比较等位基因特异性表达和局部表达数量性状基因座,以及基因表达对牛复杂性状变异的影响。
Comparing allele specific expression and local expression quantitative trait loci and the influence of gene expression on complex trait variation in cattle.
机构信息
Department of Agriculture and Food Systems, The University of Melbourne, Parkville, VIC, Australia.
Agriculture Victoria, AgriBio, Centre for AgriBioscience, Bundoora, VIC, Australia.
出版信息
BMC Genomics. 2018 Nov 3;19(1):793. doi: 10.1186/s12864-018-5181-0.
BACKGROUND
The mutations changing the expression level of a gene, or expression quantitative trait loci (eQTL), can be identified by testing the association between genetic variants and gene expression in multiple individuals (eQTL mapping), or by comparing the expression of the alleles in a heterozygous individual (allele specific expression or ASE analysis). The aims of the study were to find and compare ASE and local eQTL in 4 bovine RNA-sequencing (RNA-Seq) datasets, validate them in an independent ASE study and investigate if they are associated with complex trait variation.
RESULTS
We present a novel method for distinguishing between ASE driven by polymorphisms in cis and parent of origin effects. We found that single nucleotide polymorphisms (SNPs) driving ASE are also often local eQTL and therefore presumably cis eQTL. These SNPs often, but not always, affect gene expression in multiple tissues and, when they do, the allele increasing expression is usually the same. However, there were systematic differences between ASE and local eQTL and between tissues and breeds. We also found that SNPs significantly associated with gene expression (p < 0.001) were likely to influence some complex traits (p < 0.001), which means that some mutations influence variation in complex traits by changing the expression level of genes.
CONCLUSION
We conclude that ASE detects phenomenon that overlap with local eQTL, but there are also systematic differences between the SNPs discovered by the two methods. Some mutations influencing complex traits are actually eQTL and can be discovered using RNA-Seq including eQTL in the genes CAST, CAPN1, LCORL and LEPROTL1.
背景
改变基因表达水平的基因突变,或表达数量性状基因座(eQTL),可以通过在多个个体中测试遗传变异与基因表达之间的关联来识别(eQTL 图谱),或通过比较杂合个体中等位基因的表达来识别(等位基因特异性表达或 ASE 分析)。本研究的目的是在 4 个牛 RNA 测序(RNA-Seq)数据集,发现和比较 ASE 和局部 eQTL,并在独立的 ASE 研究中对其进行验证,并研究它们是否与复杂性状变异相关。
结果
我们提出了一种区分顺式多态性和母源效应驱动 ASE 的新方法。我们发现,驱动 ASE 的单核苷酸多态性(SNP)也通常是局部 eQTL,因此推测是顺式 eQTL。这些 SNP 通常但不总是在多个组织中影响基因表达,当它们这样做时,增加表达的等位基因通常是相同的。然而,ASE 和局部 eQTL 之间以及组织和品种之间存在系统差异。我们还发现,与基因表达显著相关(p < 0.001)的 SNP 很可能影响一些复杂性状(p < 0.001),这意味着一些突变通过改变基因的表达水平影响复杂性状的变异。
结论
我们的结论是,ASE 检测到与局部 eQTL 重叠的现象,但两种方法发现的 SNP 之间也存在系统差异。一些影响复杂性状的突变实际上是 eQTL,可以通过 RNA-Seq 包括 CAST、CAPN1、LCORL 和 LEPROTL1 基因中的 eQTL 来发现。