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LIFETIME FITNESS IN TWO GENERATIONS OF IPOMOPSIS HYBRIDS

机译:两代综合症的终身健身

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Various models purporting to explain natural hybrid zones make different assumptions about the fitness of hybrids. One class of models assumes that hybrids have intrinsically low fitness due to genetic incompatibilities, whereas other models allow hybrid fitness to vary across natural environments. We used the intrinsic rate of increase to assess lifetime fitness of hybrids between two species of montane plants lpomopsis aggregata and Ipomopsis tenuituba planted as seed into multiple field environments. Because fitness is predicted to depend upon genetic composition of the hybrids, we included F1 hybrids, F2 hybrids, and backcrosses in our field tests. The F2 hybrids had female fitness as high, or higher, than expected under an additive model of fitness. These results run counter to any model of hybrid zone dynamics that relies solely on intrinsic nuclear genetic incompatibilities. Instead, we found that selection was environmentally dependent. In this hybrid zone, cytoplasmic effects and genotype-by-environment interactions appear more important in lowering hybrid fitness than do intrinsic genomic incompatibilities between nuclear genes.
机译:各种旨在解释自然杂交区的模型对杂交体的适应性做出不同的假设。一类模型假定杂种由于遗传不相容性而固有地具有较低的适应性,而其他模型允许杂种适应性在自然环境中变化。我们使用内在增长率来评估作为种子种植到多个田间环境中的两种山地植物lpomopsis aggregata和Ipomopsis tenuituba之间的杂交品种的终生适应性。由于预测适应性取决于杂种的遗传组成,因此我们在田间试验中包括了F1杂种,F2杂种和回交。 F2混合动力车的女性适应性高于或高于适应性加性模型下的预期。这些结果与仅依赖于内在核遗传不相容性的任何混合区动力学模型背道而驰。相反,我们发现选择取决于环境。在这个杂种区,细胞质效应和基因型-环境间相互作用比核基因之间固有的基因组不相容性在降低杂种适应性方面显得更为重要。

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