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Natural hybridization between Senecio jacobaea and Senecio aquaticus: molecular and chemical evidence

机译:千里光与水千里光之间的天然杂交:分子和化学证据

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Hybridization is known to be involved in a number of evolutionary processes, including species formation, and the generation of novel defence characteristics in plants. The genus Senecio of the Asteraceae family is highly speciose and has historically demonstrated significant levels of interspecific hybridization. The evolution of novel chemical defence characteristics may have contributed to the success of Senecio hybrids. Chemical defence against pathogens and herbivores has been studied extensively in the model species Senecio jacobaea, which is thought to hybridize in nature with Senecio aquaticus. Here, we use amplified fragment length polymorphisms (AFLPs) and pyrrolizidine alkaloid (PA) composition to confirm that natural hybridization occurs between S. jacobaea and the closely related species S. aquaticus. AFLPs are also used to estimate the ancestry of hybrids. We also demonstrate that even highly back-crossed hybrids can possess a unique mixture of defence chemicals specific to each of the parental species. This hybrid system may therefore prove to be useful in further studies of the role of hybridization in the evolution of plant defence and resistance.
机译:已知杂交涉及许多进化过程,包括物种形成和植物新防御特性的产生。菊科(Asteraceae)的千里光属(Senecio)是高度特异的,并且历史上已经证明了高水平的种间杂交。新的化学防御特性的演变可能有助于千里光杂交种的成功。在模型物种千里光刺槐中已广泛研究了对病原体和食草动物的化学防御作用,认为该物种在自然界中可以与水生千里光杂交。在这里,我们使用扩增的片段长度多态性(AFLPs)和吡咯烷核生物碱(PA)组成来确认天然杂交发生在南美白花刺槐和密切相关的水生金黄色葡萄球菌之间。 AFLP还用于估计杂种的祖先。我们还证明,即使高度回交的杂种也可以拥有独特的针对每种亲本物种的防御化学物质混合物。因此,该杂种系统可能被证明可用于进一步研究杂种在植物防御和抗性进化中的作用。

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