Division of Bioscience, Graduate School of Natural Science and Technology, Okayama University Okayama, Japan.
Faculty of Pharmaceutical Sciences, Department of Analytical Chemistry, Josai University Sakado, Japan.
Front Plant Sci. 2014 Mar 14;5:94. doi: 10.3389/fpls.2014.00094. eCollection 2014.
Thermospermine, a structural isomer of spermine, is widely distributed in the plant kingdom and has been shown to play a role in repressing xylem differentiation by studies of its deficient mutant, acaulis5 (acl5), in Arabidopsis. Our results of microarray and real-time PCR analyses revealed that, in addition to a number of genes involved in xylem differentiation, genes related to auxin signaling were up-regulated in acl5 seedlings. These genes include MONOPTEROS, an auxin response factor gene, which acts as a master switch for auxin-dependent procambium formation, and its target genes. Their expression was reduced by exogenous treatment with thermospermine or by transgenic induction of the ACL5 gene. We examined the effect of synthetic polyamines on the expression of these auxin-related genes and on the vascular phenotype of acl5, and found that tetramines containing the NC3NC3N chain could mimic the effect of thermospermine but longer polyamines containing the same chain had little or no such effect. We also found that thermospermine had an inhibitory effect on lateral root formation in wild-type seedlings and it was mimicked by synthetic tetramines with the NC3NC3N chain. These results suggest the importance of the NC3NC3N chain of thermospermine in its action in modulating auxin signaling.
热亚精胺是精胺的结构异构体,广泛存在于植物界,其在拟南芥中的缺失突变体 acaulis5(acl5)的研究表明,它在抑制木质部分化中起作用。我们的微阵列和实时 PCR 分析结果表明,除了许多参与木质部分化的基因外,与生长素信号相关的基因在 acl5 幼苗中上调。这些基因包括 MONOPTEROS,它是一个生长素反应因子基因,作为生长素依赖性原形成层形成的主开关,及其靶基因。它们的表达在外源添加热亚精胺或通过 ACL5 基因的转基因诱导后降低。我们研究了合成多胺对这些生长素相关基因的表达和 acl5 血管表型的影响,发现含有 NC3NC3N 链的四胺可以模拟热亚精胺的作用,但含有相同链的更长多胺几乎没有或没有这种作用。我们还发现,热亚精胺对野生型幼苗侧根形成有抑制作用,其作用可以被含有 NC3NC3N 链的合成四胺模拟。这些结果表明热亚精胺的 NC3NC3N 链在调节生长素信号中的作用的重要性。