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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Genetic variation and evolution of secondary compounds in native and introduced populations of the invasive Plant Melaleuca quinquenervia
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Genetic variation and evolution of secondary compounds in native and introduced populations of the invasive Plant Melaleuca quinquenervia

机译:入侵植物白千层木原生种群和引进种群中次生化合物的遗传变异和进化

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摘要

We examined multivariate evolution of 20 leaf terpenoids in the invasive plant Melaleuca quinquenervia in a common garden experiment. Although most compounds, including 1,8-Cineole and Viridiflorol, were reduced in home compared with invaded range genotypes, consistent with an evolutionary decrease in defense, one compound (E-Nerolidol) was greater in invaded than home range genotypes. Nerolidol was negatively genetically correlated with Cineole and Viridiflorol, and the increase in this compound in the new range may have been driven by this negative correlation. There was positive selection on all three focal compounds, and a loss of genetic variation in introduced range genotypes. Selection skewers analysis predicted an increase in Cineole and Viridiflorol and a decrease or no change in Nerolidol, in direct contrast to the observed changes in the new range. This discrepancy could be due to differences in patterns of selection, genetic correlations, or the herbivore communities in the home versus introduced ranges. Although evolutionary changes in most compounds were consistent with the evolution of increased competitive ability hypothesis, changes in other compounds as well as selection patterns were not, indicating that it is important to understand selection and the nature of genetic correlations to predict evolutionary change in invasive species.
机译:在一个常见的花园实验中,我们研究了入侵植物白千层菊属植物中20种叶类萜的多元演变。尽管与入侵范围基因型相比,大多数化合物(包括1,8-Cineole和Viridiflorol)在家中都减少了,与防御的进化下降相一致,但一种化合物(E-Nerolidol)的入侵程度要比家庭范围基因型大。 Nerolidol与Cineole和Viridiflorol在遗传上呈负相关,该化合物在新范围内的增加可能是由于这种负相关所致。在所有三个焦点化合物上都有阳性选择,并且引入的范围基因型失去了遗传变异。选择串分析预测与新范围内观察到的变化直接相反,Cineole和Viridiflorol的增加而Nerolidol的减少或没有变化。这种差异可能是由于选择模式,遗传相关性或家中草食动物群落与引入范围之间的差异所致。尽管大多数化合物的进化变化与竞争能力假说的演变一致,但其他化合物的变化以及选择模式均不相同,这表明了解选择和遗传相关性以预测入侵物种的进化变化非常重要。

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