/s13068-017-0998-3