Nicolaus Copernicus University, Gagarina St. 9, PL 87-100 Torun, Poland.
J Plant Physiol. 2012 Nov 1;169(16):1578-85. doi: 10.1016/j.jplph.2012.05.025. Epub 2012 Jul 25.
Signaling pathways, and specifically the signaling pathway of calcium, have been widely implicated in the regulation of a variety of signals in plants. Calcium-dependent protein kinases (CDPKs) are essential sensor-transducers of calcium signaling pathways, the functional characterization of which is of great interest because they play important roles during growth and in response to a wide range of environmental and developmental stimuli. Here, we report the first evidence of transient and specific elevation of PnCDPK1 transcript level and enzyme activity following conversion of a leaf bud to a flower bud, as well as participation of PnCDPK1 in evocation and flower morphogenesis in Pharbitis nil. Fluorescence microscopy immunolocalization and biochemical analysis confirmed the presence of CDPK in shoot apexes. The protein level was low in leaves, vegetative apexes and increased significantly in apexes after a flowering long-induction night. In the vegetative apex, a very weak PnCDPK1 protein signal was accumulated prominently in the zone of the ground meristem and in external layers of tissues of the cortex. After the dark treatment, the signal in cells of the ground meristem was still present, but a significantly stronger signal appeared in epidermal cells, cortex tissue, and leaf primordium. At the onset of flower meristem development, the PnCDPK1 level diverged significantly. PnCDPK1 mRNA, protein level and enzyme activity were very low at the beginning of flower bud development and gradually increased in later stages, reaching the highest level in a fully open flower. Analysis of flower organs revealed that PnCDPK1 was accumulated mainly in petals and sepals rather than in pistils and stamens. Our results clearly indicate that PnCDPK1 is developmentally regulated and may be an important component in the signal transduction pathways for flower morphogenesis. Findings from this research are important for further dissecting mechanisms of flowering and functions of CDPKs in flowering plants.
信号通路,特别是钙信号通路,广泛参与植物中多种信号的调节。钙依赖蛋白激酶(CDPKs)是钙信号通路的重要传感器-转导器,其功能特征非常有趣,因为它们在生长过程中以及对广泛的环境和发育刺激的反应中发挥重要作用。在这里,我们首次报道了在将叶芽转化为花芽的过程中,PnCDPK1 转录本水平和酶活性的短暂和特异性升高的证据,以及 PnCDPK1 在白花丹的激发和花形态发生中的参与。荧光显微镜免疫定位和生化分析证实了 CDPK 在茎尖中的存在。在叶片、营养茎尖和经过长时间诱导开花的茎尖中,蛋白质水平较低。在营养茎尖中,PnCDPK1 蛋白信号非常微弱,在基生分生组织区和皮层外组织层中积累明显。在暗处理后,基生分生组织细胞中的信号仍然存在,但表皮细胞、皮层组织和叶原基中的信号明显增强。在花分生组织发育开始时,PnCDPK1 水平显著差异。在花芽发育的早期,PnCDPK1 mRNA、蛋白水平和酶活性非常低,在后期逐渐增加,在完全开放的花中达到最高水平。对花器官的分析表明,PnCDPK1 主要积累在花瓣和萼片中,而不是在雌蕊和雄蕊中。我们的结果清楚地表明,PnCDPK1 是发育调控的,可能是花形态发生信号转导途径的重要组成部分。这项研究的结果对于进一步剖析开花机制和 CDPK 在开花植物中的功能具有重要意义。