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Expression of a bacterial, phenylpropanoid-metabolizing enzyme in tobacco reveals essential roles of phenolic precursors in normal leaf development and growth

机译:烟草中一种细菌,苯丙氨酸代谢酶的表达揭示了酚类前体在正常叶片发育和生长中的重要作用

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Tobacco plants (Nicotiana tabacum cv XHFD 8) were genetically modified to express a bacterial 4-hydroxycinnamoyl-CoA hydratase/lyase (HCHL) enzyme which is active with intermediates of the phenylpropanoid pathway. We have previously shown that HCHL expression in tobacco stem resulted in various pleiotropic effects, indicative of a reduction in the carbon flux through the phenylpropanoid pathway, accompanied by an abnormal phenotype. Here, we report that in addition to the reduction in lignin and phenolic biosynthesis, HCHL expression also resulted in several gross morphological changes in poorly lignified tissue, such as abnormal mesophyll and palisade. The effect of HCHL expression was also noted in lignin-free single cells, with suspension cultures displaying an altered shape and different growth patterns. Poorlyon-lignified cell walls also exhibited a greater ease of alkaline extractability of simple phenolics and increased levels of incorporation of vanillin and vanillic acid. However, HCHL expression had no significant effect on the cell wall carbohydrate chemistry of these tissues. Evidence from this study suggests that changes in the transgenic lines result from a reduction in phenolic intermediates which have an essential role in maintaining structural integrity of low-lignin or lignin-deprived cell walls. These results emphasize the importance of the intermediates and products of phenylpropanoid pathway in modulating aspects of normal growth and development of tobacco. Analysis of these transgenic plants also shows the plasticity of the lignification process and reveals the potential to bioengineer plants with reduced phenolics (without deleterious effects) which could enhance the bioconversion of lignocellulose for industrial applications.
机译:对烟草植物(Nicotiana tabacum cv XHFD 8)进行基因修饰,以表达一种细菌4-羟基肉桂酰辅酶A水合酶/裂解酶(HCHL)酶,该酶与苯丙烷途径的中间体有活性。先前我们已经表明,烟梗中的HCHL表达导致多种多效作用,表明通过苯丙烷途径的碳通量减少,并伴有异常表型。在这里,我们报道,除了木质素和酚类生物合成的减少外,HCHL表达还导致木质化较差的组织发生了一些总体形态变化,例如异常的叶肉和木栅。在不含木质素的单细胞中也注意到了HCHL表达的影响,悬浮培养物显示出改变的形状和不同的生长方式。不良/未木质化的细胞壁还表现出更简单的简单酚类碱性提取能力,以及香草醛和香草酸的掺入水平提高。但是,HCHL表达对这些组织的细胞壁碳水化合物化学没有显着影响。这项研究的证据表明,转基因品系的变化是由于酚类中间体的减少而引起的,而酚类中间体在维持低木质素或木质素缺失的细胞壁的结构完整性中起着至关重要的作用。这些结果强调了苯丙烷途径的中间体和产物在调节烟草正常生长和发育方面的重要性。对这些转基因植物的分析还显示了木质化过程的可塑性,并揭示了酚醛含量降低(无有害影响)的生物工程植物的潜力,这可以提高木质纤维素在工业应用中的生物转化率。

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