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首页> 外文期刊>Flora >Intriguing thigmonastic (sensitive) stamens in the Plains Prickly Pear Opuntia polyacantha (Cactaceae)
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Intriguing thigmonastic (sensitive) stamens in the Plains Prickly Pear Opuntia polyacantha (Cactaceae)

机译:平原刺梨仙人掌中的有趣的雄蕊雄蕊(仙人掌科)

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摘要

The movement of sensitive stamens in flowers of the Plains Prickly Pear (Opuntia polyacantha) is described in detail along with the external and internal filament anatomy. The goals of this investigation were: (1) to provide a synthesis of floral phenology and determine whether this rather unique stamen movement is nastic or a tropism and (2) to conduct macro- and micro-morphological analyses of filaments to determine if there are anatomical traits associated with this movement. To better understand the internal and external structure in sensitive filaments of O. polyacantha, we performed comparative anatomical analyses in two additional species from the Opuntioideae with stamens lacking such sensitivity. The consistent unidirectional movement of stamens, independent of the area stimulated, indicates a thigmonastic response. This movement serves multiple purposes, from enhancing pollen presentation to facilitating cross-pollination, protecting pollen and preventing insects from robbing pollen. Anatomically, the sensitive and non-sensitive filaments exhibit different tissue organization. Cuticle thickness, presence of capsular structures, two layers of curved cells, and more and larger intercellular spaces are characteristic of sensitive filaments. A thin unicellular epidermal layer is characteristic in sensitive filaments versus 2-3 epidermal layers in non-sensitive filaments. Another striking feature in sensitive filaments is the presence of papillae and capsular structures. We believe that these elements are related to water mobility with subsequent contraction during the thigmonastic response. Capsular structures might have a role in fluid mobility according to the stimulus of the filaments. We hypothesize that the thigmonastic response is controlled by cells with elastic properties, as evidenced by the plasmolyzed curved and contracted cells in the filaments and the fact that the movement is activated by changes in cell turgor followed by contraction as a result of plasmolysis.
机译:详细介绍了平原刺梨(Opuntia polyacantha)的花朵中敏感雄蕊的运动,以及内部和外部的细丝解剖结构。这项研究的目标是:(1)提供花卉物候学的综合信息,并确定这种独特的雄蕊运动是鼻部还是向性;以及(2)对细丝进行宏观和微观形态分析,以确定是否存在细丝。与这种运动有关的解剖特征。为了更好地了解poly棘敏感细丝的内部和外部结构,我们对来自仙人掌科的另外两个种类的雄蕊缺乏这种敏感性的动物进行了比较解剖分析。雄蕊的一致单向运动,与受刺激区域无关,表明有胸腺吻合反应。该运动具有多种目的,从增强花粉表现到促进交叉授粉,保护花粉和防止昆虫抢夺花粉。在解剖学上,敏感和不敏感的细丝表现出不同的组织结构。角质层的厚度,囊结构的存在,两层弯曲的细胞以及越来越大的细胞间空间是敏感细丝的特征。敏感的细丝具有薄的单细胞表皮层,而非敏感的细丝则具有2-3个表皮层。敏感细丝的另一个显着特征是存在乳头和荚膜结构。我们认为,这些元素与水流流动性以及胸腺舒张反应期间的随后收缩有关。根据细丝的刺激,囊状结构可能在流体流动性中起作用。我们假设,通过纤维中纤溶酶解的弯曲和收缩细胞以及纤溶变化引起的细胞充盈变化激活了运动,证明了血流动力学响应受具有弹性的细胞控制。

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