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与环境变量相关的SNP位点的差异表达分析与检测:盐度和温度因素是否参与了银汉鱼属的种群分化和物种形成?

Differential expression analyses and detection of SNP loci associated with environmental variables: Are salinity and temperature factors involved in population differentiation and speciation in Odontesthes?

作者信息

D'Anatro Alejandro, Calvelo Javier, Feijóo Matías, Giorello Facundo M

机构信息

Laboratorio de Evolución y Sistemática, Facultad de Ciencias, Universidad de la República, Montevideo 11400, Uruguay.

Laboratorio de Biología Computacional, Departamento de Desarrollo Biotecnológico, Instituto de Higiene, Facultad de Medicina, Universidad de la República, Montevideo, Uruguay.

出版信息

Comp Biochem Physiol Part D Genomics Proteomics. 2024 Dec;52:101262. doi: 10.1016/j.cbd.2024.101262. Epub 2024 Jun 6.

Abstract

Environmental factors play a key role in individual adaptation to different local conditions. Because of this, studies about the physiological and genetic responses of individuals exposed to different natural environments offer clues about mechanisms involved in population differentiation, and as a subsequent result, speciation. Marine environments are especially suited to survey this kind of phenomena because they commonly harbor species adapted to different local conditions along a geographic continuum. Silversides belonging to Odontesthes are commonly distributed in tropical and temperate regions of South America and exhibit noticeable phenotypic plasticity, which allows them to adapt to contrasting environments. In this study, the genetic expression of O. argentinensis sampled along the Uruguayan Atlantic coast and estuarine adjacent areas was investigated. In addition, the correlation between individual genotypes and environmental variables was also analysed in O. argentinensis and O. bonariensis. Results obtained suggest a differential expression pattern of low magnitude among individuals from the different areas sampled and a correlation between several SNP loci and environmental variables. The analyses carried out did not show a clear differentiation among individuals sampled along different salinity regimens, but enriched GOTerms seem to be driven by water oxygen content. On the other hand, a total of 46 SNPs analysed in O. argentinensis and O. bonariensis showed a correlation with salinity and temperature. Although none of the correlated SNPs and corresponding genes from our both analyses were directly associated with hypoxia, genes related to the cardiovascular system and muscle cell differentiation were found. All these genes are interesting candidates for future studies since they are closely related to the differentially expressed genes. Although salinity was also mentioned as an important parameter limiting introgression between O. argentinensis and O. bonariensis, it was found that salinity does not drive differential expression in O. argentinensis, but rather oxygen levels. Moreover, salinity does not directly affect the structure and genetic divergence of the populations, they appear to be structured based on their degree of isolation and geographical distance between them. Further studies, like genome-wide analyses, could help to elucidate additional genes adapted to the different environments in these silverside species.

摘要

环境因素在个体适应不同当地条件方面起着关键作用。正因如此,关于暴露于不同自然环境下个体的生理和遗传反应的研究,为种群分化以及随后的物种形成所涉及的机制提供了线索。海洋环境特别适合调查这类现象,因为它们通常包含沿地理连续体适应不同当地条件的物种。属于银汉鱼属的银汉鱼通常分布在南美洲的热带和温带地区,并表现出显著的表型可塑性,这使它们能够适应截然不同的环境。在本研究中,对沿乌拉圭大西洋海岸及邻近河口地区采集的阿根廷银汉鱼的基因表达进行了研究。此外,还分析了阿根廷银汉鱼和博氏银汉鱼个体基因型与环境变量之间的相关性。所得结果表明,来自不同采样区域的个体之间存在低水平的差异表达模式,并且几个单核苷酸多态性(SNP)位点与环境变量之间存在相关性。所进行的分析并未显示沿不同盐度条件采样的个体之间有明显分化,但富集的基因本体(GO)术语似乎受水体含氧量驱动。另一方面,在阿根廷银汉鱼和博氏银汉鱼中分析的总共46个SNP显示出与盐度和温度相关。尽管我们这两项分析中相关的SNP及其对应的基因均未直接与缺氧相关,但发现了与心血管系统和肌肉细胞分化相关的基因。所有这些基因都是未来研究的有趣候选对象,因为它们与差异表达基因密切相关。尽管盐度也被提及是限制阿根廷银汉鱼和博氏银汉鱼之间基因渗入的重要参数,但发现盐度并不会驱动阿根廷银汉鱼的差异表达,而是氧含量。此外,盐度并不直接影响种群的结构和遗传分化,它们似乎是基于彼此之间的隔离程度和地理距离而形成结构的。进一步的研究,如全基因组分析,可能有助于阐明这些银汉鱼物种中更多适应不同环境的基因。

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