4.7 Article

Validation of PDE9A Gene Identified in GWAS Showing Strong Association with Milk Production Traits in Chinese Holstein

Journal

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
Volume 16, Issue 11, Pages 26530-26542

Publisher

MDPI
DOI: 10.3390/ijms161125976

Keywords

dairy cattle; PDE9A; milk production traits; association analysis; GWAS; gene expression

Funding

  1. High Technology Research and Development Program of China [2013AA102504]
  2. Beijing Innovation Team of Technology System in the National Dairy Industry
  3. National Natural Science Foundation of China [31072016]
  4. National Key Technologies R D Program [2011BAD28B02, 2012BAD12B01, 10ZCKFNC02700]
  5. 948 Program [2011-G2A]
  6. Beijing Research and Technology program [D121100003312001]
  7. Program for Changjiang Scholar and Innovation Research Team in University [IRT1191]

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Phosphodiesterase9A (PDE9A) is a cyclic guanosine monophosphate (cGMP)-specific enzyme widely expressed among the tissues, which is important in activating cGMP-dependent signaling pathways. In our previous genome-wide association study, a single nucleotide polymorphism (SNP) (BTA-55340-no-rs(b)) located in the intron 14 of PDE9A, was found to be significantly associated with protein yield. In addition, we found that PDE9A was highly expressed in mammary gland by analyzing its mRNA expression in different tissues. The objectives of this study were to identify genetic polymorphisms of PDE9A and to determine the effects of these variants on milk production traits in dairy cattle. DNA sequencing identified 11 single nucleotide polymorphisms (SNPs) and six SNPs in 5 regulatory region were genotyped to test for the subsequent association analyses. After Bonferroni correction for multiple testing, all these identified SNPs were statistically significant for one or more milk production traits (p < 0.0001 similar to 0.0077). Interestingly, haplotype-based association analysis revealed similar effects on milk production traits (p < 0.01). In follow-up RNA expression analyses, two SNPs (c.-1376 G>A, c.-724 A>G) were involved in the regulation of gene expression. Consequently, our findings provide confirmatory evidences for associations of PDE9A variants with milk production traits and these identified SNPs may serve as genetic markers to accelerate Chinese Holstein breeding program.

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