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Avoiding sexual interference: herkogamy and dichogamy in style dimorphic flowers of Narcissus broussonetii (Amaryllidaceae)

机译:避免性干扰:水仙(Amaryllidaceae)的双态花形异形花的雌雄同体

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摘要

Spatial (herkogamy) or temporal (dichogamy) separation of sex organs are mechanisms considered to restrict self-pollination and promote outcrossing. Additionally, avoidance of self-interference is proposed to be the driving force for the evolution of these mechanisms, particularly in self-incompatible species. However, species with anthers and stigmas at different levels may increase the rate of imprecise pollen transfer, resulting in pollen discounting. Non-reciprocal stylar dimorphism has been considered a transitional, unstable stage towards the evolution of reciprocal style dimorphism (distyly), to simultaneously avoid interference and lack of precision. In this study we investigate the spatial and temporal separation of sex organs in a population of the style dimorphic and self-incompatible Narcissus broussonetii and their consequences in the reciprocity between the sex organs of morphs and their fecundity. First, we evaluated the relative growth of sex organs after anthesis. Then, we studied the stigma receptivity along the flower lifespan including its effect on seed production in both morphs. Finally, given the weak reciprocity between the sex organs of morphs of this species, we estimated population genetic diversity parameters in Long- and Short-styled plants to explore differences between them as a result of rates of inbreeding due to different mating strategies. We observed that Long-styled plants and Short-styled plants present different strategies to avoid sexual interference and both of them had negative consequences in the reciprocity between the sex organs of morphs. Long-styled plants exhibited a delay in stigma receptivity and a higher growth rate of the style after anthesis, while Short-styled plants presented higher herkogamy and no delay in stigma receptivity. These findings suggest that the avoidance of self-interference, in stylar dimorphic Narcissus species, seems to be more critical than improving of reciprocity between the sex organs of morphs. This might explain why reciprocal herkogamy (distyly) is rare in the genus.
机译:性器官的空间(hergamgamy)或时间(dichogamy)分离是限制自花授粉并促进异交的机制。另外,提出避免自我干扰是这些机制发展的动力,特别是在自我不相容的物种中。但是,具有不同水平的花药和柱头的物种可能会提高不精确花粉转移的速度,从而导致花粉折扣。为了避免干扰和缺乏准确性,非对等的样式二态被认为是向(相反地)对等的样式二态发展的过渡,不稳定阶段。在这项研究中,我们调查了双态和自相矛盾的水仙水仙种群中性器官的时空分离及其在性器官和生殖力之间互惠的后果。首先,我们评估了花后性器官的相对生长。然后,我们研究了沿花寿命的柱头接受性,包括其对两种形态的种子产生的影响。最后,鉴于该物种的形态性器官之间的互易性较弱,我们估算了长型和短型植物的种群遗传多样性参数,以探讨由于不同交配策略而造成的近交率所造成的差异。我们观察到长型植物和短型植物呈现出不同的策略来避免性干扰,并且它们都对变体的性器官之间的互惠产生负面影响。长型植物在花期后表现出柱头接受性的延迟和较高的生长速度,而短型植物表现出较高的雌雄同性,柱头接受性没有延迟。这些发现表明,避免在茎状二形水仙种中出现自我干扰,比提高性腺的性器官之间的互惠性更为关键。这可能解释了为什么互异性(遥远)在属中很少见。

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