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与三种雄性交配形态相关的常染色体倒位引起的基因表达修饰

Gene Expression Modification by an Autosomal Inversion Associated With Three Male Mating Morphs.

作者信息

Loveland Jasmine L, Lank David B, Küpper Clemens

机构信息

Research Group for Behavioural Genetics and Evolutionary Ecology, Max Planck Institute for Ornithology, Seewiesen, Germany.

Department of Biological Sciences, Simon Fraser University, Burnaby, BC, Canada.

出版信息

Front Genet. 2021 Jun 4;12:641620. doi: 10.3389/fgene.2021.641620. eCollection 2021.

Abstract

Chromosomal inversions are structural rearrangements that frequently provide genomic substrate for phenotypic diversity. In the ruff , three distinct male reproductive morphs (Independents, Satellites and Faeders) are genetically determined by a 4.5 Mb autosomal inversion. Here we test how this stable inversion polymorphism affects gene expression in males during the lekking season. Gene expression may be altered through disruptions at the breakpoints and the accumulation of mutations due to suppressed recombination. We used quantitative PCR to measure expression of 11 candidate inversion genes across three different tissues (liver, adrenal glands and gonads) and tested for allelic imbalance in four inversion genes across 12 males of all three morphs (8 Independents, 2 Satellites, 2 Faeders). We quantified transcripts of , an essential gene disrupted by the inversion at the proximal breakpoint, at different exons distributed near and across the breakpoint region. Consistent with dosage dependent gene expression for the breakpoint gene , we found that expression in Independents was broadly similar for transcripts segments from inside and outside the inversion regions, whereas for Satellites and Faeders, transcript segments outside of the inversion showed at least twofold higher expression than those spanning over the breakpoint. Within the inversion, observed expression differences for inversion males across all four genes with allele-specific primers were consistent with allelic imbalance. We further analyzed gonadal expression of two inversion genes, and , along with 12 non-inversion genes related to steroid metabolism and signaling in 25 males (13 Independents, 7 Satellites, 5 Faeders). Although we did not find clear morph differentiation for many individual genes, all three morphs could be separated based on gene expression differences when using linear discriminant analysis (LDA), regardless of genomic location (i.e., inside or outside of the inversion). This was robust to the removal of genes with the highest loadings. Pairwise correlations in the expression of genes showed significant correlations for 9-18 pairs of genes within morphs. However, between morphs, we only found a single association between genes and for Independents and Satellites. Our results suggest complex and wide-ranging changes in gene expression caused by structural variants.

摘要

染色体倒位是一种结构重排,经常为表型多样性提供基因组底物。在流苏鹬中,三种不同的雄性繁殖形态(独立型、卫星型和拟雌型)由一个4.5兆碱基的常染色体倒位在基因上决定。在这里,我们测试这种稳定的倒位多态性如何在求偶场季节影响雄性的基因表达。基因表达可能会因断点处的破坏以及由于重组抑制导致的突变积累而改变。我们使用定量PCR来测量11个候选倒位基因在三种不同组织(肝脏、肾上腺和性腺)中的表达,并在所有三种形态的12只雄性(8只独立型、2只卫星型、2只拟雌型)中测试四个倒位基因的等位基因不平衡。我们对一个在近端断点处被倒位破坏的必需基因在靠近和跨越断点区域分布的不同外显子处的转录本进行了定量。与断点基因的剂量依赖性基因表达一致,我们发现独立型中来自倒位区域内外的转录本片段的表达大致相似,而对于卫星型和拟雌型,倒位区域外的转录本片段的表达比跨越断点的转录本片段至少高两倍。在倒位内,使用等位基因特异性引物观察到的所有四个基因在倒位雄性中的表达差异与等位基因不平衡一致。我们进一步分析了25只雄性(13只独立型、7只卫星型、5只拟雌型)中两个倒位基因以及12个与类固醇代谢和信号传导相关的非倒位基因的性腺表达。尽管我们没有发现许多单个基因有明显的形态分化,但当使用线性判别分析(LDA)时,所有三种形态都可以基于基因表达差异分开,无论基因组位置(即倒位内或倒位外)如何。这对于去除具有最高负荷的基因是稳健的。形态内基因表达的成对相关性显示,形态内9 - 18对基因存在显著相关性。然而,在不同形态之间,我们仅在独立型和卫星型的基因和之间发现了单一关联。我们的结果表明结构变异会导致基因表达发生复杂且广泛的变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ad8e/8213371/45ef04f03bf7/fgene-12-641620-g001.jpg

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