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首页> 外文期刊>Plant Physiology and Biochemistry >Sense-, antisense- and RNAi-4CL1 regulate soluble phenolic acids, cell wall components and growth in transgenic Populus tomentosa Carr.
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Sense-, antisense- and RNAi-4CL1 regulate soluble phenolic acids, cell wall components and growth in transgenic Populus tomentosa Carr.

机译:有义,反义和RNAi-4CL1调节可溶性毛酚酸,细胞壁成分以及转基因毛白杨的生长。

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摘要

Regulation of lignin biosynthesis affects plant growth and wood properties. Transgenic downregulation of 4-coumarate:coenzyme A ligase (4CL, EC 6.2.1.12) may reduce lignin content in cell walls, which could improve the qualities of pulp in papermaking and increase the efficiency of bioenergy applications. To determine the effects of Ptc4CL1 on lignin biosynthesis and plant growth, Populus tomentosa Carr. was transformed using sense-, antisense-, and RNAi-4CL1 genes. The growth properties, gene expression, enzyme activity, lignin content and composition and content of soluble phenolic acids were investigated in 1-year-old field-grown transgenic poplar trees. Transgenic up- and down-regulation of 4CL1 altered lignin content and composition in transgenic poplars, but there were no negative effects on the growth of transgenic plants. In addition, the severe changes in auxin observed in transgenic lines led to significantly enhanced growth performance. Furthermore, lignin content was tightly correlated with the alteration of 4CL1 enzymatic activity, which was correlated with 4CL1 gene expression. A significant increase in S units in lignin with a slight increase in sinapic acid was observed in 4CL1 down-regulated transgenic poplars. These results suggest that 4CL1 is a traffic control gene in monolignol biosynthesis and confirm that 4CL1 activity has been implicated with sinapoyl activation. Finally, our data demonstrate that there is cross-correlation among 4CL1 gene expression, 4CL1 enzyme activity, soluble phenolic acid, lignin monomer biosynthesis, and lignin content.
机译:木质素生物合成的调节影响植物的生长和木材特性。 4-香豆酸酯:辅酶A转基因的下调(4CL,EC 6.2.1.12)可能会降低细胞壁中木质素的含量,从而改善造纸中纸浆的质量并提高生物能源的利用效率。为了确定Ptc4CL1对木质素生物合成和植物生长的影响,毛白杨。使用有义,反义和RNAi-4CL1基因进行转化。研究了一年生田间种植的转基因杨树的生长特性,基因表达,酶活性,木质素含量以及可溶性酚酸的组成和含量。转基因4CL1的上调和下调改变了转基因杨树中木质素的含量和组成,但对转基因植物的生长没有负面影响。另外,在转基因品系中观察到的生长素的严重变化导致生长性能显着提高。此外,木质素含量与4CL1酶活性的变化紧密相关,而4CL1酶活性的变化与4CL1基因表达相关。在4CL1下调的转基因杨树中观察到木质素中的S单位显着增加,而芥子酸则略有增加。这些结果表明4CL1是monolignol生物合成中的交通控制基因,并证实了4CL1的活性与正芥子酰基的活化有关。最后,我们的数据表明4CL1基因表达,4CL1酶活性,可溶性酚酸,木质素单体生物合成和木质素含量之间存在互相关性。

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