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首页> 外文期刊>Scientific reports. >Pollination niche availability facilitates colonization of Guettarda speciosa with heteromorphic self-incompatibility on oceanic islands
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Pollination niche availability facilitates colonization of Guettarda speciosa with heteromorphic self-incompatibility on oceanic islands

机译:授粉位的可利用性促进了Guettarda speciosa的定殖,并在海洋岛屿上形成了异形的自交不亲和性

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Obligate out-breeding plants are considered relatively disadvantageous comparing with self-breeding plants when colonizing oceanic islets following long-distance dispersal owing to mate and pollinator limitation. The rarity of heterostyly, a typical out-breeding system, on oceanic islands seems a good proof. However, a heterostylous plant, Guettarda speciosa , is widely distributed on most tropical oceanic islets. Our research demonstrates that its heteromorphic self-incompatibility, plus herkogamy and long flower tube make it rely on pollinator for sexual reproduction, which is generally considered “disadvantageous” for island colonization. We hypothesize that available pollination niche will be a key factor for its colonization on islands. Our studies on remote coral islands show that G . speciosa has built equilibrium population with a 1:1 morph ratio. It could obtain pollination niche from the hawkmoth Agrius convolvuli . A pioneer island plant Ipomoea pes-caprae sustain the pollination niche by providing trophic resource for the larvae of the pollinator. Geographic pattern drawn by Ecological Niche Modelling further indicates the interaction between G . speciosa , A . convolvuli and I . pes-caprae can be bounded on those remote oceanic islands, explaining the colonization of G . speciosa distylous population. These findings demonstrated obligate out-breeding system could be maintained to acclimatize long distance dispersal, if the pollination niche is available.
机译:当由于交配和传粉媒介的限制而在长距离扩散后在海洋小岛上定居时,专性外来繁殖植物被认为比自繁殖植物相对不利。在海洋岛屿上,典型的外来繁殖系统-异域风的稀有性似乎是一个很好的证明。但是,杂散植物Guettarda speciosa广泛分布在大多数热带海洋小岛上。我们的研究表明,它的异型自交不亲和,加上her科和长花管,使其依赖传粉媒介进行有性繁殖,这通常被认为对岛屿定居是“不利的”。我们假设可用的授粉生态位将是其在岛屿上定殖的关键因素。我们对偏远珊瑚岛的研究表明,G。 speciosa建立了1:1变体比率的平衡种群。它可以从鹰蛾Agrius卷积中获得授粉位。先锋岛植物番薯(Ipomoea pes-caprae)通过为传粉者的幼虫提供营养资源来维持授粉位。生态位生态模型绘制的地理格局进一步表明了G之间的相互作用。物种。和我。 pes-caprae可以在那些偏远的海洋岛屿上出海,从而解释了G的殖民化。物种异种种群。这些发现表明,如果有授粉位,则可以维持专性的育种系统以适应长距离传播。

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