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Genome-wide identification of housekeeping genes in maize
by
Liu, Yuhe
, Dai, Huixue
, Jiang, Lu
, Lv, Yuanda
, Lin, Feng
, Zhao, Han
in
Biochemistry
/ Biomedical and Life Sciences
/ classification
/ Corn
/ crops
/ cyclin-dependent kinase
/ Cyclin-dependent kinases
/ data collection
/ Developmental stages
/ essential genes
/ Gene expression
/ Gene Expression Profiling
/ Gene Expression Regulation, Plant
/ Gene Ontology
/ Genes, Essential
/ Genes, Essential - genetics
/ Genes, Plant
/ Genes, Plant - genetics
/ genetics
/ genome mining
/ Genome, Plant
/ Genome, Plant - genetics
/ genotype
/ Genotypes
/ humans
/ Life Sciences
/ methods
/ microarray technology
/ Nitrogen
/ Oligonucleotide Array Sequence Analysis
/ Plant biology
/ Plant Pathology
/ Plant Sciences
/ Polymerase chain reaction
/ quantitative polymerase chain reaction
/ Reverse Transcriptase Polymerase Chain Reaction
/ Sequence Analysis, RNA
/ Sequence Analysis, RNA - methods
/ Species Specificity
/ transcriptome
/ transcriptomics
/ Zea mays
/ Zea mays - classification
/ Zea mays - genetics
2014
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Genome-wide identification of housekeeping genes in maize
by
Liu, Yuhe
, Dai, Huixue
, Jiang, Lu
, Lv, Yuanda
, Lin, Feng
, Zhao, Han
in
Biochemistry
/ Biomedical and Life Sciences
/ classification
/ Corn
/ crops
/ cyclin-dependent kinase
/ Cyclin-dependent kinases
/ data collection
/ Developmental stages
/ essential genes
/ Gene expression
/ Gene Expression Profiling
/ Gene Expression Regulation, Plant
/ Gene Ontology
/ Genes, Essential
/ Genes, Essential - genetics
/ Genes, Plant
/ Genes, Plant - genetics
/ genetics
/ genome mining
/ Genome, Plant
/ Genome, Plant - genetics
/ genotype
/ Genotypes
/ humans
/ Life Sciences
/ methods
/ microarray technology
/ Nitrogen
/ Oligonucleotide Array Sequence Analysis
/ Plant biology
/ Plant Pathology
/ Plant Sciences
/ Polymerase chain reaction
/ quantitative polymerase chain reaction
/ Reverse Transcriptase Polymerase Chain Reaction
/ Sequence Analysis, RNA
/ Sequence Analysis, RNA - methods
/ Species Specificity
/ transcriptome
/ transcriptomics
/ Zea mays
/ Zea mays - classification
/ Zea mays - genetics
2014
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Genome-wide identification of housekeeping genes in maize
by
Liu, Yuhe
, Dai, Huixue
, Jiang, Lu
, Lv, Yuanda
, Lin, Feng
, Zhao, Han
in
Biochemistry
/ Biomedical and Life Sciences
/ classification
/ Corn
/ crops
/ cyclin-dependent kinase
/ Cyclin-dependent kinases
/ data collection
/ Developmental stages
/ essential genes
/ Gene expression
/ Gene Expression Profiling
/ Gene Expression Regulation, Plant
/ Gene Ontology
/ Genes, Essential
/ Genes, Essential - genetics
/ Genes, Plant
/ Genes, Plant - genetics
/ genetics
/ genome mining
/ Genome, Plant
/ Genome, Plant - genetics
/ genotype
/ Genotypes
/ humans
/ Life Sciences
/ methods
/ microarray technology
/ Nitrogen
/ Oligonucleotide Array Sequence Analysis
/ Plant biology
/ Plant Pathology
/ Plant Sciences
/ Polymerase chain reaction
/ quantitative polymerase chain reaction
/ Reverse Transcriptase Polymerase Chain Reaction
/ Sequence Analysis, RNA
/ Sequence Analysis, RNA - methods
/ Species Specificity
/ transcriptome
/ transcriptomics
/ Zea mays
/ Zea mays - classification
/ Zea mays - genetics
2014
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Journal Article
Genome-wide identification of housekeeping genes in maize
2014
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Overview
In the wake of recent progress of high throughput transcriptome profiling technologies, extensive housekeeping gene mining has been conducted in humans. However, very few studies have been reported in maize (Zea mays L.), an important crop plant, and none were conducted on a genome -wide level. In this study, we surveyed housekeeping genes throughout the maize transcriptome using RNA-seq and microarray techniques, and validated the housekeeping profile with quantitative polymerase chain reaction (qPCR) under a series of conditions including different genotypes and nitrogen supplies. Seven microarray datasets and two RNA-seq libraries representing 40 genotypes at more than 20 developmental stages were selected to screen for commonly expressed genes. A total of 1,661 genes showed constitutive expression in both microarray and RNA-seq datasets, serving as our starting housekeeping gene candidates. To determine for stably expressed housekeeping genes, NormFinder was used to select the top 20 % invariable genes to be the more likely candidates, which resulted in 48 and 489 entries from microarray and RNA-seq data, respectively. Among them, nine genes (2OG-Fe, CDK, DPP9, DUF, NAC, RPN, SGT1, UPF1 and a hypothetical protein coding gene) were expressed in all 40 maize diverse genotypes tested covering 16 tissues at more than 20 developmental stages under normal and stress conditions, implying these as being the most reliable reference genes. qPCR analysis confirmed the stable expression of selected reference gene candidates compared to two widely used housekeeping genes. All the reference gene candidates showed higher invariability than ACT and GAPDH. The hypothetical protein coding gene exhibited the most stable expression across 26 maize lines with different nitrogen treatments with qPCR, followed by CDK encoding the cyclin-dependent kinase. As the first study to systematically screen for housekeeping genes in maize, we identified candidates by examining the transcriptome atlas generated from RNA-seq and microarray technologies. The nine top-ranked qPCR-validated novel housekeeping genes provide a valuable resource of reference genes for maize gene expression analysis.
Publisher
Springer-Verlag,Springer Netherlands,Springer Nature B.V
Subject
/ Biomedical and Life Sciences
/ Corn
/ crops
/ Gene Expression Regulation, Plant
/ genetics
/ genotype
/ humans
/ methods
/ Nitrogen
/ Oligonucleotide Array Sequence Analysis
/ quantitative polymerase chain reaction
/ Reverse Transcriptase Polymerase Chain Reaction
/ Sequence Analysis, RNA - methods
/ Zea mays
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