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Molecular Plant|October 15, 2009
Feruloylation in grasses: current and future perspectivesMarcia M de O BuanafinaPlanta|March 22, 2012
Modification of esterified cell wall phenolics increases vulnerability of tall fescue to herbivory by the fall armywormMarcia M de O Buanafina, Howard W FescemyerPlanta|August 11, 2012
Expression of a Trichoderma reesei β-1,4 endo-xylanase in tall fescue modifies cell wall structure and digestibility and elicits pathogen defence responsesMarcia M de O Buanafina, Tim Langdon, Sue Dalton, et al.Plos One|September 22, 2017
Reducing cell wall feruloylation by expression of a fungal ferulic acid esterase in Festuca arundinacea modifies plant growth, leaf morphology and the turnover of cell wall arabinoxylansMarcia M de O Buanafina, Prashanti R Iyer, M Fernanda Buanafina, et al.Planta|November 28, 2015
Functional testing of a PF02458 homologue of putative rice arabinoxylan feruloyl transferase genes in Brachypodium distachyonMarcia M de O Buanafina, Howard W Fescemyer, Mandeep Sharma, et al.Plant Biotechnology Journal|December 19, 2007
Expression of a fungal ferulic acid esterase increases cell wall digestibility of tall fescue (Festuca arundinacea)Marcia M de O Buanafina, Tim Langdon, Barbara Hauck, et al.Applied Biochemistry and Biotechnology|August 19, 2006
Manipulating the phenolic acid content and digestibility of italian ryegrass (Lolium multiflorum) by vacuolar-targeted expression of a fungal ferulic acid esteraseMarcia M de O Buanafina, Tim Langdon, Barbara Hauck, et al.Plos One|January 3, 2025
Late-stage changes in the composition of cell walls of maize plants expressing an apoplast targeted, senescence enhanced fungal ferulic acid esterase, and the subsequent effects on tissue saccharificationMarcia M de O Buanafina, Phillip Morris, Sue Dalton, et al.Planta|October 3, 2019
Characterization of feruloyl esterases in maize pollenMarcia M de O Buanafina, M Fernanda Buanafina, Tatiana Laremore, et al.Plant Biotechnology Journal|January 28, 2010
Targeting expression of a fungal ferulic acid esterase to the apoplast, endoplasmic reticulum or golgi can disrupt feruloylation of the growing cell wall and increase the biodegradability of tall fescue (Festuca arundinacea)Marcia M de O Buanafina, Tim Langdon, Barbara Hauck, et al.Pageof 2