Záveská Drábková Lenka, Pokorná Eva, Dobrev Petre I, Kůrková Jana, Steinbachová Lenka, Honys David, Motyka Václav
Laboratory of Pollen Biology, Institute of Experimental Botany of the Czech Academy of Sciences, Prague, Czechia.
Laboratory of Hormonal Regulations in Plants, Institute of Experimental Botany of the Czech Academy of Sciences, Prague, Czechia.
Front Plant Sci. 2021 Oct 15;12:735451. doi: 10.3389/fpls.2021.735451. eCollection 2021.
Plant microgametogenesis involves stages leading to the progressive development of unicellular microspores into mature pollen. Despite the active and continuing interest in the study of male reproductive development, little is still known about the hormonomics at each ontogenetic stage. In this work, we characterized the profiles and dynamics of phytohormones during the process of microgametogenesis in four species (, , , and ). Taking advantage of advanced HPLC-ESI-MS/MS, twenty to thirty endogenous hormone derivatives were identified throughout pollen ontogenesis, including cytokinins, auxins, ABA and its derivatives, jasmonates, and phenolic compounds. The spectra of endogenous phytohormones changed dynamically during tobacco pollen ontogeny, indicating their important role in pollen growth and development. The different dynamics in the accumulation of endogenous phytohormones during pollen ontogenesis between (section ) and the other three species (section ) reflects their different phylogenetic positions and origin within the genus . We demonstrated the involvement of certain phytohormone forms, such as -zeatin- and methylthiol-type CKs, some derivatives of abscisic acid, phenylacetic and benzoic acids, in pollen development for the first time here. Our results suggest that unequal levels of endogenous hormones and the presence of specific derivatives may be characteristic for pollen development in different phylogenetic plant groups. These results represent the currently most comprehensive study of plant hormones during the process of pollen development.
植物小孢子发生包括一系列阶段,这些阶段导致单细胞小孢子逐步发育成成熟花粉。尽管对雄性生殖发育的研究一直保持着积极的兴趣,但对于每个个体发育阶段的激素组学仍知之甚少。在这项研究中,我们对四种植物(、、、和)小孢子发生过程中植物激素的概况和动态进行了表征。利用先进的高效液相色谱 - 电喷雾串联质谱技术(HPLC - ESI - MS/MS),在整个花粉发育过程中鉴定出二十到三十种内源激素衍生物,包括细胞分裂素、生长素、脱落酸及其衍生物、茉莉酸酯和酚类化合物。在烟草花粉发育过程中,内源植物激素的谱图动态变化,表明它们在花粉生长和发育中具有重要作用。(组)与其他三种植物(组)在花粉发育过程中内源植物激素积累的不同动态反映了它们在属内不同的系统发育位置和起源。我们首次证明了某些植物激素形式,如 - 玉米素 - 和甲硫醇型细胞分裂素、脱落酸的一些衍生物、苯乙酸和苯甲酸参与了花粉发育。我们的结果表明,内源激素水平的差异以及特定衍生物的存在可能是不同系统发育植物类群花粉发育的特征。这些结果代表了目前对花粉发育过程中植物激素最全面的研究。