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Stable Oil Bodies Sheltered by a Unique Oleosin in Lily Pollen

机译:百合花粉中独特油质蛋白所掩盖的稳定油体

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Stable oil bodies were purified from mature lily (Lilium longiflorum Thunb.) pollen. The integrity of pollen oil bodies was maintained via electronegative repulsion and steric hindrance possibly provided by their surface proteins. Immunodetection revealed that a major protein of 18 kDa was exclusively present in pollen oil bodies and massively accumulated in late stages of pollen maturation. According to mass spectrometric analyses, this oil body protein possessed a tryptic fragment of 13 residues matching that of a theoretical rice oleosin. A complete cDNA fragment encoding this putative oleosin was obtained by PCR cloning with primers derived from its known 13-residue sequence. Sequence analysis as well as immunological non-cross-reactivity suggests that this pollen oleosin represents a distinct class in comparison with oleosins found in seed oil bodies and tapetum. In pollen cells observed by electron microscopy, oil bodies were presumably surrounded by tubular membrane structures, and encapsulated in the vacuoles after germination. It seems that pollen oil bodies are mobilized via a different route from that of glyoxysomal mobilization of seed oil bodies after germination.
机译:从成熟的百合(Lilium longiflorum Thunb。)花粉中纯化出稳定的油体。花粉油体的完整性通过其表面蛋白可能提供的负电排斥和空间位阻来维持。免疫检测表明,一种18 kDa的主要蛋白质仅存在于花粉油体中,并在花粉成熟的后期大量积累。根据质谱分析,该油体蛋白具有13个残基的胰蛋白酶消化片段,与理论上的水稻油质蛋白匹配。通过使用来源于其已知的13个残基序列的引物进行PCR克隆,获得了编码该推定的油质蛋白的完整cDNA片段。序列分析以及免疫学非交叉反应性表明,与在种子油体和绒毡层中发现的油质蛋白相比,该花粉油质蛋白代表了不同的类别。通过电子显微镜观察到的花粉细胞中,油状体大概被管状膜结构包围,并在发芽后被包裹在液泡中。似乎发芽后花粉油体的移动途径与乙醛酸动员种子油体的途径不同。

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