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Expression of a fungal glucuronoyl esterase in Populus : Effects on wood properties and saccharification efficiency

机译:真菌葡萄糖醛酸酰基酯酶在胡杨中的表达:对木材特性和糖化效率的影响

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摘要

The secondary walls of angiosperms contain large amounts of glucuronoxylan that is thought to be covalently linked to lignin via ester bonds between 4-O-methyl-alpha-D-glucuronic acid (4-O-Me-GlcA) moieties in glucuronoxylan and alcohol groups in lignin. This linkage is proposed to be hydrolysed by glucuronoyl esterases (GCEs) secreted by wood-degrading fungi. We report effects of overexpression of a GCE from the white-rot basidiomycete Phanerochaete carnosa, PcGCE, in hybrid aspen (Populus tremula L. x tremuloides Michx.) on the wood composition and the saccharification efficiency. The recombinant enzyme, which was targeted to the plant cell wall using the signal peptide from hybrid aspen cellulase PttCel9B3, was constitutively expressed resulting in the appearance of GCE activity in protein extracts from developing wood. Diffuse reflectance FT-IR spectroscopy and pyrolysis-GC/MS analyses showed significant alternation in wood chemistry of transgenic plants including an increase in lignin content and S/G ratio, and a decrease in carbohydrate content Sequential wood extractions confirmed a massive (+43%) increase of Klason lignin, which was accompanied by a ca. 5% decrease in cellulose, and ca. 20% decrease in wood extractives. Analysis of the monosaccharide composition using methanolysis showed a reduction of 4-O-Me-GlcA content without a change in Xyl contents in transgenic lines, suggesting that the covalent links between 4-O-Me-GlcA moieties and lignin protect these moieties from degradation. Enzymatic saccharification without pretreatment resulted in significant decreases of the yields of Gal, Glc, Xyl and Man in transgenic lines, consistent with their increased recalcitrance caused by the increased lignin content In contrast, the enzymatic saccharification after acid pretreatment resulted in Glc yields similar to wild-type despite of their lower cellulose content. These data indicate that whereas PcGCE expression in hybrid aspen increases lignin deposition, the inhibitory effects of lignin are efficiently removed during acid pretreatment, and the extent of wood cellulose conversion during hydrolysis after acid pretreatment is improved in the transgenic lines possible due to reduced cell wall cross-links between cell wall biopolymers by PcGCE. 
机译:被子植物的次生壁含有大量的葡糖醛酸木聚糖,被认为通过葡糖醛酸木聚糖和醇基团中的4-O-甲基-α-D-葡糖醛酸(4-O-Me-GlcA)部分之间的酯键与木质素共价连接。在木质素中。提议这种连接被木材降解真菌分泌的葡糖醛酸酰基酯酶(GCE)水解。我们报告了从白腐担子菌Phanerochaete carnosa,PcGCE,混合白杨(Populus tremula L. x tremuloides Michx。)中的GCE过表达对木材成分和糖化效率的影响。重组酶被组成性表达,该重组酶使用来自杂种白杨纤维素酶PttCel9B3的信号肽靶向植物细胞壁,从而在来自发展中的木材的蛋白质提取物中出现了GCE活性。漫反射FT-IR光谱和热解-GC / MS分析显示转基因植物的木材化学发生了显着变化,包括木质素含量和S / G比增加,碳水化合物含量降低。顺序木材提取证实了大幅度(+ 43% )Klason木质素的增加,并伴有ca.纤维素减少5%,大约木材提取物减少20%。使用甲醇分解法对单糖组成进行分析表明,转基因品系中的4-O-Me-GlcA含量降低而Xyl含量不变,表明4-O-Me-GlcA部分和木质素之间的共价键保护这些部分免于降解。未经预处理的酶促糖化导致转基因品系中Gal,Glc,Xyl和Man的产量显着下降,这与木质素含量增加引起的抗钙化增加相反。相反,酸预处理后的酶促糖化导致Glc的产量与野生型相似-型尽管其纤维素含量较低。这些数据表明,虽然杂种白杨中的PcGCE表达增加了木质素的沉积,但在酸预处理期间木质素的抑制作用得以有效消除,并且在酸预处理后水解过程中木质纤维素转化的程度在转基因品系中得以改善,这可能是由于细胞壁减少所致。通过PcGCE在细胞壁生物聚合物之间形成交联。

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