Cargando…

Stability evaluation of reference genes for gene expression analysis by RT-qPCR in soybean under different conditions

Real-time quantitative reverse transcription PCR is a sensitive and widely used technique to quantify gene expression. To achieve a reliable result, appropriate reference genes are highly required for normalization of transcripts in different samples. In this study, 9 previously published reference...

Descripción completa

Detalles Bibliográficos
Autores principales: Wan, Qiao, Chen, Shuilian, Shan, Zhihui, Yang, Zhonglu, Chen, Limiao, Zhang, Chanjuan, Yuan, Songli, Hao, Qinnan, Zhang, Xiaojuan, Qiu, Dezhen, Chen, Haifeng, Zhou, Xinan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5728501/
https://www.ncbi.nlm.nih.gov/pubmed/29236756
http://dx.doi.org/10.1371/journal.pone.0189405
_version_ 1783286034087280640
author Wan, Qiao
Chen, Shuilian
Shan, Zhihui
Yang, Zhonglu
Chen, Limiao
Zhang, Chanjuan
Yuan, Songli
Hao, Qinnan
Zhang, Xiaojuan
Qiu, Dezhen
Chen, Haifeng
Zhou, Xinan
author_facet Wan, Qiao
Chen, Shuilian
Shan, Zhihui
Yang, Zhonglu
Chen, Limiao
Zhang, Chanjuan
Yuan, Songli
Hao, Qinnan
Zhang, Xiaojuan
Qiu, Dezhen
Chen, Haifeng
Zhou, Xinan
author_sort Wan, Qiao
collection PubMed
description Real-time quantitative reverse transcription PCR is a sensitive and widely used technique to quantify gene expression. To achieve a reliable result, appropriate reference genes are highly required for normalization of transcripts in different samples. In this study, 9 previously published reference genes (60S, Fbox, ELF1A, ELF1B, ACT11, TUA5, UBC4, G6PD, CYP2) of soybean [Glycine max (L.) Merr.] were selected. The expression stability of the 9 genes was evaluated under conditions of biotic stress caused by infection with soybean mosaic virus, nitrogen stress, across different cultivars and developmental stages. ΔCt and geNorm algorithms were used to evaluate and rank the expression stability of the 9 reference genes. Results obtained from two algorithms showed high consistency. Moreover, results of pairwise variation showed that two reference genes were sufficient to normalize the expression levels of target genes under each experimental setting. For virus infection, ELF1A and ELF1B were the most stable reference genes for accurate normalization. For different developmental stages, Fbox and G6PD had the highest expression stability between two soybean cultivars (Tanlong No. 1 and Tanlong No. 2). ELF1B and ACT11 were identified as the most stably expressed reference genes both under nitrogen stress and among different cultivars. The results showed that none of the candidate reference genes were uniformly expressed at different conditions, and selecting appropriate reference genes was pivotal for gene expression studies with particular condition and tissue. The most stable combination of genes identified in this study will help to achieve more accurate and reliable results in a wide variety of samples in soybean.
format Online
Article
Text
id pubmed-5728501
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-57285012017-12-22 Stability evaluation of reference genes for gene expression analysis by RT-qPCR in soybean under different conditions Wan, Qiao Chen, Shuilian Shan, Zhihui Yang, Zhonglu Chen, Limiao Zhang, Chanjuan Yuan, Songli Hao, Qinnan Zhang, Xiaojuan Qiu, Dezhen Chen, Haifeng Zhou, Xinan PLoS One Research Article Real-time quantitative reverse transcription PCR is a sensitive and widely used technique to quantify gene expression. To achieve a reliable result, appropriate reference genes are highly required for normalization of transcripts in different samples. In this study, 9 previously published reference genes (60S, Fbox, ELF1A, ELF1B, ACT11, TUA5, UBC4, G6PD, CYP2) of soybean [Glycine max (L.) Merr.] were selected. The expression stability of the 9 genes was evaluated under conditions of biotic stress caused by infection with soybean mosaic virus, nitrogen stress, across different cultivars and developmental stages. ΔCt and geNorm algorithms were used to evaluate and rank the expression stability of the 9 reference genes. Results obtained from two algorithms showed high consistency. Moreover, results of pairwise variation showed that two reference genes were sufficient to normalize the expression levels of target genes under each experimental setting. For virus infection, ELF1A and ELF1B were the most stable reference genes for accurate normalization. For different developmental stages, Fbox and G6PD had the highest expression stability between two soybean cultivars (Tanlong No. 1 and Tanlong No. 2). ELF1B and ACT11 were identified as the most stably expressed reference genes both under nitrogen stress and among different cultivars. The results showed that none of the candidate reference genes were uniformly expressed at different conditions, and selecting appropriate reference genes was pivotal for gene expression studies with particular condition and tissue. The most stable combination of genes identified in this study will help to achieve more accurate and reliable results in a wide variety of samples in soybean. Public Library of Science 2017-12-13 /pmc/articles/PMC5728501/ /pubmed/29236756 http://dx.doi.org/10.1371/journal.pone.0189405 Text en © 2017 Wan et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Wan, Qiao
Chen, Shuilian
Shan, Zhihui
Yang, Zhonglu
Chen, Limiao
Zhang, Chanjuan
Yuan, Songli
Hao, Qinnan
Zhang, Xiaojuan
Qiu, Dezhen
Chen, Haifeng
Zhou, Xinan
Stability evaluation of reference genes for gene expression analysis by RT-qPCR in soybean under different conditions
title Stability evaluation of reference genes for gene expression analysis by RT-qPCR in soybean under different conditions
title_full Stability evaluation of reference genes for gene expression analysis by RT-qPCR in soybean under different conditions
title_fullStr Stability evaluation of reference genes for gene expression analysis by RT-qPCR in soybean under different conditions
title_full_unstemmed Stability evaluation of reference genes for gene expression analysis by RT-qPCR in soybean under different conditions
title_short Stability evaluation of reference genes for gene expression analysis by RT-qPCR in soybean under different conditions
title_sort stability evaluation of reference genes for gene expression analysis by rt-qpcr in soybean under different conditions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5728501/
https://www.ncbi.nlm.nih.gov/pubmed/29236756
http://dx.doi.org/10.1371/journal.pone.0189405
work_keys_str_mv AT wanqiao stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions
AT chenshuilian stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions
AT shanzhihui stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions
AT yangzhonglu stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions
AT chenlimiao stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions
AT zhangchanjuan stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions
AT yuansongli stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions
AT haoqinnan stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions
AT zhangxiaojuan stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions
AT qiudezhen stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions
AT chenhaifeng stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions
AT zhouxinan stabilityevaluationofreferencegenesforgeneexpressionanalysisbyrtqpcrinsoybeanunderdifferentconditions