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Transcriptomic response to thermal and salinity stress in introduced and native sympatric Palaemon caridean shrimps

机译:引进和本地同养Palaemon caridean虾对热和盐胁迫的转录组反应

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摘要

Organisms develop local adaptations to cope with spatially and temporally variable environments such as estuarine habitats, where abiotic parameters such as salinity and temperature fluctuate continuously. Studying the regulation of gene expression in a variable environment allows us to understand the underlying molecular mechanisms of these adaptations and the relative roles of the genetic and plastic response. The transcriptomes of the European native Palaemon longirostris (PL) and the introduced P. macrodactylus (PM) shrimps are described and compared after an experiment simulating summer conditions in the Guadalquivir Estuary, Spain. Specimens, collected in the Guadalquivir Estuary, were maintained at a temperature and salinity of 20 °C and 5 ppt for the control, and 30 °C and 15 ppt for the stress treatment. A large amount of differential gene expression was observed: 16,013 and 2,594 for PL and PM respectively. Functionally annotated unigenes revealed some differences, with PL seemingly having to face stronger physiological stress than PM. Thus, PM seems to have greater resistance than PL under conditions of high temperature and salinity. These results constitute a step forward in the understanding of the underlying molecular mechanisms of genetic adaptation of native invertebrates, and alien taxa that have successfully invaded estuaries in temperate regions around the world.
机译:生物发展出局部适应能力以应对时空变化的环境,例如河口栖息地,其中盐度和温度等非生物参数不断波动。研究可变环境中基因表达的调控,使我们能够了解这些适应的潜在分子机制以及遗传和塑性反应的相对作用。在模拟西班牙瓜达尔基维尔河河口夏季条件的实验之后,描述并比较了欧洲本土长寿龙虾(PL)和引入的大假对虾(PM)虾的转录组。在瓜达尔基维尔河口收集的标本的温度和盐度分别保持在20°C和5°ppt(对照)和30°C和15°ppt(应力处理)的温度和盐度下。观察到大量差异基因表达:PL和PM分别为16,013和2,594。功能注释的单基因揭示了一些差异,PL似乎必须比PM面临更强的生理压力。因此,在高温和盐度条件下,PM似乎比PL具有更大的电阻。这些结果构成了对原生无脊椎动物和外来生物分类群遗传适应的基本分子机制的理解的又一个进步,这些分子机制已成功入侵了全球温带地区的河口。

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