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Experimental Evolution of Alkaloid Tolerance in Sibling Drosophila Species with Different Degrees of Specialization

机译:不同特化程度的同胞果蝇生物碱耐受性实验演化

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摘要

Drosophila buzzatii and Drosophila koepferae are sibling species with marked ecological differences related to their patterns of host exploitation. D. buzzatii is a polyphagous species with a sub-cosmopolitan distribution, while D. koepferae is endemic to the mountain plateaus of the Andes, where it exploits alkaloidiferous columnar cacti as primary hosts. We use experimental evolution to study the phenotypic response of these cactophilic Drosophila when confronting directional selection to cactus chemical defenses for 20 generations. Flies adapted to cactus diets also experienced higher viability on alkaloid-enriched media, suggesting the selection of adaptive genetic variation for chemical-stress tolerance. The more generalist species D. buzzatii showed a rapid adaptive response to moderate levels of secondary metabolites, whereas the columnar cacti specialist D. koepferae tended to maximize fitness under harder conditions. The evolutionary dynamic of fitness-related traits suggested the implication of metabolic efficiency as a key mediator in the adaptive response to chemical stress. Although we found no evidence of adaptation costs accompanying specialization, our results suggest the involvement of compensatory evolution. Overall, our study proposes that differential adaptation to secondary metabolites may contribute to varying degrees of host specialization, favoring niche partitioning among these closely related species.
机译:果蝇(Drosophila buzzatii)和果蝇(Drosophila koepferae)是兄弟物种,与它们的宿主利用模式有关,具有明显的生态差异。D. buzzatii 是一种多食性物种,具有亚世界性分布,而 D. koepferae 是安第斯山脉山地高原的特有种,在那里它利用生物碱柱状仙人掌作为主要宿主。我们使用实验进化来研究这些嗜心果蝇在面对 20 代仙人掌化学防御的定向选择时的表型反应。适应仙人掌饮食的苍蝇在富含生物碱的培养基上也具有更高的活力,这表明选择适应性遗传变异来耐化学胁迫。更通用的物种 D. buzzatii 对中等水平的次生代谢产物表现出快速的适应性反应,而柱状仙人掌专家 D. koepferae 倾向于在更硬的条件下最大限度地提高适应性。适应性相关性状的进化动态表明,代谢效率是适应性反应中的关键介质。虽然我们没有发现伴随专业化而来的适应成本的证据,但我们的结果表明了补偿性进化的参与。总体而言,我们的研究表明,对次生代谢物的差异适应可能有助于不同程度的宿主特化,有利于这些密切相关物种之间的生态位划分。

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