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Speciation genes in the genus Petunia

机译:矮牵牛属的物种形成基因

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A major innovation in angiosperms is the recruitment of animal pollinators as a means to enhance the efficiency and specificity of pollen transfer. The implementation of this reproductive strategy involved the rapid and presumably coordinated evolution of multiple floral traits. A major question concerns the molecular identity of the genetic polymorphisms that specify the phenotypic differences between distinct pollination syndromes. Here, we report on our work with Petunia, an attractive model system for quantitative plant genetics and genomics. From interspecific crosses, we obtained F2 plants that differed in the length of the floral tube or the size of the limb. We used these plants to study the behaviour of the hawkmoth pollinator, Manduca sexta. Plants with larger limbs were preferentially visited, consistent with the notion that flower size affects visibility under low light conditions. The moths also displayed an innate preference for shorter tubes. However, in those cases that flowers with long tubes were chosen, the animals fed for equal time. Thus, the perception of tube length may help the moths, early on, to avoid those plants that are more difficult to handle.
机译:被子植物的一项重大创新是招募动物授粉媒介,以提高花粉转移的效率和特异性。该生殖策略的实施涉及多种花卉性状的快速且可能协调的进化。一个主要问题涉及遗传多态性的分子同一性,该遗传多态性规定了不同授粉综合症之间的表型差异。在这里,我们报告与矮牵牛的合作,矮牵牛是一种用于植物遗传定量和基因组学的有吸引力的模型系统。从种间杂交中,我们获得了花管长度或肢体大小不同的F2植物。我们用这些植物研究了鹰蛾授粉媒介,曼杜卡(Manduca sexta)的行为。优先访问四肢较大的植物,这与花朵大小会影响弱光条件下可见度的观点一致。飞蛾还表现出对短管的天生偏好。但是,在那些选择长管花的情况下,动物要喂饱相同的时间。因此,对管长的感知可以帮助飞蛾尽早避免那些更难处理的植物。

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