Tarkowská Danuše, Novák Ondřej, Floková Kristýna, Tarkowski Petr, Turečková Veronika, Grúz Jiří, Rolčík Jakub, Strnad Miroslav
Laboratory of Growth Regulators, Centre of the Region Haná for Biotechnological and Agricultural Research, Institute of Experimental Botany ASCR and Palacký University, Šlechtitelů 11, 783 71, Olomouc, Czech Republic,
Planta. 2014 Jul;240(1):55-76. doi: 10.1007/s00425-014-2063-9. Epub 2014 Mar 28.
Plant hormones act as chemical messengers in the regulation of myriads of physiological processes that occur in plants. To date, nine groups of plant hormones have been identified and more will probably be discovered. Furthermore, members of each group may participate in the regulation of physiological responses in planta both alone and in concert with members of either the same group or other groups. The ideal way to study biochemical processes involving these signalling molecules is 'hormone profiling', i.e. quantification of not only the hormones themselves, but also their biosynthetic precursors and metabolites in plant tissues. However, this is highly challenging since trace amounts of all of these substances are present in highly complex plant matrices. Here, we review advances, current trends and future perspectives in the analysis of all currently known plant hormones and the associated problems of extracting them from plant tissues and separating them from the numerous potentially interfering compounds.
植物激素在调节植物中发生的无数生理过程时充当化学信使。迄今为止,已鉴定出九类植物激素,可能还会发现更多。此外,每组激素的成员都可能单独或与同一组或其他组的成员协同参与植物体内生理反应的调节。研究涉及这些信号分子的生化过程的理想方法是“激素谱分析”,即不仅要对植物组织中的激素本身进行定量,还要对其生物合成前体和代谢物进行定量。然而,这极具挑战性,因为所有这些物质的痕量存在于高度复杂的植物基质中。在这里,我们综述了目前已知的所有植物激素分析方面的进展、当前趋势和未来展望,以及从植物组织中提取它们并将它们与众多潜在干扰化合物分离的相关问题。