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Table 5 Functional enrichment analysis of biological functions between proteins with pQTL and the complete list of proteins

From: Deciphering mechanisms underlying the genetic variation of general production and liver quality traits in the overfed mule duck by pQTL analyses

Diseases or function annotation (Ingenuity)

Complete

pQTL

P value

Number of molecules

Rank

P value

Number of molecules

Rank

Synthesis of purine nucleotide

9.97E−10

11

6

5.69E−09

9

1

Metabolism of nucleic acid component or derivative

7.89E−12

20

1

6.02E−09

14

2

Metabolism of dicarboxylic acid

2.21E−07

5

16

2.91E−08

5

3

Metabolism of nucleotide

2.07E−09

16

7

5.88E−08

12

4

Metabolism of hydrogen peroxide

2.63E−10

10

2

1.03E−07

7

5

Cell viability

6.29E−07

24

26

1.13E−07

20

6

Metabolism of nucleoside triphosphate

2.3E−08

9

11

3.14E−07

7

7

Cell viability of tumor cell lines

1.57E−05

16

41

3.45E−07

15

8

Catabolism of hydrogen peroxide

3.02E−10

6

4

3.83E−07

4

9

Biosynthesis of purine ribonucleotide

3.85E−07

7

21

6.28E−07

6

10

Synthesis of nucleotide

6.13E−07

12

25

6.86E−07

10

11

Biosynthesis of nucleoside triphosphate

5.98E−07

7

24

9.19E−07

6

12

Polymerization of protein

6.77E−06

11

35

1.06E−06

10

13

Fatty acid metabolism

1.46E−06

15

28

2.39E−06

12

14

Synthesis of acetyl-coenzyme A

1.64E−07

4

13

5.15E−06

3

15

  1. Only the top 15 biological functions are shown according to Ingenuity analysis