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Improved saccharification and ethanol yield from field-grown transgenic poplar deficient in cinnamoyl-CoA reductase

机译:缺乏肉桂酸辅酶A还原酶的田间转基因杨树的糖化和乙醇产量提高

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摘要

Lignin is one of the main factors determining recalcitrance to enzymatic processing of lignocellulosic biomass. Poplars (Populus tremula x Populus alba) down-regulated for cinnamoyl-CoA reductase (CCR), the enzyme catalyzing the first step in the monolignol-specific branch of the lignin biosynthetic pathway, were grown in field trials in Belgium and France under short-rotation coppice culture. Wood samples were classified according to the intensity of the red xylem coloration typically associated with CCR down-regulation. Saccharification assays under different pretreatment conditions (none, two alkaline, and one acid pretreatment) and simultaneous saccharification and fermentation assays showed that wood from the most affected transgenic trees had up to 161% increased ethanol yield. Fermentations of combined material from the complete set of 20-mo-old CCR-down-regulated trees, including bark and less efficiently down-regulated trees, still yielded ∼ 20% more ethanol on a weight basis. However, strong down-regulation of CCR also affected biomass yield. We conclude that CCR down-regulation may become a successful strategy to improve biomass processing if the variability in down-regulation and the yield penalty can be overcome.
机译:木质素是决定对木质纤维素生物质进行酶处理的顽固性的主要因素之一。肉桂和辅酶A还原酶(CCR)被下调的白杨(Populus tremula x Populus alba)是一种催化木质素生物合成途径的单木酚特异性分支第一步的酶。轮换的小灌木林文化。根据通常与CCR下调相关的红色木质部着色强度对木材样品进行分类。在不同的预处理条件(无,两种碱性和一种酸预处理)下进行的糖化测定以及同时进行的糖化和发酵测定表明,受影响最大的转基因树的木材乙醇产量最多提高了161%。来自整套20个月老的CCR下调的树木(包括树皮和效率较低的下调树木)的组合材料发酵,按重量计仍可产生约20%的乙醇。但是,CCR的强烈下调也影响了生物量的产量。我们得出的结论是,如果可以克服下调的可变性和产量损失,CCR下调可能成为改善生物质加工的成功策略。

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