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Beautiful complicated—and intelligent? Novel aspects of the thigmonastic stamen movement in Loasaceae

机译:美丽复杂且智能?十字花科的胸腺雄蕊雄蕊运动的新方面

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摘要

In a recent study we investigated the complex mechanisms regulating the pollen release via thigmonastic stamen movement found exclusively in Loasaceae subfamily Loasoideae. We demonstrated that stamen movement is modulated by abiotic (light and temperature) as well as biotic stimuli (pollinator availability and visitation frequency). This is explained as a mechanism to adjust the rate of stamen movement and thus pollen dispensation to different environmental conditions in order to optimize pollen transfer. Stamen movement is rapid and thus a near-immediate response to pollinator visits. However, Loasaceae flowers also show a response to biotic stimuli on a longer time scale, by adjusting the duration of both the staminate and the carpellate phase of the anthesis. We here present two additional data sets on species not previously studied, underscoring the shortening of the staminate phase in the presence of pollinator visits vs. their absence and the shortening of the carpellate phase after pollination. Overall, the plant shows not only a rapid but an “intelligent” reaction to its environment in adjusting anthesis and pollen presentation to a range of factors. The physiological and morphological bases of the stamen movement are poorly understood. Our previous study showed that there is no direct spatial relationship between the place of stimulation in the flower and the stamen bundle activated. We here further show the morphological basis for stamen movement from a reflexed into an erect position: Only the basal part of the filament curves around the receptacle, while the upper part of the filament retains its shape. We hypothesize that the stimulus is transmitted over the entire receptacle and the place of reaction is determined by stamen maturity, not the location of the stimulus.
机译:在最近的一项研究中,我们调查了仅在十字花科(Loasaceae)十字花科(Loasoideae)中发现的通过胸腺雄蕊运动来调节花粉释放的复杂机制。我们证明了雄蕊的运动受到非生物(光和温度)以及生物刺激(授粉媒介的利用和探视频率)的调节。这被解释为一种机制,用于调节雄蕊的运动速度,从而调节花粉分配到不同的环境条件,从而优化花粉的转移。雄蕊运动迅速,因此对传粉媒介的访视几乎立即做出反应。然而,通过调节花药的花药固定期和蝶形花药的持续时间,禾本科植物的花在较长的时间尺度上也表现出对生物刺激的响应。我们在此提供了两个之前未研究过的物种的额外数据集,强调了授粉者来访与没有授粉者访问时雄蕊期的缩短以及授粉后菜籽酸酯相的缩短。总体而言,在将花粉和花粉的表现调整为多种因素的过程中,植物不仅对环境表现出快速反应,而且还表现出“智能”反应。雄蕊运动的生理和形态基础了解得很少。我们以前的研究表明,花中刺激的位置与激活的雄蕊束之间没有直接的空间关系。我们在这里进一步显示了雄蕊从反射位置到直立位置的形态学基础:只有细丝的基部围绕容器弯曲,而细丝的上部保持其形状。我们假设刺激物在整个容器上传播,反应的位置取决于雄蕊的成熟度,而不是刺激物的位置。

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