The Graduate School of Biological Sciences, Nara Institute of Science and Technology, Ikoma, Nara, Japan.
J Plant Res. 2013 May;126(3):387-94. doi: 10.1007/s10265-012-0528-0. Epub 2012 Oct 18.
Angiosperms have a unique sexual reproduction system called "double fertilization." One sperm cell fertilizes the egg and another sperm cell fertilizes the central cell. To date, plant gamete membrane dynamics during fertilization has been poorly understood. To analyze this unrevealed gamete subcellular behavior, live cell imaging analyses of Arabidopsis double fertilization were performed. We produced female gamete membrane marker lines in which fluorescent proteins conjugated with PIP2a finely visualized egg cell and central cell surfaces. Using those lines together with a sperm cell membrane marker line expressing GCS1-GFP, the double fertilization process was observed. As a result, after gamete fusion, putative sperm plasma membrane GFP signals were occasionally detected on the egg cell surface adjacent to the central cell. In addition, time-lapse imaging revealed that GCS1-GFP signals entered both the egg cell and the central cell in parallel with the sperm cell movement toward the female gametes during double fertilization. These findings suggested that the gamete fusion process based on membrane dynamics was composed of (1) plasma membrane fusion on male and female gamete surfaces, (2) entry of sperm internal membrane components into the female gametes, and (3) plasmogamy.
被子植物具有独特的有性生殖系统,称为“双受精”。一个精子细胞使卵子受精,另一个精子细胞使中央细胞受精。迄今为止,植物配子膜在受精过程中的动态变化还知之甚少。为了分析这种未揭示的配子亚细胞行为,对拟南芥双受精进行了活细胞成像分析。我们制作了雌性配子膜标记系,其中与 PIP2a 缀合的荧光蛋白精细地可视化了卵细胞和中央细胞表面。使用这些系与表达 GCS1-GFP 的精子细胞膜标记系一起,观察了双受精过程。结果,在配子融合后,在与中央细胞相邻的卵细胞表面上偶尔会检测到假定的精子质膜 GFP 信号。此外,延时成像显示,在双受精过程中,随着精子向雌性配子的运动,GCS1-GFP 信号与精子一起平行进入卵细胞和中央细胞。这些发现表明,基于膜动力学的配子融合过程由(1)雄性和雌性配子表面的质膜融合,(2)精子内膜成分进入雌性配子,以及(3)胞质融合组成。