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Identification of Candidate Genes for the Plateau Adaptation of a Tibetan Amphipod, Gammarus lacustris, Through Integration of Genome and Transcriptome Sequencing

机译:通过整合基因组和转录组测序鉴定藏两栖动物 Gammarus lacustris 的高原适应候选基因。

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The amphipod Gammarus lacustris has been distributing in the Tibetan region with well-known uplifts of the Tibetan plateau. It is hence considered as a good model for investigating stress adaptations of the plateau. Here, we sequenced the whole-genome and full-length transcriptome of G . lacustris , and compared the transcriptome results with its counterpart Gammarus pisinnus from a nearby plain. Our main goal was to provide a genomic resource for investigation of genetic mechanisms, by which G . lacustris adapted to living on the plateau. The final draft genome assembly of G . lacustris was 5.07 gigabases (Gb), and it contained 443,304 scaffolds (&2 kb) with an N50 of 2,578 bp. A total of 8,858 unigenes were predicted in the full-length transcriptome of G . lacustris , with an average gene length of 1,811 bp. Compared with the G . pisinnus transcriptome, 2,672 differentially expressed genes (DEGs) were up-regulated and 2,881 DEGs were down-regulated in the G . lacustris transcriptome. Along with these critical DEGs, several enriched metabolic pathways, such as oxidative phosphorylation, ribosome, cell energy homeostasis, glycolysis and gluconeogenesis, were predicted to play essential roles in the plateau adaptation. In summary, the present study provides a genomic basis for understanding the plateau adaption of G . lacustris , which lays a fundamental basis for further biological and ecological studies on other resident aquatic species in the Tibetan plateau.
机译:ampampod Gammarus lacustris分布在西藏地区,有著名的青藏高原隆升。因此,它被认为是研究高原应力适应的良好模型。在这里,我们对G的全基因组和全长转录组进行了测序。 ,并将转录组结果与其附近平原上的对应的伽玛鲁斯·比辛努斯进行了比较。我们的主要目标是为G的遗传机制研究提供基因组资源。 lacustris适应生活在高原上。 G基因组最终草案。 lacustris是5.07 gigabases(Gb),它包含443,304个支架(> 2 kb),N50为2,578 bp。在G的全长转录组中预测总共有8,858个单基因。 lacustris,平均基因长度为1,811 bp。与G相比。 pisinnus转录组中,G中有2,672个差异表达基因(DEGs)上调,而2,881个DEGs下调。 lacustris转录组。与这些关键的DEGs一起,还预测了几种丰富的代谢途径,例如氧化磷酸化,核糖体,细胞能量稳态,糖酵解和糖异生,在高原适应中起着重要作用。总而言之,本研究为理解G的平台适应性提供了基因组基础。 lacustris,为进一步研究青藏高原其他常住水生物种奠定了基础。

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