Literature DB >> 23391577

Overexpression of a BAHD acyltransferase, OsAt10, alters rice cell wall hydroxycinnamic acid content and saccharification.

Laura E Bartley1, Matthew L Peck, Sung-Ryul Kim, Berit Ebert, Chithra Manisseri, Dawn M Chiniquy, Robert Sykes, Lingfang Gao, Carsten Rautengarten, Miguel E Vega-Sánchez, Peter I Benke, Patrick E Canlas, Peijian Cao, Susan Brewer, Fan Lin, Whitney L Smith, Xiaohan Zhang, Jay D Keasling, Rolf E Jentoff, Steven B Foster, Jizhong Zhou, Angela Ziebell, Gynheung An, Henrik V Scheller, Pamela C Ronald.   

Abstract

Grass cell wall properties influence food, feed, and biofuel feedstock usage efficiency. The glucuronoarabinoxylan of grass cell walls is esterified with the phenylpropanoid-derived hydroxycinnamic acids ferulic acid (FA) and para-coumaric acid (p-CA). Feruloyl esters undergo oxidative coupling with neighboring phenylpropanoids on glucuronoarabinoxylan and lignin. Examination of rice (Oryza sativa) mutants in a grass-expanded and -diverged clade of BAHD acyl-coenzyme A-utilizing transferases identified four mutants with altered cell wall FA or p-CA contents. Here, we report on the effects of overexpressing one of these genes, OsAt10 (LOC_Os06g39390), in rice. An activation-tagged line, OsAT10-D1, shows a 60% reduction in matrix polysaccharide-bound FA and an approximately 300% increase in p-CA in young leaf tissue but no discernible phenotypic alterations in vegetative development, lignin content, or lignin composition. Two additional independent OsAt10 overexpression lines show similar changes in FA and p-CA content. Cell wall fractionation and liquid chromatography-mass spectrometry experiments isolate the cell wall alterations in the mutant to ester conjugates of a five-carbon sugar with p-CA and FA. These results suggest that OsAT10 is a p-coumaroyl coenzyme A transferase involved in glucuronoarabinoxylan modification. Biomass from OsAT10-D1 exhibits a 20% to 40% increase in saccharification yield depending on the assay. Thus, OsAt10 is an attractive target for improving grass cell wall quality for fuel and animal feed.

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Year:  2013        PMID: 23391577      PMCID: PMC3613443          DOI: 10.1104/pp.112.208694

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  66 in total

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  54 in total

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Review 5.  Role of HXXXD-motif/BAHD acyltransferases in the biosynthesis of extracellular lipids.

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Review 10.  Engineering grass biomass for sustainable and enhanced bioethanol production.

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