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Modified lignification in the cell walls of CAD depressed poplars.

机译:CAD凹陷杨树细胞壁中的木质素改性。

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Ultraviolet microscopic spectrophotometry was used to investigate lignification in the secondary cell walls of wood fibres and vessel elements from either wild type or transgenic poplars (Populus tremula x Populus alba) with depressed activity of cinnamyl alcohol dehydrogenase (CAD). A distinct shoulder at 330 nm was characteristic of the transgenic poplar. Measurements performed after (1) a mild alkali treatment or (2) a reduction with sodium borohydride indicated that this shoulder merely resulted from the occurrence of conjugated carbonyl groups in the lignin polymer rather than alkali-soluble cell wall bound phenolic aldehydes. UV absorbance ratios (A330/A280) measured in the centre of secondary walls in the differentiating xylem clearly showed that the structural changes observed in the lignin polymer of transgenic trees occurred very early during lignin deposition. This suggests that, in poplar trees with low CAD activity, cinnamaldehydes are incorporated into lignin even at the early stages of lignification.
机译:紫外分光光度法用于研究野生型或转基因杨树(Populus tremula x Populus alba)的木纤维和脉管元件的二次细胞壁中的木质素木质素化,其中肉桂醇脱氢酶(CAD)的活性降低。转基因杨树的特征是在330 nm处有明显的肩部。 (1)轻度碱处理或(2)硼氢化钠还原后进行的测量表明,该肩峰仅是由于木质素聚合物中共轭羰基的出现而不是碱溶性细胞壁结合的酚醛引起的。在分化木质部的次生壁中心测得的紫外线吸收率(A330 / A280)清楚地表明,在木质素沉积过程中,转基因树木质素聚合物中观察到的结构变化非常早发生。这表明,在具有低CAD活性的杨树中,即使在木质化的早期阶段,肉桂醛也被掺入木质素中。

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