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Inactivation of OslRX10 Leads to Decreased Xylan Content in Rice Culm Cell Walls and Improved Biomass Saccharification 被引量:1
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作者 Xuewei Chen Miguel E. Vega-Sanchez +15 位作者 Yves Verhertbruggenb Dawn Chiniquy Patrick E. Canlas alexandra fagerstrom Lina Prak Ulla Christensen Ai Oikawa Mawsheng Chern Shimin Zuo Fan Lin Manfred Auer William G.T. Willats Laura Bartley Jesper Harholt Henrik V. Scheller Pamela C. Ronald 《Molecular Plant》 SCIE CAS CSCD 2013年第2期570-573,共4页
Dear Editor, Xylan polysaccharides constitute the major non-cellulosic components in secondary cell walls of dicots and in both primary and secondary cell walls of grasses (Scheller and Ulvskov, 2010). Xylan is com... Dear Editor, Xylan polysaccharides constitute the major non-cellulosic components in secondary cell walls of dicots and in both primary and secondary cell walls of grasses (Scheller and Ulvskov, 2010). Xylan is composed of a linear backbone of 13(1-4)-linked xylose (Xyl). In grasses, the xylan backbone is substituted with 03-1inked and 02-1inked arabinose residues and, to a lesser extent, a(1-3)-Iinked glucuronic acid residues. 展开更多
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