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多种禽类定量基因表达研究的参考基因

Reference genes for quantitative gene expression studies in multiple avian species.

作者信息

Olias Philipp, Adam Iris, Meyer Anne, Scharff Constance, Gruber Achim D

机构信息

Institute of Veterinary Pathology, Freie Universität Berlin, Berlin, Germany.

Institute of Biology, Department of Animal Behavior, Freie Universität Berlin, Berlin, Germany.

出版信息

PLoS One. 2014 Jun 13;9(6):e99678. doi: 10.1371/journal.pone.0099678. eCollection 2014.

Abstract

Quantitative real-time PCR (qPCR) rapidly and reliably quantifies gene expression levels across different experimental conditions. Selection of suitable reference genes is essential for meaningful normalization and thus correct interpretation of data. In recent years, an increasing number of avian species other than the chicken has been investigated molecularly, highlighting the need for an experimentally validated pan-avian primer set for reference genes. Here we report testing a set for 14 candidate reference genes (18S, ABL, GAPDH, GUSB, HMBS, HPRT, PGK1, RPL13, RPL19, RPS7, SDHA, TFRC, VIM, YWHAZ) on different tissues of the mallard (Anas platyrhynchos), domestic chicken (Gallus gallus domesticus), common crane (Grus grus), white-tailed eagle (Haliaeetus albicilla), domestic turkey (Meleagris gallopavo f. domestica), cockatiel (Nymphicus hollandicus), Humboldt penguin (Sphenicus humboldti), ostrich (Struthio camelus) and zebra finch (Taeniopygia guttata), spanning a broad range of the phylogenetic tree of birds. Primer pairs for six to 11 genes were successfully established for each of the nine species. As a proof of principle, we analyzed expression levels of 10 candidate reference genes as well as FOXP2 and the immediate early genes, EGR1 and CFOS, known to be rapidly induced by singing in the avian basal ganglia. We extracted RNA from microbiopsies of the striatal song nucleus Area X of adult male zebra finches after they had sang or remained silent. Using three different statistical algorithms, we identified five genes (18S, PGK1, RPS7, TFRC, YWHAZ) that were stably expressed within each group and also between the singing and silent conditions, establishing them as suitable reference genes. In conclusion, the newly developed pan-avian primer set allows accurate normalization and quantification of gene expression levels in multiple avian species.

摘要

定量实时聚合酶链反应(qPCR)能够快速、可靠地定量分析不同实验条件下的基因表达水平。选择合适的内参基因对于进行有意义的标准化以及正确解读数据至关重要。近年来,除鸡之外,越来越多的鸟类物种得到了分子层面的研究,这凸显了需要一套经过实验验证的用于鸟类内参基因的通用引物组。在此,我们报告了对一组包含14个候选内参基因(18S、ABL、GAPDH、GUSB、HMBS、HPRT、PGK1、RPL13、RPL19、RPS7、SDHA、TFRC、VIM、YWHAZ)在绿头鸭(Anas platyrhynchos)、家鸡(Gallus gallus domesticus)、灰鹤(Grus grus)、白尾海雕(Haliaeetus albicilla)、家火鸡(Meleagris gallopavo f. domestica)、鸡尾鹦鹉(Nymphicus hollandicus)、洪堡企鹅(Sphenicus humboldti)、鸵鸟(Struthio camelus)和斑胸草雀(Taeniopygia guttata)的不同组织上进行测试,这些物种涵盖了鸟类系统发育树的广泛范围。针对这九个物种中的每一个,成功建立了用于6至11个基因的引物对。作为原理验证,我们分析了十个候选内参基因以及FOXP2和即刻早期基因EGR1和CFOS的表达水平,已知这些基因在鸟类基底神经节中会因鸣叫而迅速被诱导。我们从成年雄性斑胸草雀鸣叫或保持沉默后纹状体鸣叫核X区的微量活检组织中提取RNA。使用三种不同的统计算法,我们鉴定出五个基因(18S、PGK1、RPS7、TFRC、YWHAZ)在每组内以及鸣叫和沉默条件之间均稳定表达,将它们确立为合适的内参基因。总之,新开发出的通用鸟类引物组能够准确地对多种鸟类物种的基因表达水平进行标准化和定量分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6674/4057121/b671e2b3b39f/pone.0099678.g001.jpg

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