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Phenolic Compounds and Expression of 4CL Genes in Silver Birch Clones and Pt4CL1a Lines

机译:桦树无性系和Pt4CL1a品系中的酚类化合物和4CL基因的表达

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摘要

A small multigene family encodes 4-coumarate:CoA ligases (4CLs) catalyzing the CoA ligation of hydroxycinnamic acids, a branch point step directing metabolites to a flavonoid or monolignol pathway. In the present study, we examined the effect of antisense Populus tremuloides 4CL (Pt4CL1) to the lignin and soluble phenolic compound composition of silver birch (Betula pendula) Pt4CL1a lines in comparison with non-transgenic silver birch clones. The endogenous expression of silver birch 4CL genes was recorded in the stems and leaves and also in leaves that were mechanically injured. In one of the transgenic Pt4CL1a lines, the ratio of syringyl (S) and guaiacyl (G) lignin units was increased. Moreover, the transcript levels of putative silver birch 4CL gene (Bp4CL1) were reduced and contents of cinnamic acid derivatives altered. In the other two Pt4CL1a lines changes were detected in the level of individual phenolic compounds. However, considerable variation was found in the transcript levels of silver birch 4CLs as well as in the concentration of phenolic compounds among the transgenic lines and non-transgenic clones. Wounding induced the expression of Bp4CL1 and Bp4CL2 in leaves in all clones and transgenic lines, whereas the transcript levels of Bp4CL3 and Bp4CL4 remained unchanged. Moreover, minor changes were detected in the concentrations of phenolic compounds caused by wounding. As an overall trend the wounding decreased the flavonoid content in silver birches and increased the content of soluble condensed tannins. The results indicate that by reducing the Bp4CL1 transcript levels lignin composition could be modified. However, the alterations found among the Pt4CL1a lines and the non-transgenic clones were within the natural variation of silver birches, as shown in the present study by the clonal differences in the transcripts levels of 4CL genes, soluble phenolic compounds and condensed tannins.
机译:一个小的多基因家族编码4-香豆酸酯:CoA连接酶(4CL),催化羟基肉桂酸的CoA连接,这是将代谢产物引导至类黄酮或单木质醇途径的分支点步骤。在本研究中,我们与非转基因白桦树无性系相比,研究了反义胡杨4CL(Pt4CL1)对白桦(Betula pendula)Pt4CL1a系木质素和可溶性酚类化合物组成的影响。桦树4CL基因的内源表达被记录在茎和叶中,以及在机械损伤的叶子中。在一种转基因Pt4CL1a系中,丁香基(S)和愈创木基(G)木质素单位的比例增加。此外,推定的桦木4CL基因(Bp4CL1)的转录水平降低,肉桂酸衍生物的含量发生了变化。在其他两个Pt4CL1a品系中,检测到单个酚类化合物的含量发生了变化。但是,在转基因品系和非转基因克隆中,桦木4CLs的转录水平以及酚类化合物的浓度均存在相当大的差异。伤口诱导所有克隆和转基因品系叶片中Bp4CL1和Bp4CL2的表达,而Bp4CL3和Bp4CL4的转录水平保持不变。此外,检测到由伤口引起的酚类化合物浓度的微小变化。从总体上看,伤口减少了白桦树中的类黄酮含量,并增加了可溶性缩合单宁的含量。结果表明,通过降低Bp4CL1转录水平,可以修饰木质素组成。但是,Pt4CL1a系和非转基因克隆之间发现的改变是在白桦树的自然变异范围内,正如本研究通过4CL基因,可溶性酚类化合物和缩合单宁的转录水平的克隆差异所显示的。

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