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A phylogenetic examination of host use evolution in the quinaria and testacea groups of Drosophila

机译:毒蕈中的宿主宿主进化的系统发育检查果蝇

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摘要

Adaptive radiations provide an opportunity to examine complex evolutionary processes such as ecological specialization and speciation. While a well-resolved phylogenetic hypothesis is critical to completing such studies, the rapid rates of evolution in these groups can impede phylogenetic studies. Here we study the quinaria and testacea species groups of the immigrans-tripunctata radiation of Drosophila, which represent a recent adaptive radiation and are a developing model system for ecological genetics. We were especially interested in understanding host use evolution in these species. In order to infer a phylogenetic hypothesis for this group we sampled loci from both the nuclear genome and the mitochondrial DNA to develop a dataset of 43 protein-coding loci for these two groups along with their close relatives in the immigrans-tripunctata radiation. We used this dataset to examine their evolutionary relationships along with the evolution of feeding behavior. Our analysis recovers strong support for the monophyly of the testacea but not the quinaria group. Results from our ancestral state reconstruction analysis suggests that the ancestor of the testacea and quinaria groups exhibited mushroom-feeding. Within the quinaria group, we infer that transition to vegetative feeding occurred twice, and that this transition did not coincide with a genome-wide change in the rate of protein evolution.
机译:自适应辐射提供了检查复杂的进化过程,如生态专业化和形态。虽然解决了良好的系统发育假设对于完成这些研究至关重要,但这些组中的快速进化率可能阻碍了系统发育研究。在这里,我们研究了果蝇的Immigrans-tripunctata辐射的喹腊味和Testacea种群,这代表了最近的自适应辐射,是一种用于生态遗传学的发展模型系统。我们特别感兴趣地理解这些物种中的主机使用演变。为了推断出该组的系统发育假设,我们从核基因组和线粒体DNA中采样基因座,以便在Immigrans-tripunctata辐射中与它们的密切亲属开发43个蛋白质编码基因座的数据集。我们使用了这个数据集来检查他们的进化关系以及喂养行为的演变。我们的分析恢复了对睾世纪的单层的强烈支持,但不是喹腊藜。我们的祖先州重建分析结果表明,Testacea和喹腊氏菌群的祖先表现出蘑菇喂养。在喹腊氏毒蕈内,我们推断过渡到植物饲养的过渡发生了两次,并且这种转变与蛋白质进化速率的基因组变化并不一致。

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