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环境选择下黑蝇基因组的动态变化

Dynamics of Dark-Fly Genome Under Environmental Selections.

作者信息

Izutsu Minako, Toyoda Atsushi, Fujiyama Asao, Agata Kiyokazu, Fuse Naoyuki

机构信息

Department of Biophysics, Graduate School of Science, Kyoto University, Kyoto 606-8502, Japan.

Comparative Genomics Laboratory, National Institute of Genetics, Mishima 411-8540, Japan.

出版信息

G3 (Bethesda). 2015 Dec 4;6(2):365-76. doi: 10.1534/g3.115.023549.

Abstract

Environmental adaptation is one of the most fundamental features of organisms. Modern genome science has identified some genes associated with adaptive traits of organisms, and has provided insights into environmental adaptation and evolution. However, how genes contribute to adaptive traits and how traits are selected under an environment in the course of evolution remain mostly unclear. To approach these issues, we utilize "Dark-fly", a Drosophila melanogaster line maintained in constant dark conditions for more than 60 years. Our previous analysis identified 220,000 single nucleotide polymorphisms (SNPs) in the Dark-fly genome, but did not clarify which SNPs of Dark-fly are truly adaptive for living in the dark. We found here that Dark-fly dominated over the wild-type fly in a mixed population under dark conditions, and based on this domination we designed an experiment for genome reselection to identify adaptive genes of Dark-fly. For this experiment, large mixed populations of Dark-fly and the wild-type fly were maintained in light conditions or in dark conditions, and the frequencies of Dark-fly SNPs were compared between these populations across the whole genome. We thereby detected condition-dependent selections toward approximately 6% of the genome. In addition, we observed the time-course trajectory of SNP frequency in the mixed populations through generations 0, 22, and 49, which resulted in notable categorization of the selected SNPs into three types with different combinations of positive and negative selections. Our data provided a list of about 100 strong candidate genes associated with the adaptive traits of Dark-fly.

摘要

环境适应是生物体最基本的特征之一。现代基因组科学已经鉴定出一些与生物体适应性性状相关的基因,并为环境适应和进化提供了见解。然而,基因如何促成适应性性状以及在进化过程中性状如何在环境中被选择,这些问题大多仍不清楚。为了解决这些问题,我们利用了“暗蝇”,这是一种在恒定黑暗条件下维持了60多年的黑腹果蝇品系。我们之前的分析在暗蝇基因组中鉴定出了22万个单核苷酸多态性(SNP),但并未阐明暗蝇的哪些SNP对于在黑暗中生存具有真正的适应性。我们在此发现,在黑暗条件下的混合种群中,暗蝇比野生型果蝇占优势,基于这种优势,我们设计了一个基因组重选实验来鉴定暗蝇的适应性基因。对于这个实验,将大量暗蝇和野生型果蝇的混合种群维持在光照条件或黑暗条件下,并比较这些种群在全基因组范围内暗蝇SNP的频率。由此,我们检测到了对大约6%的基因组的条件依赖性选择。此外,我们观察了混合种群中SNP频率在第0代、第22代和第49代的时间进程轨迹,这导致所选SNP显著地分为三种类型,具有不同的正选择和负选择组合。我们的数据提供了一份约100个与暗蝇适应性性状相关的强候选基因列表。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a01a/4751556/f0640a1194da/365f1.jpg

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