首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Are obligatory apomicts invested in the pollen tube transmitting tissue? Comparison of the micropyle ultrastructure between sexual and apomictic dandelions (Asteraceae, Lactuceae)
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Are obligatory apomicts invested in the pollen tube transmitting tissue? Comparison of the micropyle ultrastructure between sexual and apomictic dandelions (Asteraceae, Lactuceae)

机译:是否在花粉管传播组织上投资了必需的无融合生殖细胞?有性和无融合生殖的蒲公英(菊科,乳杆菌)的超微结构比较

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摘要

With the exception of the sunflower, little information concerning the micropyle ultrastructure of the family Asteraceae is available. The aim of our study was to compare the micropyle structure in amphimictic and apomictic dandelions. Ultrastructural studies using buds and flowers during anthesis have been done on the micropyle of the sexual and apomictic Taraxacum. In all of the species that were examined, the micropylar canal was completely filled with ovule transmitting tissue and the matrix that was produced by these cells. The ovule transmitting tissue was connected to the ovarian transmitting tissue. The micropyle was asymmetrical because the integument epidermis that forms the transmitting tissue was only on the funicular side. There was a cuticle between the obturator cells and epidermal cells on the other side of integument. The micropylar transmitting tissue cells and theirs matrix reached the synergid apex. The cytoplasm of the transmitting tissue cells was especially rich in rough endoplasmic reticulum (ER), dictyosomes, and mitochondria. No major differences were detected between the micropyle structure of the amphimictic and apomictic species; thus, a structural reduction of obturator does not exist. The ovule transmitting tissue is still active in apomictic dandelions despite the presence of the embryo and endosperm. Differences and similarities between the micropyle structure in the Asteraceae that have been studied to date are discussed.
机译:除向日葵外,鲜有关于菊科的超微结构的信息。我们研究的目的是比较两性和无融合的蒲公英中的微粒结构。在有性和无融合生的蒲公英上,在花期进行了使用芽和花的超微结构研究。在所有检查过的物种中,小珠孔管完全充满了胚珠传输组织和由这些细胞产生的基质。胚珠传输组织连接到卵巢传输组织。由于形成传递组织的被膜表皮仅在缆索侧,所以该微粒是不对称的。在被膜的另一侧,闭孔细胞和表皮细胞之间存在角质层。毛孔传导组织细胞及其基质达到了协同增生的顶点。传输组织细胞的细胞质尤其富含粗糙的内质网(ER),单核小体和线粒体。在两性和无融合生殖物种的微小结构之间未发现主要差异。因此,不存在闭塞器的结构缩小。尽管存在胚和胚乳,但胚珠传递组织在无融合生殖的蒲公英中仍然活跃。讨论了迄今为止已研究的菊科中的微孔结构之间的异同。

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