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Transcriptomic responses to salinity stress in invasive and native blue mussels (genus Mytilus)

机译:入侵和天然蓝贻贝(Mytilus属)对盐分胁迫的转录组学响应

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摘要

The invasive marine mussel Mytilus galloprovincialis has displaced the native congener Mytilus trossulus from central and southern California, but the native species remains dominant at more northerly sites that have high levels of freshwater input. To determine the extent to which interspecific differences in physiological tolerance to low salinity might explain limits to the invasive species' biogeography, we used an oligonucleotide microarray to compare the transcriptional responses of these two species to an acute decrease in salinity. Among 6777 genes on the microarray, 117 genes showed significant changes that were similar between species, and 12 genes showed significant species-specific responses to salinity stress. Osmoregulation and cell cycle control were important aspects of the shared transcriptomic response to salinity stress, whereas the genes with species-specific expression patterns were involved in mRNA splicing, polyamine synthesis, exocytosis, translation, cell adhesion, and cell signalling. Forty-five genes that changed expression significantly during salinity stress also changed expression during heat stress, but the direction of change in expression was typically opposite for the two forms of stress. These results (i) provide insights into the role of changes in gene expression in establishing physiological tolerance to acute decreases in salinity, and (ii) indicate that transcriptomic differences between M. galloprovincialis and M. trossulus in response to salinity stress are subtle and involve only a minor fraction of the overall suite of gene regulatory responses.
机译:入侵海洋贻贝Mytilus galloprovincialis取代了来自加利福尼亚中部和南部的原生同类物Mytilus trossulus,但在具有较高淡水输入量的更北端的地点,原生物种仍然占主导地位。为了确定对低盐度的生理耐受性的种间差异可能解释入侵物种生物地理学限制的程度,我们使用寡核苷酸微阵列比较了这两种物种对盐度急剧下降的转录反应。在微阵列上的6777个基因中,有117个基因显示出物种之间相似的显着变化,而12个基因显示出对盐分胁迫的显着物种特异性响应。渗透调节和细胞周期控制是对盐分胁迫的共有转录组反应的重要方面,而具有物种特异性表达模式的基因参与mRNA剪接,多胺合成,胞吐作用,翻译,细胞粘附和细胞信号传导。在盐胁迫期间显着改变表达的45个基因在热胁迫期间也改变了表达,但是对于两种形式的胁迫,表达改变的方向通常是相反的。这些结果(i)提供了对基因表达变化在建立对盐度急性下降的生理耐受性中的作用的见解,并且(ii)表明M. galloprovincialis和trossulus在盐度胁迫下的转录组差异是微妙的,并且涉及仅占整个基因调控反应的一小部分。

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