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Deciphering gene expression patterns using large-scale transcriptomic data and its applications
DOI:10.1093/bib/bbae590.png)
摘要
En 中文
Gene expression varies stochastically across genders, racial groups, and health statuses. Deciphering these patterns is crucial for identifying informative genes, classifying samples, and understanding diseases like cancer. This study analyzes 11,252 bulk RNAseq samples to explore expression patterns of 19,156 genes, including 10,512 cancer tissue samples and 740 normal samples. Additionally, 4,884 single-cell RNA-seq samples are examined. Statistical analysis using 16 probability distributions shows that normal samples display a wider range of distributions compared to cancer samples. Cancer samples tend to favor asymmetric distributions such as generalized extreme value, logarithmic normal, and Gaussian mixture distributions. In contrast, certain genes in normal samples exhibit symmetric distributions. Remarkably, more than 95.5% of genes exhibit non-normal distributions, which challenges traditional assumptions. Furthermore, distributions differ significantly between bulk and single-cell RNA-seq data. Many cancer driver genes exhibit distinct distribution patterns across sample types, suggesting potential for gene selection and classification based on distribution characteristics. A novel skewness-based metric is proposed to quantify distribution variation across datasets, showing genes with significant skewness differences have biological relevance. Finally, an improved na & iuml;ve Bayes method incorporating gene- specific distributions demonstrates superior performance in simulations over traditional methods. This work enhances understanding of gene expression and its application in omics-based gene selection and sample classification.
Keyword:
omics data
gene expression distribution
gene selection
skewness
na & iuml
ve Bayes
sample classification
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论文数:
5.6K
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机构
引用论文
Misuse of RPKM or TPM normalization when comparing across samples and sequencing protocols在比较样品和测序方案时滥用RPKM或TPM归一化
RNA
IF5
A Fixed-Point Neural Network Architecture for Speech Applications on Resource Constrained Hardware用于资源受限硬件上语音应用的定点神经网络体系结构
IDEAS: individual level differential expression analysis for single-cell RNA-seq dataIDEAS: 单细胞rna-seq数据的个体水平差异表达分析
GENOME BIOLOGY
IF9.4

