[The change of microtubule organization influencing cell ability for fusion].

Shi yan sheng wu xue bao Pub Date : 2005-08-01
Li Meng, Xiong Bo Peng, Meng Xiang Sun
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Abstract

It is well known that plants have ability to avoid polygamy in angiosperm, however, its mechanism is still poorly understood. In our previous work of in vitro fertilization we found that once an egg cell fused with a sperm cell, it could hardly fuse with other sperm within a certain period. Therefore we proposed that fusing egg cell must suffer some intrinsic changes during the fusion, such as the change of microtubule organization, which may prevent the egg cell from another fusion with extra sperm cells. In present work, the dynamic change of microtubule organization during the process of cell fusion in Nicotiana tabacum was observed through the single cell immunofluorescence microscopy. It was found that once cells began to adhere and fuse in Polyethylene Glycol (PEG), the microtubule immediately depolymerized. During this period of fusion and before microtubule polymerized again in the fusion product, the cell was unable to fuse with other cells. The results suggested microtubule organization was likely involved in the mechanisms of controlling cell fusion, and offered a clear indication that similar mechanism might also contribute to plant avoiding polygamy.

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[影响细胞融合能力的微管组织变化]。
众所周知,被子植物具有避免一夫多妻制的能力,但人们对其机理仍然知之甚少。我们在之前的体外受精研究中发现,卵细胞一旦与精细胞融合,在一定时期内很难再与其他精子融合。因此,我们提出,融合的卵细胞在融合过程中一定会发生一些内在的变化,如微管组织的变化,这可能会阻止卵细胞与其他精子细胞再次融合。本研究通过单细胞免疫荧光显微镜观察了烟草细胞融合过程中微管组织的动态变化。研究发现,一旦细胞开始在聚乙二醇(PEG)中粘附融合,微管就会立即解聚。在融合期间和融合产物中的微管再次聚合之前,细胞无法与其他细胞融合。结果表明,微管组织可能参与了细胞融合的控制机制,并清楚地表明,类似的机制也可能有助于植物避免一夫多妻制。
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