Li Yi-Qin, Mareck Alain, Faleri Claudia, Moscatelli Alessandra, Liu Qiang, Cresti Mauro
Department of Biological Sciences and Biotechnology, Tsinghua University, 100084 Beijing, China.
Planta. 2002 Mar;214(5):734-40. doi: 10.1007/s004250100664. Epub 2001 Oct 26.
Pectin methylesterases (PMEs) were detected in tobacco ( Nicotiana tabacum) pollen tubes grown in vitro. Seven PME isoforms exhibiting a wide isoelectric-point (pI) range (5.3-9.1) were found in crude extracts of pollen tubes. These isoforms were mainly retrieved in supernatants after low- and high-speed separation of the crude extract. Two isoforms, with pIs 5.5 and 7.3 and molecular weight about 158 kDa, were detected by immunoblotting with anti-flax PME antiserum. Localization of pectins and PME isoforms in pollen tubes was investigated by immunogold labelling with JIM5 monoclonal antibodies and anti-flax PME antiserum, respectively. In germinated pollen grains, two PME isoforms were mainly detected in the exine, Golgi apparatus and secretory vesicles. In pollen tubes the same two PME isoforms were distributed along the outer face of the plasma membrane in the vicinity of the inner layer of the cell wall, in the Golgi and around secretory vesicles. In pollen grains, PME isoforms were, in some cases, mixed with acidic pectins in proximity to the outer surface of the plasma membrane. In pollen tubes the presence of PMEs inside secretory vesicles carrying esterified pectins supports the hypothesis that, during pollen tube growth, PMEs could be transferred by secretory vesicles in a precursor form and be activated at the tip where exocytosis takes place.
在体外培养的烟草(Nicotiana tabacum)花粉管中检测到了果胶甲酯酶(PMEs)。在花粉管的粗提物中发现了七种PME同工型,其等电点(pI)范围较宽(5.3 - 9.1)。这些同工型主要在粗提物经过低速和高速分离后的上清液中获得。用抗亚麻PME抗血清进行免疫印迹检测到两种同工型,其pI分别为5.5和7.3,分子量约为158 kDa。分别用JIM5单克隆抗体和抗亚麻PME抗血清通过免疫金标记研究了花粉管中果胶和PME同工型的定位。在萌发的花粉粒中,两种PME同工型主要在花粉外壁、高尔基体和分泌小泡中检测到。在花粉管中,同样的两种PME同工型沿着质膜的外表面分布在细胞壁内层附近、高尔基体中以及分泌小泡周围。在花粉粒中,在某些情况下,PME同工型在质膜外表面附近与酸性果胶混合。在花粉管中,携带酯化果胶的分泌小泡内部存在PMEs,这支持了一个假说,即在花粉管生长过程中,PMEs可能以前体形式通过分泌小泡转运,并在发生胞吐作用的顶端被激活。