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Aspen pectate lyase PtxtPL1-27 mobilizes matrix polysaccharides from woody tissues and improves saccharification yield

机译:山杨果胶裂解酶PtxtPL1-27从木质组织中转移基质多糖并提高糖化产率

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摘要

Background: Wood cell walls are rich in cellulose, hemicellulose and lignin. Hence, they are important sources of renewable biomass for producing energy and green chemicals. However, extracting desired constituents from wood efficiently poses significant challenges because these polymers are highly cross-linked in cell walls and are not easily accessible to enzymes and chemicals. Results: We show that aspen pectate lyase PL1-27, which degrades homogalacturonan and is expressed at the onset of secondary wall formation, can increase the solubility of wood matrix polysaccharides. Overexpression of this enzyme in aspen increased solubility of not only pectins but also xylans and other hemicelluloses, indicating that homogalacturonan limits the solubility of major wood cell wall components. Enzymatic saccharification of wood obtained from PL1-27-overexpressing trees gave higher yields of pentoses and hexoses than similar treatment of wood from wild-type trees, even after acid pretreatment. Conclusions: Thus, the modification of pectins may constitute an important biotechnological target for improved wood processing despite their low abundance in woody biomass.
机译:背景:木质细胞壁富含纤维素,半纤维素和木质素。因此,它们是用于生产能源和绿色化学品的可再生生物质的重要来源。但是,从木材中有效地提取所需成分构成了重大挑战,因为这些聚合物在细胞壁中高度交联,并且不易被酶和化学物质吸收。结果:我们表明,可降解高半乳糖醛酸并在次生壁形成开始时表达的山梨果胶裂解酶PL1-27可以增加木材基质多糖的溶解度。这种酶在白杨中的过表达不仅增加了果胶的溶解度,还增加了木聚糖和其他半纤维素的溶解度,这表明高半乳糖醛酸限制了主要木质细胞壁成分的溶解度。从过表达PL1-27的树木获得的木材进行酶促糖化处理,即使经过酸预处理,也比来自野生型树木的类似处理产生更高的戊糖和己糖产量。结论:因此,果胶的修饰可能构成改善木材加工的重要生物技术目标,尽管它们的木质生物量较低。

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