Lenartowski Robert, Suwińska Anna, Lenartowska Marta
Laboratory of Isotope and Instrumental Analysis, Faculty of Biology and Environment Protection, Nicolaus Copernicus University, Toruń, Poland,
Planta. 2015 Jan;241(1):209-27. doi: 10.1007/s00425-014-2178-z. Epub 2014 Sep 28.
Calcium (Ca(2+)) plays essential roles in plant sexual reproduction, but the sites and the mechanism of Ca(2+) mobile storage during pollen-pistil interactions have not been fully defined. Because the Ca(2+)-buffering protein calreticulin (CRT) is able to bind and sequester Ca(2+), it can serve as a mobile intracellular store of easily releasable Ca(2+) and control its local concentration within the cytoplasm. Our previous studies showed an enhanced expression of Petunia hybrida CRT gene (PhCRT) during pistil transmitting tract maturation, pollen germination and tube outgrowth on the stigma, gamete fusion, and early embryogenesis. Here, we demonstrate that elevated expression of CRT results in the accumulation of this protein in response to anthesis, pollination, sperm cells deposition within the receptive synergid and fertilization, when the level of exchangeable Ca(2+) changes dynamically. CRT localizes mainly to the endoplasmic reticulum and Golgi compartments in the pistil transmitting tract cells, germinated pollen/tubes, and sporophytic/gametophytic cells of the ovule and corresponds with loosely bound Ca(2+). Additionally, the immunogold research shows, for the first time, highly selective CRT distribution in specific nuclear sub-domains. On the basis of our results, we discuss the possible functions of CRT with respect to the critical role of Ca(2+) homeostasis during key events of the multi-step process of generative reproduction in angiosperms.
钙(Ca(2+))在植物有性生殖中发挥着重要作用,但在花粉与雌蕊相互作用过程中Ca(2+)移动储存的位点和机制尚未完全明确。由于钙缓冲蛋白钙网蛋白(CRT)能够结合并螯合Ca(2+),它可以作为易于释放的Ca(2+)的移动性细胞内储存库,并控制其在细胞质中的局部浓度。我们之前的研究表明,矮牵牛CRT基因(PhCRT)在雌蕊传递组织成熟、花粉萌发和柱头管生长、配子融合以及早期胚胎发生过程中表达增强。在这里,我们证明,当可交换Ca(2+)水平动态变化时,CRT表达升高会导致该蛋白在花期、授粉、精子细胞沉积于受精的助细胞内以及受精过程中积累。CRT主要定位于雌蕊传递组织细胞、萌发的花粉/花粉管以及胚珠的孢子体/配子体细胞中的内质网和高尔基体区室,并且与松散结合的Ca(2+)相对应。此外,免疫金研究首次表明CRT在特定核亚域中具有高度选择性分布。基于我们的研究结果,我们讨论了CRT在被子植物有性生殖多步骤过程关键事件中Ca(2+)稳态的关键作用方面的可能功能。