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Table 4 Enriched biological processes of hypermethylated genes in SO compared to SOA (> 20% methylation difference, n = 40)

From: Genome-wide assessment of DNA methylation in mouse oocytes reveals effects associated with in vitro growth, superovulation, and sexual maturity

#term ID

Term description

Observed gene count

False discovery rate

GO:0048846

Axon extension involved in axon guidance

3

0.0012

GO:0009987

Cellular process

35

0.0027

GO:0050919

Negative chemotaxis

3

0.0125

GO:0070100

Negative regulation of chemokine-mediated signaling pathway

2

0.0125

GO:0021825

Substrate-dependent cerebral cortex tangential migration

2

0.0135

GO:0035385

Roundabout signaling pathway

2

0.0135

GO:0060560

Developmental growth involved in morphogenesis

4

0.0135

GO:0023052

Signaling

17

0.0139

GO:0007154

Cell communication

17

0.0185

GO:0007268

Chemical synaptic transmission

5

0.0185

GO:0042118

Endothelial cell activation

2

0.0185

GO:1902668

Negative regulation of axon guidance

2

0.0185

GO:0003180

Aortic valve morphogenesis

2

0.0244

GO:0022008

Neurogenesis

10

0.0244

GO:0001657

Ureteric bud development

3

0.0322

GO:0001964

Startle response

2

0.0387

GO:0007399

Nervous system development

11

0.0387

GO:0035235

Ionotropic glutamate receptor signaling pathway

2

0.0387

GO:0048699

Generation of neurons

9

0.0387

GO:0050789

Regulation of biological process

27

0.0387

GO:0050794

Regulation of cellular process

26

0.0387

GO:0090287

Regulation of cellular response to growth factor stimulus

4

0.0387

GO:0120033

Negative regulation of plasma membrane bounded cell projection assembly

2

0.0387

GO:0008045

Motor neuron axon guidance

2

0.0398

GO:0030182

Neuron differentiation

7

0.0398

GO:0030517

Negative regulation of axon extension

2

0.0398

GO:0035249

Synaptic transmission, glutamatergic

2

0.0398

GO:0090288

Negative regulation of cellular response to growth factor stimulus

3

0.046

GO:0007267

Cell-cell signaling

6

0.049

GO:0021884

Forebrain neuron development

2

0.0494