首页> 外文期刊>Molecular Plant >Altered lignin biosynthesis improves cellulosic bioethanol production in transgenic maize plants down-regulated for cinnamyl alcohol dehydrogenase.
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Altered lignin biosynthesis improves cellulosic bioethanol production in transgenic maize plants down-regulated for cinnamyl alcohol dehydrogenase.

机译:改变的木质素生物合成改善了被肉桂醇脱氢酶下调的转基因玉米植物中纤维素生物乙醇的生产。

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摘要

Cinnamyl alcohol dehydrogenase (CAD) is a key enzyme involved in the last step of monolignol biosynthesis. The effect of CAD down-regulation on lignin production was investigated through a transgenic approach in maize. Transgenic CAD-RNAi plants show a different degree of enzymatic reduction depending on the analyzed tissue and show alterations in cell wall composition. Cell walls of CAD-RNAi stems contain a lignin polymer with a slight reduction in the S-to-G ratio without affecting the total lignin content. In addition, these cell walls accumulate higher levels of cellulose and arabinoxylans. In contrast, cell walls of CAD-RNAi midribs present a reduction in the total lignin content and of cell wall polysaccharides. In vitro degradability assays showed that, although to a different extent, the changes induced by the repression of CAD activity produced midribs and stems more degradable than wild-type plants. CAD-RNAi plants grown in the field presented a wild-type phenotype and produced higher amounts of dry biomass. Cellulosic bioethanol assays revealed that CAD-RNAi biomass produced higher levels of ethanol compared to wild-type, making CAD a good target to improve both the nutritional and energetic values of maize lignocellulosic biomass
机译:肉桂醇脱氢酶(CAD)是参与单木酚生物合成的最后一步的关键酶。通过转基因方法在玉米中研究了CAD下调对木质素产生的影响。转基因CAD-RNAi植物显示出不同程度的酶促还原作用,具体取决于所分析的组织,并显示出细胞壁组成的变化。 CAD-RNAi茎的细胞壁包含木质素聚合物,S / G比率略有降低,而不会影响总木质素含量。另外,这些细胞壁积聚较高水平的纤维素和阿拉伯木聚糖。相反,CAD-RNAi中脉的细胞壁显示出总木质素含量和细胞壁多糖的减少。 体外降解性试验表明,尽管抑制程度不同,但由CAD活性抑制引起的变化产生的中脉和茎比野生型植物更易降解。在田间生长的CAD-RNAi植物表现出野生型的表型,并产生更多的干燥生物量。纤维素生物乙醇测定表明,与野生型相比,CAD-RNAi生物质产生的乙醇含量更高,这使CAD成为改善玉米木质纤维素生物质营养和能量价值的良好靶标

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