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Seed production in a threatened Aloe is not affected by bird exclusion or population size

机译:受威胁的芦荟的种子生产不受鸟类排斥或种群数量的影响

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摘要

Small populations of many plant species have been shown to exhibit ecological Allee effects. These effects are expected to be pronounced in plants which are obligate outcrossers and rely on pollinators which forage preferentially in larger populations with greater nectar availability. We examined the breeding and pollination systems, level of pollen limitation and seed production in populations of a threatened ornithophilous species, Aloe pruinosa. Experimental hand-pollinations showed that A. pruinosa is genetically self-incompatible and thus an obligate outcrosser. Experimental exclusion of birds from inflorescences did not affect seed production, suggesting that insects are effective pollinators. Supplemental hand-pollinations in several populations showed that seed production in A. pruinosa is not pollen limited. Further, there were no significant relationships between population size and any measure of reproductive success in this Aloe species. Small populations of A. pruinosa are thus viable in terms of pollination processes and should be protected from more direct threats, such as habitat alteration.
机译:已显示许多植物物种的小种群表现出生态Allee效应。预期这些作用在专性异型杂交并且依赖传粉媒介的植物中会显着,传粉媒介优先在较大的种群中采食更多的花蜜。我们检查了濒临灭绝的嗜食性物种芦荟芦荟种群的繁殖和授粉系统,花粉限制水平和种子生产。实验性人工授粉表明,A。pruinosa在遗传上是自我不相容的,因此是专性的异交。从花序中排除鸟类的实验不会影响种子的产生,这表明昆虫是有效的传粉媒介。在几个种群中进行的人工授粉补充表明,A。pruinosa的种子生产不受花粉的限制。此外,在该芦荟物种中,种群数量与任何繁殖成功率之间均无显着关系。因此,小数量的A. pruinosa在传粉过程中是可行的,应避免受到更直接的威胁,例如生境改变。

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