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Syringyl-Rich Lignin Renders Poplars More Resistant to Degradation by Wood Decay Fungi

机译:富丁香基木质素使白杨树更耐木材腐烂真菌的降解

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摘要

In order to elucidate the effects of lignin composition on the resistance of wood to degradation by decay fungi, wood specimens from two transgenic poplar lines expressing an Arabidopsis gene encoding ferulate 5-hydroxylase (F5H) driven by the cinnimate-4-hydroxylase promoter (C4H::F5H) that increased syringyl/guaiacyl (S/G) monolignol ratios relative to those in the untransformed control wood were incubated with six different wood decay fungi. Alterations in wood weight and chemical composition were monitored over the incubation period. The results showed that transgenic poplar lines extremely rich in syringyl lignin exhibited a drastically improved resistance to degradation by all decay fungi evaluated. Lignin monomer composition and its distribution among cell types and within different cell layers were the sole wood chemistry parameters determining wood durability. Since transgenic poplars with exceedingly high syringyl contents were recalcitrant to degradation, where wood durability is a critical factor, these genotypes may offer improved performance.
机译:为了阐明木质素组成对木材抵抗腐烂真菌降解的抗性的影响,来自两个转基因杨树品系的木材标本表达了由肉桂酸4-羟化酶启动子(C4H)驱动的编码阿魏酸5-羟化酶(F5H)的拟南芥基因。相对于未转化的对照木材中丁香烯基/愈创木脂基(S / G)单木香精比例提高的::: F5H)与六种不同的木材腐烂真菌孵育。在培养期间监测木材重量和化学组成的变化。结果表明,通过评估所有腐烂真菌,极其富含丁香基木质素的转基因杨树品系显示出显着提高的抗降解性。木质素单体组成及其在细胞类型之间和不同细胞层内的分布是决定木材耐久性的唯一木材化学参数。由于具有极高的丁香基含量的转基因杨树难以降解,而木材的耐用性是关键因素,因此这些基因型可提供更好的性能。

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