首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Heteromorphism of stamens in monoclinous flowers ofTinantia erecta(Jacq.) Fenzl as an example of high variability of the androecium in the Commelinaceae family
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Heteromorphism of stamens in monoclinous flowers ofTinantia erecta(Jacq.) Fenzl as an example of high variability of the androecium in the Commelinaceae family

机译:单层花雄蕊雄蕊(JACQ。)Fentl作为曼迪尼亚群岛和甲焦的高可变异的例子

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摘要

Representatives of the family Commelinaceae are characterised by morphologically, anatomically, or functionally diverse stamens (common presence of staminodia), which produce diverse pollen grains. The heteromorphism of stamens noted in all Commelinaceae species is a particular example of the evolutionary modification of the androecium in entomophilous plants. The morphological, anatomical, and cytological analyses of the androecium as well as the analysis of the microsporogenesis process and the formation of the male gametophyte inTinantia erecta(a species belonging to the family Commelinaceae) have demonstrated that the morphologically diverse stamens in this species do not differ anatomically. Furthermore, the process of microsporogenesis followed by gametogenesis occurring in the stamens yields pollen grains with the same morphology, cytology, and function. Therefore, despite the large morphological diversity of the androecium, all anthers inT. erectaproduce male gametophytes that are identical in every respect, which is a unique feature in species from the Commelinaceae family. Additionally,T. erectais capable of self-pollination; hence, it can be claimed that the species uses its entire reproductive potential to produce seeds and a next generation.
机译:Commelinaceae家族的代表以形态学上,解剖学,或功能多样化的雄蕊(常见存在的雄蕊),其产生多样化的花粉颗粒。所有致癌物种中所述的雄蕊的异常形态是虫害植物中的Androecium进化改性的特定实例。 AndroeCium的形态学,解剖学和细胞学分析以及微孢子发生过程的分析及雄性孢粉细胞肌肌的形成(属于Commelinaceae的一个物种)表明,该物种的形态多样化的雄蕊不会解剖学差异。此外,雄蕊中发生的微孢子发生过程,其次发生在雄蕊中产生具有相同形态,细胞学和功能的花粉颗粒。因此,尽管AndroeCium的形态多样化了,但所有的花药int。 erectaproduce在各方面相同的雄性配子体,这是来自Commelinaceae家族的物种的独特特征。另外,t。 erectais能够自我授粉;因此,可以要求物种使用其整个生殖潜力来产生种子和下一代。

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