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Transcriptomic differentiation underlying marine‐to‐freshwater transitions in the South American silversides Odontesthes argentinensis and O. bonariensis (Atheriniformes)

机译:南美洲银边Odontesthes argentinensis和O.bonariensis(Atheriniformes)从海到淡水过渡的转录组学分化

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摘要

Salinity gradients are critical habitat determinants for freshwater organisms. Silverside fishes in the genus Odontesthes have recently and repeatedly transitioned from marine to freshwater habitats, overcoming a strong ecological barrier. Genomic and transcriptomic changes involved in this kind of transition are only known for a few model species. We present new data and analyses of gene expression and microbiome composition in the gills of two closely related silverside species, marine O. argentinensis and freshwater O. bonariensis and find more than three thousand transcripts differentially expressed, with osmoregulatory/ion transport genes and immune genes showing very different expression patterns across species. Interspecific differences also involve more than one thousand transcripts with nonsynonymous SNPs in the coding sequences, most of which were not differentially expressed. In addition to characterizing gill transcriptomes from wild‐caught marine and freshwater fishes, we test experimentally the response to salinity increases by O. bonariensis collected from freshwater habitats. Patterns of expression in gill transcriptomes of O. bonariensis exposed to high salinity do not resemble O. argentinensis mRNA expression, suggesting lack of plasticity for adaptation to marine conditions in this species. The diversity of functions associated with both the differentially expressed set of transcripts and those with sequence divergence plus marked microbiome differences suggest that multiple abiotic and biotic factors in marine and freshwater habitats are driving transcriptomic differences between these species.
机译:盐度梯度是淡水生物至关重要的栖息地决定因素。 Odontesthes属的银尾鱼最近并反复从海洋生境过渡到淡水生境,克服了强大的生态障碍。这种转变涉及的基因组和转录组变化仅在少数模型物种中为人所知。我们提供了新的数据并分析了两个密切相关的银侧种(海洋O.Argentinensis和淡水O.bonariensis)的the中的基因表达和微生物组组成,并发现了超过三千个转录本,具有渗透调节/离子转运基因和免疫基因在物种之间表现出非常不同的表达模式。种间差异还涉及编码序列中具有非同义SNP的1000多个转录本,其中大多数没有差异表达。除了表征野生捕获的海洋和淡水鱼类的g转录组外,我们还通过实验测试了从淡水栖息地收集的O.bonariensis对盐分增加的响应。暴露于高盐度的博纳里斯O的g转录组中的表达模式与阿根廷山mRNA的mRNA表达不同,这表明该物种缺乏适应海洋条件的可塑性。与差异表达的转录组相关的功能的多样性以及与序列差异以及显着的微生物组差异相关的功能的多样性表明,海洋和淡水生境中的多种非生物和生物因子正在驱动这些物种之间的转录组差异。

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