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Rapid evolution and gene expression:a rapidly-evolving Mendelian trait that silences field crickets has widespread effects on mRNA and protein expression

机译:快速进化和基因表达:孟德尔性状的快速发展使田field silence然,对mRNA和蛋白质表达产生广泛影响

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摘要

A major advance in modern evolutionary biology is the ability to start linking phenotypic evolution in the wild with genomic changes that underlie that evolution. We capitalised on a rapidly-evolving Hawaiian population of crickets () to test hypotheses about the genomic consequences of a recent Mendelian mutation of large effect which disrupts the development of sound-producing structures on male forewings. The resulting silent phenotype, flatwing, persists because of natural selection imposed by an acoustically-orienting parasitoid, but it interferes with mate attraction. We examined gene expression differences in developing wing buds of wild-type and flatwing male crickets using RNA-seq and quantitative proteomics. Most differentially expressed (DE) transcripts were down-regulated in flatwing males (625 up vs. 1716 down), whereas up and down-regulated proteins were equally represented (30 up and 34 down). Differences between morphs were clearly not restricted to a single pathway, and we recovered annotations associated with a broad array of functions that would not be predicted a . Using a candidate gene detection test based on homology we identified 30% of putative wing development genes in the cricket transcriptome, but only 10% were DE. In addition to wing related annotations, endocrine pathways and several biological processes such as reproduction, immunity and locomotion were DE in the mutant crickets at both biological levels. Our results illuminate the breadth of genetic pathways that are potentially affected in the early stages of adaptation.
机译:现代进化生物学的一项重大进步是能够将野生表型进化与构成该进化基础的基因组变化联系起来。我们利用迅速发展的夏威夷population种群来检验关于最近孟德尔突变的基因组后果的假说,孟德尔突变产生了巨大影响,这种突变破坏了男性前肢发声结构的发展。由于声音定向的拟寄生物施加的自然选择,所产生的沉默表型扁平化仍然存在,但会干扰伴侣的吸引力。我们使用RNA序列和定量蛋白质组学研究了野生型和扁翼型male的发育中翼芽的基因表达差异。 flat翼雄性的大多数差异表达(DE)转录本均被下调(625上调与1716上调),而上调和下调蛋白则被平均表达(30上调和34下调)。形态之间的差异显然不仅仅局限于一个途径,我们恢复了与多种功能相关联的注释,而这些注释无法预测a。使用基于同源性的候选基因检测测试,我们在the转录组中鉴定出30%的假定翅膀发育基因,但只有10%是DE。除了与机翼相关的注释外,突变biological的两个生物学水平上的内分泌途径和生殖,免疫和运动等生物学过程都是DE。我们的结果阐明了适应早期可能受到影响的遗传途径的广度。

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