School of Horticulture and Plant Protection, Yangzhou University, Yangzhou 225009, China.
College of Guangling, Yangzhou University, Yangzhou 225009, China.
Int J Mol Sci. 2022 Feb 18;23(4):2250. doi: 10.3390/ijms23042250.
Adventitious roots (ARs) have an unmatched status in plant growth and metabolism due to the degeneration of primary roots in lotuses. In the present study, we sought to assess the effect of sucrose on ARs formation and observed that lignin synthesis was involved in ARs development. We found that the lignification degree of the ARs primordium was weaker in plants treated with 20 g/L sucrose than in 50 g/L sucrose treatment and control plants. The contents of lignin were lower in plants treated with 20 g/L sucrose and higher in plants treated with 50 g/L sucrose. The precursors of monomer lignin, including p-coumaric acid, caffeate, sinapinal aldehyde, and ferulic acid, were lower in the GL50 library than in the GL20 library. Further analysis revealed that the gene expression of these four metabolites had no novel difference in the GL50/GL20 libraries. However, a laccase17 gene (), involved in polymer lignin synthesis, had a higher expression in the GL50 library than in the GL20 library. Therefore, was cloned and the overexpression of was found to directly result in a decrease in the root number in transgenic plants. These findings suggest that lignin synthesis is probably involved in ARs formation in lotus seedlings.
不定根(ARs)在植物生长和代谢中具有独特的地位,因为荷花的主根退化。在本研究中,我们试图评估蔗糖对 ARs 形成的影响,观察到木质素合成参与了 ARs 的发育。我们发现,在 20 g/L 蔗糖处理的植物中,ARs 原基的木质化程度比在 50 g/L 蔗糖处理和对照植物中弱。木质素含量在 20 g/L 蔗糖处理的植物中较低,在 50 g/L 蔗糖处理的植物中较高。单体木质素的前体,包括对香豆酸、咖啡酸、芥子醛和阿魏酸,在 GL50 文库中低于 GL20 文库。进一步分析表明,这四种代谢物的基因表达在 GL50/GL20 文库中没有新的差异。然而,一个漆酶 17 基因(),参与聚合物木质素的合成,在 GL50 文库中的表达高于 GL20 文库。因此,克隆了,并发现的过表达直接导致转基因 植物的根数量减少。这些发现表明木质素合成可能参与了荷花幼苗不定根的形成。