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Ecological differentiation and diploid superiority across a moving ploidy contact zone

机译:跨移动倍性接触区的生态分化和二倍体优势

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Plant polyploid complexes provide useful model systems for distinguishing between adaptive and nonadaptive causes of parapatric distributions in closely related lineages. Polyploidy often gives rise to morphological and physiological changes, which may be adaptive to different environments, but separate distributions may also be maintained by reproductive interference caused by postzygotic reproductive isolation. Here, we test the hypothesis that diploid and descendent polyploid races of the wind-pollinated herb Mercurialis annua, which are found in parapatry over an environmental gradient in northeast Spain, are differentiated in their ecophysiology and life history. We also ask whether any such differences represent adaptations to their different natural environments. On the basis of a series of reciprocal transplant experiments in the field, and experiments under controlled conditions, we found that diploid and polyploid populations of M. annua are ecologically differentiated, but that they do not show local adaptation; rather, the diploids have higher fitness than the polyploids across both diploid- and polyploid-occupied regions. In fact, diploids are currently displacing polyploids by advancing south on two separate fronts in Spain, and previous work has shown that this displacement is being driven to a large extent by asymmetrical pollen swamping. Our results here suggest that ecophysiological superiority of the diploids may also be contributing to their expansion.
机译:植物多倍体复合物提供了有用的模型系统,用于区分密切相关的世系中的父系分布的自适应和非自适应原因。多倍体经常引起形态和生理变化,这可能适应不同的环境,但合子后生殖分离引起的生殖干扰也可能维持单独的分布。在这里,我们测试了这样的假设,即在西班牙东北部环境梯度中的牧草中发现的风传花药Mercurialis annua的二倍体和后代多倍体种族在其生态生理和生活史上是不同的。我们还询问是否有任何此类差异代表对它们不同自然环境的适应。根据该领域的一系列互惠移植实验和在受控条件下进行的实验,我们发现番荔枝的二倍体和多倍体种群在生态上有所区别,但它们并未表现出局部适应性。相反,在二倍体和多倍体占据的区域中,二倍体比多倍体具有更高的适应性。事实上,二倍体目前正在通过在西班牙的两个独立战线上向南推进来取代多倍体,并且以前的工作表明,这种位移在很大程度上是由于不对称花粉沼泽所致。我们在这里的结果表明,二倍体的生理生态优势也可能有助于其扩展。

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