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首页> 外文期刊>Estuarine Coastal and Shelf Science >Mating system variation in neotropical black mangrove, Avicennia germinans, at three spatial scales towards an expanding northern distributional limit
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Mating system variation in neotropical black mangrove, Avicennia germinans, at three spatial scales towards an expanding northern distributional limit

机译:在三个空间尺度下,交配系统变异,在三个空间尺度下朝向扩大北部分布极限

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Climate-driven range expansion of ecosystem-defining foundation species can have wide-reaching ecological consequences. Expansion may also result in mating system changes in these foundation species because of the ecological characteristics of range margins, such as greater conspecific isolation and reduced pollinator availability. It is important to understand how mating systems may change during expansion due to their direct influence on intraspecific genetic and demographic dynamics. Here, we used 12 microsatellite loci to genotype progeny arrays of the neotmpical black mangrove (Avicennia germinans) at six collection sites (n = 23 maternal trees; 1,612 genotyped propagules) along a latitudinal gradient towards a northern distributional limit on the Atlantic coast of Florida, USA (27.56-30.01 degrees N), where mangroves have expanded into salt marsh over the past several decades. We assessed mating system variation at three spatial scales. First, at the species-distribution level, published outcrossing rates for tropical conspecifics were more than two times higher than those for subtropical Florida A. germinans, consistent with reductions in pollinator diversity and in mangrove abundance with latitude. Second, at the population level, Florida outcrossing rates did not systematically decline towards the northern range limit, but instead, a more open pollen-dispersal neighbourhood at the transition from mangrove to salt marsh dominance may elevate outcrossing until conspecific abundances become too low towards the range limit. Third, at the individual level, outcrossing increased as conspecific cover increased at the Florida range margin, consistent with density-dependent plastic shifts in mating system. These findings suggest that ecological structure influences the A. germinans mating system at varying spatial scales. Further research needs to evaluate the effect of A. germinans mating system variation on the survival and fitness of offspring and on the extent of population-level local adaptation at expanding distributional limits.
机译:气候驱动的范围扩展生态系统定义基础物种可以具有广泛的生态后果。由于范围利润率的生态特征,扩展可能还导致这些基础物种的交配系统变化,例如更大的占用和降低的传导师可用性。重要的是要了解交配系统在扩展期间如何发生变化,这是由于它们的直接影响涉及内部遗传和人口动态。在这里,我们在六个收集地点(n = 23个母树; 1,612种基因分类宣传)沿着纬度朝向佛罗里达大西洋海岸的北部分布极限,使用了12个微卫星基因座(N = 23个母植物; 1,612种基因分型宣传)的基因型后代阵列。 ,美国(27.56-30.01岁),在过去的几十年里,红树林已经扩展到盐沼。我们评估了三个空间尺度的交配系统变化。首先,在物种分布水平,热带消费品的公布额外的速率比亚热带佛罗里达州A. Germinans的出版率高于两倍以上,符合Collinator多样性和与纬度的红树林丰富。其次,在人口层面,佛罗里达州的交易率并没有系统地下降到北部范围限制,而是一个更开放的花粉分散社区,在红树林过渡到盐沼摩尔斯的主导地位可能会提升到过度的倾向,直到飞行的丰富的丰富变得太低范围限制。第三,在个人级别,随着在佛罗里达范围裕度的覆盖率增加,与配合系统中的密度依赖性塑料换档一致,令人兴奋地增加。这些研究结果表明,生态结构在不同的空间尺度下影响A. Germinans交配系统。进一步的研究需要评估A. Germinans交配系统变化对后代存活率和适应性的影响以及在扩大分布限制方面的人口水平局部适应程度。

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