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RNA interference suppression of lignin biosynthesis increases fermentable sugar yields for biofuel production from field-grown sugarcane

机译:Lignin生物合成的RNA干扰抑制增加了从野外甘蔗生物燃料生产的可发酵糖产量

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摘要

The agronomic performance, cell wall characteristics and enzymatic saccharification efficiency of transgenic sugarcane plants with modified lignin were evaluated under replicated field conditions. Caffeic acid O-methyltransferase (COMT) was stably suppressed by RNAi in the field, resulting in transcript reduction of 80%-91%. Along with COMT suppression, total lignin content was reduced by 6%-12% in different transgenic lines. Suppression of COMT also altered lignin composition by reducing syringyl units and p-coumarate incorporation into lignin. Reduction in total lignin by 6% improved saccharification efficiency by 19%-23% with no significant difference in biomass yield, plant height, stalk diameter, tiller number, total structural carbohydrates or brix value when compared with nontransgenic tissue culture-derived or transgenic control plants. Lignin reduction of 8%-12% compromised biomass yield, but increased saccharification efficiency by 28%-32% compared with control plants. Biomass from transgenic sugarcane lines that have 6%-12% less lignin requires approximately one-third of the hydrolysis time or 3- to 4-fold less enzyme to release an equal or greater amount of fermentable sugar than nontransgenic plants. Reducing the recalcitrance of lignocellulosic biomass to saccharification by modifying lignin biosynthesis is expected to greatly benefit the economic competitiveness of sugarcane as a biofuel feedstock.
机译:在复制的场地条件下评价转基因甘蔗植物的农艺性能,细胞壁特性和酶糖化效率。通过现场RNAi稳定地抑制咖啡酸O-甲基转移酶(COMT),导致转录物降低80%-91%。随着COMT抑制,在不同的转基因中,木质素含量的总含量降低了6%-12%。通过将陶醉细胞和对木质素掺入木质素,COMT的抑制也改变了木质素组合物。将总木质素减少6%的糖化效率为19%-23%,与非转基因组织培养或转基因对照相比,生物质产量,植物高度,茎直径,分蘖数,总结构碳水化合物或BRIX值无显着差异植物。木质素减少了8%-12%的受损生物质产量,但与对照植物相比,糖化效率提高了28%-32%。来自转基因甘蔗线的生物量,其具有6%-12%的木质素的木质素需要大约三分之一的水解时间或3-4倍少酶,以释放比非转基因植物相等或更大的可发酵糖。通过改变木质素生物合成来减少木质纤维素生物质对糖化的重核,预计将极大地使甘蔗作为生物燃料原料的经济竞争力。

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