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Altered genotypic and phenotypic frequencies of aphid populations under enriched CO2 and O-3 atmospheres

机译:在丰富的CO2和O-3气氛下改变蚜虫种群的基因型和表型频率

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Environmental change is anticipated to negatively affect both plant and animal populations. As abiotic factors rapidly change habitat suitability, projections range from altered genetic diversity to wide-spread species loss. Here, we assess the degree to which changes in atmospheric composition associated with environmental change will influence not only the abundance, but also the genotypic/phenotypic diversity, of herbivore populations. Using free-air CO2 and O-3 enrichment (FACE) technology, we assess numerical responses of pea aphids (Acyrthosiphon pisum) exhibiting a pink-green genetic polymorphism and an environmentally determined wing polyphenism on broad bean plants (Vicia faba) under enriched CO2 and/or O-3 atmospheres, over multiple generations. We show that these two greenhouse gases alter not only aphid population sizes, but also genotypic and phenotypic frequencies. As the green genotype was positively influenced by elevated CO2 levels, but the pink genotype was not, genotypic frequencies (pink morph : green morph) ranged from 1 : 1 to 9 : 1. These two genotypes also displayed marked differences in phenotypic frequencies. The pink genotype exhibited higher levels of wing induction under all atmospheric treatments, however, this polyphenism was negatively influenced by elevated O-3 levels. Resultantly, frequencies of winged phenotypes (pink morph : green morph) varied from 10 : 1 to 332 : 1. Thus, atmospheric conditions associated with environmental change may alter not just overall population sizes, but also genotypic and phenotypic frequencies of herbivore populations, thereby influencing community and ecosystem functioning.
机译:预期环境变化将对动植物种群产生负面影响。随着非生物因素迅速改变栖息地的适应性,预测范围从改变的遗传多样性到广泛的物种丧失。在这里,我们评估与环境变化相关的大气成分变化不仅会影响草食动物种群的丰度,而且会影响其基因型/表型多样性。使用空气中的CO2和O-3富集(FACE)技术,我们评估了豌豆蚜虫(Acyrthosiphon pisum)的数值响应,该豌豆在富含CO2的条件下对豌豆植物(Vicia faba)表现出粉红色绿色的遗传多态性和环境确定的机翼多态性和/或O-3大气,历经数代。我们表明这两种温室气体不仅改变了蚜虫种群的数量,而且改变了基因型和表型频率。由于绿色基因型受到升高的CO2水平的积极影响,而粉红色基因型则不受此影响,因此基因型频率(粉红色变型:绿色变型)的范围为1:1至9:1。这两个基因型在表型频率上也显示出显着差异。粉红色的基因型在所有大气处理下均表现出较高的机翼诱导水平,但是,这种多态性受到O-3水平升高的负面影响。结果,有翅表型(粉红色变体:绿色变体)的频率在10:1到332:1之间变化。因此,与环境变化相关的大气条件不仅会改变总体种群规模,还会改变草食动物种群的基因型和表型频率,从而影响社区和生态系统的功能。

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