Pawar_2016_Plant.Biotechnol.J_14_387

Reference

Title : Expression of fungal acetyl xylan esterase in Arabidopsis thaliana improves saccharification of stem lignocellulose - Pawar_2016_Plant.Biotechnol.J_14_387
Author(s) : Pawar PM , Derba-Maceluch M , Chong SL , Gomez LD , Miedes E , Banasiak A , Ratke C , Gaertner C , Mouille G , McQueen-Mason SJ , Molina A , Sellstedt A , Tenkanen M , Mellerowicz EJ
Ref : Plant Biotechnol J , 14 :387 , 2016
Abstract :

Cell wall hemicelluloses and pectins are O-acetylated at specific positions, but the significance of these substitutions is poorly understood. Using a transgenic approach, we investigated how reducing the extent of O-acetylation in xylan affects cell wall chemistry, plant performance and the recalcitrance of lignocellulose to saccharification. The Aspergillus niger acetyl xylan esterase AnAXE1 was expressed in Arabidopsis under the control of either the constitutively expressed 35S CAMV promoter or a woody-tissue-specific GT43B aspen promoter, and the protein was targeted to the apoplast by its native signal peptide, resulting in elevated acetyl esterase activity in soluble and wall-bound protein extracts and reduced xylan acetylation. No significant alterations in cell wall composition were observed in the transgenic lines, but their xylans were more easily digested by a beta-1,4-endoxylanase, and more readily extracted by hot water, acids or alkali. Enzymatic saccharification of lignocellulose after hot water and alkali pretreatments produced up to 20% more reducing sugars in several lines. Fermentation by Trametes versicolor of tissue hydrolysates from the line with a 30% reduction in acetyl content yielded ~70% more ethanol compared with wild type. Plants expressing 35S:AnAXE1 and pGT43B:AnAXE1 developed normally and showed increased resistance to the biotrophic pathogen Hyaloperonospora arabidopsidis, probably due to constitutive activation of defence pathways. However, unintended changes in xyloglucan and pectin acetylation were only observed in 35S:AnAXE1-expressing plants. This study demonstrates that postsynthetic xylan deacetylation in woody tissues is a promising strategy for optimizing lignocellulosic biomass for biofuel production.

PubMedSearch : Pawar_2016_Plant.Biotechnol.J_14_387
PubMedID: 25960248
Gene_locus related to this paper: aspng-a0a100iph2

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Citations formats

Pawar PM, Derba-Maceluch M, Chong SL, Gomez LD, Miedes E, Banasiak A, Ratke C, Gaertner C, Mouille G, McQueen-Mason SJ, Molina A, Sellstedt A, Tenkanen M, Mellerowicz EJ (2016)
Expression of fungal acetyl xylan esterase in Arabidopsis thaliana improves saccharification of stem lignocellulose
Plant Biotechnol J 14 :387

Pawar PM, Derba-Maceluch M, Chong SL, Gomez LD, Miedes E, Banasiak A, Ratke C, Gaertner C, Mouille G, McQueen-Mason SJ, Molina A, Sellstedt A, Tenkanen M, Mellerowicz EJ (2016)
Plant Biotechnol J 14 :387