U.S. Department of Agriculture, Agricultural Research Service, Beltsville, Maryland, United States of America.
PLoS One. 2013 Sep 18;8(9):e73354. doi: 10.1371/journal.pone.0073354. eCollection 2013.
The advent of affordable Next Generation Sequencing technologies has had major impact on studies of many crop species, where access to genomic technologies and genome-scale data sets has been extremely limited until now. The recent development of genomic resources in blueberry will enable the application of high throughput gene expression approaches that should relatively quickly increase our understanding of blueberry physiology. These studies, however, require a highly accurate and robust workflow and make necessary the identification of reference genes with high expression stability for correct target gene normalization. To create a set of superior reference genes for blueberry expression analyses, we mined a publicly available transcriptome data set from blueberry for orthologs to a set of Arabidopsis genes that showed the most stable expression in a developmental series. In total, the expression stability of 13 putative reference genes was evaluated by qPCR and a set of new references with high stability values across a developmental series in fruits and floral buds of blueberry were identified. We also demonstrated the need to use at least two, preferably three, reference genes to avoid inconsistencies in results, even when superior reference genes are used. The new references identified here provide a valuable resource for accurate normalization of gene expression in Vaccinium spp. and may be useful for other members of the Ericaceae family as well.
经济实惠的新一代测序技术的出现对许多作物物种的研究产生了重大影响,直到现在,这些作物在基因组技术和基因组规模数据集方面的获取途径仍然极其有限。最近在蓝莓中基因组资源的发展将使高通量基因表达方法得以应用,这应该会相对较快地增加我们对蓝莓生理学的理解。然而,这些研究需要高度准确和稳健的工作流程,并需要确定具有高表达稳定性的参考基因,以正确进行靶基因归一化。为了创建一套适用于蓝莓表达分析的优秀参考基因,我们从蓝莓中挖掘了一个公开的转录组数据集,寻找与一组在发育系列中表现出最稳定表达的拟南芥基因的同源物。总共,通过 qPCR 评估了 13 个推定参考基因的表达稳定性,并确定了一套在蓝莓果实和花芽发育系列中具有高稳定性值的新参考基因。我们还证明了即使使用了优秀的参考基因,也需要使用至少两个,最好是三个参考基因,以避免结果不一致。这里确定的新参考基因为准确归一化 Vaccinium spp.中的基因表达提供了有价值的资源,并且可能对其他 Ericaceae 家族的成员也有用。