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Table 1 GO enrichment analysis of DEGs in MYOD1OE, MYOD1NC, and MYOD1KO cells

From: MYOD1 inhibits avian adipocyte differentiation via miRNA-206/KLF4 axis

 

Up-regulated

Gene count

Log (q-value)

Down-regulated

Gene count

Log (q-value)

MYOD1OE vs. MYOD1KO (day 0)

blood vessel development

74

−11.19

cell involved in differentiation

25

−1.35

muscle structure development

64

9.51

extracellular matrix organization

38

−1.35

heart development

56

−8.84

ATP metabolic process

21

−1.35

actin cytoskeleton organization

60

−7.72

inorganic cation transmembrane transport

36

−1.12

muscle tissue development

41

−6.50

developmental growth

30

−0.66

MYOD1KO vs. MYOD1NC (day 0)

regulation of cell morphogenesis

18

−3.09

regulation of system process

44

−8.02

positive regulation of cell development

17

−2.34

skeletal system development

35

−5.05

cell involved in differentiation

19

−2.19

muscle structure development

37

−3.82

regulation of MAPK cascade

18

−1.89

heart development

34

−3.82

regulation of lipid metabolic process

11

−1.09

muscle system process

29

−3.66

MYOD1OE

day 5 vs. day 0

nuclear division

70

−13.19

actin cytoskeleton organization

146

−23.46

ncRNA metabolic process

78

−10.61

heart development

128

−21.58

DNA replication

48

−9.70

skeletal system development

118

−20.87

regulation of cell cycle process

83

−5.79

extracellular structure organization

95

−16.49

ribosomal large subunit biogenesis

17

−4.12

muscle structure development

126

−15.92

MYOD1NC

day 5 vs. day 0

nuclear division

59

−21.11

extracellular matrix organization

46

−11.38

cell division

71

−21.11

heart development

52

−8.01

lipid biosynthetic process

40

−2.74

muscle structure development

55

−7.35

regulation of MAPK cascade

36

−1.33

skeletal system development

45

−6.29

glycerophospholipid metabolic process

19

−1.72

regulation of lipid metabolic process

35

−4.68

MYOD1KO

day 5 vs. day 0

cell division

68

−6.78

extracellular structure organization

66

−8.36

protein autophosphorylation

22

−4.05

DNA replication

44

−4.73

mitotic nuclear division

46

−4.02

skeletal system development

61

−3.78

lipid biosynthetic process

40

−2.74

phospholipid metabolic process

53

−3.78

regulation of cell cycle process

64

−2.13

muscle structure development

56

−0.89