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Tissue-specific transcriptome characterization for developing tadpoles of the northern leopard frog (Lithobates pipiens)

机译:组织特异性的转录组表征北部豹蛙(Lithobates pipiens)发育中的t

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摘要

A potential cause of amphibian population declines are the impacts of environmental degradation on tadpole development. We conducted RNA sequencing on developing northern leopard frog tadpoles and through de novo transcriptome assembly we annotated a large number of open reading frames comparable in number and extent to genes identified in Xenopus. Using our transcriptome, we found transcript level changes between early (Gosner 26-31) and late (Gosner 36-41) stage tadpoles were the greatest in the tail, which is reabsorbed throughout development. There was an up-regulation of immunity genes in both the head and tail of the late tadpoles and a down-regulation of genes associated with the energy pathways of the mitochondria and the production of myosin. Overall, transcript level changes across development were consistent with studies on Xenopus and our findings highlight the broader utility of using RNA-seq to identify genes differentially expressed throughout development and in response to environmental pressures. (C) 2016 Elsevier Inc. All rights reserved.
机译:两栖动物种群减少的潜在原因是环境退化对t发育的影响。我们对发育中的北豹蛙t进行了RNA测序,并通过从头转录组组装,注释了许多开放阅读框,其数量和程度与在非洲爪蟾中鉴定的基因相当。使用我们的转录组,我们发现early的早期(Gosner 26-31)和晚期(Gosner 36-41)之间的转录水平变化最大,在整个发育过程中被重吸收。晚期t的头部和尾部的免疫基因均上调,而与线粒体能量途径和肌球蛋白产生相关的基因则下调。总体而言,整个开发过程中的转录水平变化与非洲爪蟾的研究一致,我们的发现突出了使用RNA-seq识别整个发育过程中差异表达的基因以及响应环境压力的广泛用途。 (C)2016 Elsevier Inc.保留所有权利。

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