首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Engineering the cell wall by reducing de-methyl-esterified homogalacturonan improves saccharification of plant tissues for bioconversion
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Engineering the cell wall by reducing de-methyl-esterified homogalacturonan improves saccharification of plant tissues for bioconversion

机译:通过减少脱甲基酯化的半乳糖醛酸聚糖工程化细胞壁可改善植物组织的糖化水平以进行生物转化

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摘要

Plant cell walls represent an abundant, renewable source of biofuel and other useful products. The major bottleneck for the industrial scale-up of their conversion to simple sugars (saccharification), to be subsequently converted by microorganisms into ethanol or other products, is their recalcitrance to enzymatic saccharification. We investigated whether the structure of pectin that embeds the cellulose-hemicellulose network affects the exposure of cellulose to enzymes and consequently the process of saccharification. Reduction of de-methyl-esterified homogalacturonan (HGA) in Arabidopsis plants through the expression of a fungal polygalacturonase (PG) or an inhibitor of pectin methylesterase (PMEI) increased the efficiency of enzymatic saccharification. The improved enzymatic saccharification efficiency observed in transformed plants could also reduce the need for acid pretreatment. Similar results were obtained in PG-expressing tobacco plants and in PMEI-expressing wheat plants, indicating that reduction of de-methyl-esterified HGA may be used in crop species to facilitate the process of biomass saccharification.
机译:植物细胞壁代表了丰富的可再生生物燃料和其他有用产品的来源。工业上将其转化为单糖(糖化)(随后被微生物转化为乙醇或其他产品)的主要瓶颈是它们对酶促糖化的顽固性。我们调查了嵌入纤维素-半纤维素网络的果胶结构是否会影响纤维素与酶的接触,从而影响糖化过程。通过表达真菌多半乳糖醛酸酶(PG)或果胶甲基酯酶抑制剂(PMEI)减少拟南芥植物中的脱甲基酯化高半乳糖醛酸聚糖(HGA),可提高酶促糖化的效率。在转化植物中观察到的提高的酶促糖化效率也可以减少对酸预处理的需要。在表达PG的烟草植物和表达PMEI的小麦植物中获得了相似的结果,表明脱甲基酯化的HGA的减少可用于作物物种中以促进生物质糖化的过程。

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