Aloisi Iris, Cai Giampiero, Faleri Claudia, Navazio Lorella, Serafini-Fracassini Donatella, Del Duca Stefano
Department of Biological, Geological and Environmental Sciences, University of Bologna, Bologna, Italy.
Department of Life Sciences, University of Siena, Siena, Italy.
Front Plant Sci. 2017 Sep 29;8:1701. doi: 10.3389/fpls.2017.01701. eCollection 2017.
Proper growth of the pollen tube depends on an elaborate mechanism that integrates several molecular and cytological sub-processes and ensures a cell shape adapted to the transport of gametes. This growth mechanism is controlled by several molecules among which cytoplasmic and apoplastic polyamines. Spermine (Spm) has been correlated with various physiological processes in pollen, including structuring of the cell wall and modulation of protein (mainly cytoskeletal) assembly. In this work, the effects of Spm on the growth of pear pollen tubes were analyzed. When exogenous Spm (100 μM) was supplied to germinating pollen, it temporarily blocked tube growth, followed by the induction of apical swelling. This reshaping of the pollen tube was maintained also after growth recovery, leading to a 30-40% increase of tube diameter. Apical swelling was also accompanied by a transient increase in cytosolic calcium concentration and alteration of pH values, which were the likely cause for major reorganization of actin filaments and cytoplasmic organelle movement. Morphological alterations of the apical and subapical region also involved changes in the deposition of pectin, cellulose, and callose in the cell wall. Thus, results point to the involvement of Spm in cell wall construction as well as cytoskeleton organization during pear pollen tube growth.
花粉管的正常生长依赖于一种复杂的机制,该机制整合了多个分子和细胞学子过程,并确保细胞形状适应配子的运输。这种生长机制受多种分子控制,其中包括细胞质和质外体多胺。精胺(Spm)与花粉中的各种生理过程相关,包括细胞壁的构建和蛋白质(主要是细胞骨架)组装的调节。在这项研究中,分析了Spm对梨花粉管生长的影响。当向萌发的花粉供应外源Spm(100μM)时,它会暂时阻断花粉管生长,随后诱导顶端肿胀。即使在生长恢复后,花粉管的这种重塑也会持续,导致管径增加30 - 40%。顶端肿胀还伴随着胞质钙浓度的短暂增加和pH值的改变,这可能是肌动蛋白丝和细胞质细胞器运动发生重大重组的原因。顶端和亚顶端区域的形态改变还涉及细胞壁中果胶、纤维素和胼胝质沉积的变化。因此,结果表明Spm参与了梨花粉管生长过程中的细胞壁构建以及细胞骨架组织。