New Zealand Institute for Plant and Food Research Limited, Private Bag 11600, Palmerston North, New Zealand.
Tree Physiol. 2010 Apr;30(4):514-26. doi: 10.1093/treephys/tpp130. Epub 2010 Feb 8.
Maturation or phase change is a serious challenge in the deployment of superior trees of Pinus radiata D. Don because of the difficulties associated with propagation of cuttings from mature trees. We used an in vitro system to study 6-benzyladenine (BA)-induced reinvigoration of the fascicle meristems of mature buds during in vitro culture. Anatomical examinations revealed that BA inhibited the development of secondary needle primordia and 'rejuvenated' the fascicle meristems of the mature bud to produce primary needles, which are characteristic of the juvenile phase in P. radiata. Without BA supplement in the culture media, fascicle primordia continued developing secondary needles and quiescent fascicle meristems. BA metabolite analysis showed that the novel cytokinin pathway reported previously in P. radiata (H. Zhang, K.J. Horgan, P.H.S. Reynolds, G.E. Norris and P.E. Jameson. 2001. Novel cytokinins: The predominant forms in mature buds of Pinus radiata. Physiol. Plant. 112: 127-134) was mirrored in vitro, with BA converted into a variety of metabolites including 6-benzylamino-9-glucopyranosylribosyl-purine and its novel phosphorylated form, 6-benzylamino-9-glucopyranosylribosyl-purine. The culture of mature buds in the presence of BA caused a reduction in the level of endogenous cytokinins, suggesting a direct action of BA itself. Similar correlations are noted between levels of certain metabolites and the maturation status of buds from field-grown trees and buds in culture, indicating that this in vitro system may be a good model for studying the processes of maturation and reinvigoration.
成熟或相变是在辐射松 D. 唐优秀树木部署中的一个严重挑战,因为从成熟树木繁殖插条存在困难。我们使用体外系统研究了 6-苄基腺嘌呤(BA)在体外培养过程中诱导成熟芽体束分生组织再生活力。解剖学检查表明,BA 抑制了次生针原基的发育,并使成熟芽体的束分生组织“返老还童”,产生了辐射松幼态的初生针。在培养基中没有 BA 补充的情况下,束原基继续发育次生针,束分生组织静止。BA 代谢产物分析表明,以前在辐射松中报道的新型细胞分裂素途径(H. Zhang,K.J. Horgan,P.H.S. Reynolds,G.E. Norris 和 P.E. Jameson. 2001. 新型细胞分裂素:辐射松成熟芽体中的主要形式。生理植物。112: 127-134)在体外得到了反映,BA 转化为多种代谢产物,包括 6-苄基氨基-9-葡糖苷基核糖嘌呤及其新型磷酸化形式 6-苄基氨基-9-葡糖苷基核糖嘌呤。在 BA 存在下培养成熟芽体导致内源细胞分裂素水平降低,表明 BA 本身具有直接作用。在田间生长的树木芽体和培养芽体中,某些代谢产物的水平与成熟状态之间存在相似的相关性,表明该体外系统可能是研究成熟和再活力过程的良好模型。