Kollárová K, Zelko I, Henselová M, Capek P, Lišková D
Institute of Chemistry, Slovak Academy of Sciences, Dúbravská Cesta 9, 84538 Bratislava, Slovakia.
ScientificWorldJournal. 2012;2012:797815. doi: 10.1100/2012/797815. Epub 2012 May 22.
The effect of galactoglucomannan oligosaccharides (GGMOs) compared with chemically modified oligosaccharides, GGMOs-g (with reduced number of D-galactose side chains) and GGMOs-r (with reduced reducing ends) on mung bean (Vigna radiata (L.) Wilczek) adventitious roots formation, elongation, and anatomical structure have been studied. All types of oligosaccharides influenced adventitious root formation in the same way: stimulation in the absence of exogenous auxin and inhibition in the presence of exogenous auxin. Both reactions are probably related with the presence/content of endogenous auxin in plant cuttings. However, the adventitious root length was inhibited by GGMOs both in the absence as well as in the presence of auxin (IBA or NAA), while GGMOs-g inhibition was significantly weaker compared with GGMOs. GGMOs-r were without significant difference on both processes, compared with GGMOs. GGMOs affected not only the adventitious root length but also their anatomy in dependence on the combination with certain type of auxin. The oligosaccharides influenced cortical cells division, which was reflected in the cortex area and in the root diameter. All processes followed were dependent on oligosaccharides chemical structure. The results suggest also that GGM-derived oligosaccharides may play an important role in adventitious roots elongation but not in their formation.
研究了半乳葡甘露聚糖低聚糖(GGMOs)与化学修饰的低聚糖、GGMOs-g(D-半乳糖侧链数量减少)和GGMOs-r(还原端数量减少)对绿豆(Vigna radiata (L.) Wilczek)不定根形成、伸长及解剖结构的影响。所有类型的低聚糖对不定根形成的影响方式相同:在无外源生长素时起刺激作用,在有外源生长素时起抑制作用。这两种反应可能都与植物插条中内源生长素的存在/含量有关。然而,无论有无生长素(吲哚丁酸或萘乙酸),GGMOs均抑制不定根长度,而与GGMOs相比,GGMOs-g的抑制作用明显较弱。与GGMOs相比,GGMOs-r在这两个过程中无显著差异。GGMOs不仅影响不定根长度,还根据与特定类型生长素的组合影响其解剖结构。低聚糖影响皮层细胞分裂,这反映在皮层面积和根直径上。所有这些过程都取决于低聚糖的化学结构。结果还表明,源自半乳葡甘露聚糖的低聚糖可能在不定根伸长中起重要作用,但在其形成过程中不起作用。