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首页> 外文期刊>BMC Plant Biology >Flavonoid supplementation affects the expression of genes involved in cell wall formation and lignification metabolism and increases sugar content and saccharification in the fast-growing eucalyptus hybrid E. urophylla x E. grandis
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Flavonoid supplementation affects the expression of genes involved in cell wall formation and lignification metabolism and increases sugar content and saccharification in the fast-growing eucalyptus hybrid E. urophylla x E. grandis

机译:类黄酮的添加会影响与细胞壁形成和木质素代谢有关的基因的表达,并增加快速生长的桉树杂种E. urophylla x E. grandis的糖含量和糖化作用。

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摘要

Background Eucalyptus species are the most widely planted hardwood species in the world and are renowned for their rapid growth and adaptability. In Brazil, one of the most widely grown Eucalyptus cultivars is the fast-growing Eucalyptus urophylla x Eucalyptus grandis hybrid . In a previous study, we described a chemical characterization of these hybrids when subjected to flavonoid supplementation on 2 distinct timetables, and our results revealed marked differences between the wood composition of the treated and untreated trees. Results In this work, we report the transcriptional responses occurring in these trees that may be related to the observed chemical differences. Gene expression was analysed through mRNA-sequencing, and notably, compared to control trees, the treated trees display differential down-regulation of cell wall formation pathways such as phenylpropanoid metabolism as well as differential expression of genes involved in sucrose, starch and minor CHO metabolism and genes that play a role in several stress and environmental responses. We also performed enzymatic hydrolysis of wood samples from the different treatments, and the results indicated higher sugar contents and glucose yields in the flavonoid-treated plants. Conclusions Our results further illustrate the potential use of flavonoids as a nutritional complement for modifying Eucalyptus wood, since, supplementation with flavonoids alters its chemical composition, gene expression and increases saccharification probably as part of a stress response.
机译:背景桉树种是世界上种植最广泛的硬木树种,并以其快速生长和适应性而闻名。在巴西,生长最迅速的桉树品种之一是快速生长的尾桉(Eucalyptus urophylla x桉树)。在先前的研究中,我们描述了在2个不同的时间表上进行类黄酮补充时这些杂种的化学特征,我们的结果表明,处理过的树木和未处理过的树木的木材成分之间存在明显差异。结果在这项工作中,我们报告了这些树木中发生的转录反应,这可能与观察到的化学差异有关。通过mRNA测序分析基因表达,值得注意的是,与对照树相比,处理过的树显示出细胞壁形成途径的差异性下调,如苯丙烷代谢以及涉及蔗糖,淀粉和少量CHO代谢的基因的差异表达。以及在多种压力和环境反应中起作用的基因。我们还对来自不同处理方法的木材样品进行了酶水解,结果表明在类黄酮处理过的植物中糖含量和葡萄糖产量更高。结论我们的结果进一步说明了黄酮类化合物作为营养补充剂可用于修饰桉木,因为补充黄酮类化合物会改变其化学组成,基因表达并增加糖化作用,这可能是应激反应的一部分。

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