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Cells of the connective tissue differentiate and migrate into pollen sacs

机译:结缔组织的细胞分化并迁移到花粉囊中

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摘要

In angiosperms, archesporial cells in the anther primordium undergo meiosis to form haploid pollen, the sole occupants of anther sacs. Anther sacs are held together by a matrix of parenchyma cells, the connective tissue. Cells of the connective tissue are not known to differentiate. We report the differentiation of parenchyma cells in the connective tissue of two Gordonia species into pollen-like structures (described as pseudopollen), which migrate into the anther sacs before dehiscence. Pollen and pseudopollen were distinguishable by morphology and staining. Pollen were tricolpate to spherical while pseudopollen were less rigid and transparent with a ribbed surface. Both types were different in size, shape, staining and surface architecture. The ratio of the number of pseudopollen to pollen was 1:3. During ontogeny in the connective tissue, neither cell division nor tetrad formation was observed and hence pseudopollen were presumed to be diploid. Only normal pollen germinated on a germination medium. Fixed preparations in time seemed to indicate that pseudopollen migrate from the connective tissue into the anther sac.
机译:在被子植物中,花药原基中的原始孢子细胞经历减数分裂,形成单倍体花粉,即花药囊的唯一占有者。花药囊通过薄壁组织,结缔组织矩阵保持在一起。结缔组织的细胞不知道如何分化。我们报道了在两个戈登尼亚物种的结缔组织中的薄壁组织细胞分化为花粉样结构(称为假花粉),该结构在开裂之前迁移到花药囊中。花粉和假花粉可通过形态和染色区分。花粉是三足形的到球形,而假花粉的刚度和透明度较低,带有罗纹表面。两种类型在大小,形状,染色和表面结构上都不同。假花粉与花粉的比例为1:3。在结缔组织的个体发育过程中,未观察到细胞分裂或四联体形成,因此假花粉被推测为二倍体。仅普通花粉在发芽培养基上发芽。及时的固定准备似乎表明假花粉从结缔组织迁移到花药囊中。

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  • 来源
    《Naturwissenschaften》 |2002年第1期|39-42|共4页
  • 作者单位

    Plant Reproductive Biology Institute of Fundamental Studies Hantana Road;

    Plant Reproductive Biology Institute of Fundamental Studies Hantana Road;

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  • 正文语种 eng
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