首页> 美国卫生研究院文献>Plant Physiology >Structural Alterations of Lignins in Transgenic Poplars with Depressed Cinnamyl Alcohol Dehydrogenase or Caffeic Acid O-Methyltransferase Activity Have an Opposite Impact on the Efficiency of Industrial Kraft Pulping
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Structural Alterations of Lignins in Transgenic Poplars with Depressed Cinnamyl Alcohol Dehydrogenase or Caffeic Acid O-Methyltransferase Activity Have an Opposite Impact on the Efficiency of Industrial Kraft Pulping

机译:转基因杨树中木质素的结构变化。 沮丧的肉桂醇脱氢酶或咖啡因 酸 O-甲基转移酶活性相反 影响 工业牛皮纸制浆的效率

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摘要

We evaluated lignin profiles and pulping performances of 2-year-old transgenic poplar (Populus tremula × Populus alba) lines severely altered in the expression of caffeic acid/5-hydroxyferulic acid O-methyltransferase (COMT) or cinnamyl alcohol dehydrogenase (CAD). Transgenic poplars with CAD or COMT antisense constructs showed growth similar to control trees. CAD down-regulated poplars displayed a red coloration mainly in the outer xylem. A 90% lower COMT activity did not change lignin content but dramatically increased the frequency of guaiacyl units and resistant biphenyl linkages in lignin. This alteration severely lowered the efficiency of kraft pulping. The Klason lignin level of CAD-transformed poplars was slightly lower than that of the control. Whereas CAD down-regulation did not change the frequency of labile ether bonds or guaiacyl units in lignin, it increased the proportion of syringaldehyde and diarylpropane structures and, more importantly with regard to kraft pulping, of free phenolic groups in lignin. In the most depressed line, ASCAD21, a substantially higher content in free phenolic units facilitated lignin solubilization and fragmentation during kraft pulping. These results point the way to genetic modification of lignin structure to improve wood quality for the pulp industry.
机译:我们评估了2岁的转基因杨树(Populus tremula×Populus alba)品系中咖啡酸/ 5-羟基阿魏酸O-甲基转移酶(COMT)或肉桂醇脱氢酶(CAD)的表达严重改变的木质素特征和制浆性能。具有CAD或COMT反义构建体的转基因杨树显示出与对照树相似的生长。 CAD下调的杨树主要在木质部的外部显示红色。 COMT活性降低90%不会改变木质素含量,但会大大增加木质素中的愈创木基单元和抗性联苯键的频率。这种改变严重降低了牛皮纸制浆的效率。 CAD转化的杨树的Klason木质素水平略低于对照。尽管CAD下调并没有改变木质素中不稳定的醚键或愈创木基单元的频率,但它增加了丁二醛和二芳基丙烷结构的比例,更重要的是,在牛皮纸制浆中,游离酚的比例增加了 木质素中的基团。最令人沮丧的是ASCAD21, 游离酚单元中较高的含量促进了木质素的溶解 牛皮纸制浆过程中发生碎裂。这些结果为 木质素结构的基因修饰以提高木材的品质。 制浆业。

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