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Table 1 Functional Classification of Genes with Statistically Significant Data

From: Specific elements of the glyoxylate pathway play a significant role in the functional transition of the soybean cotyledon during seedling development

 

Total

Percentage

1. Biological Process

1335

37.15

a. Cellular process

  

   i. Cell communication

1

0.03

   ii. Cell Death

17

0.47

   iii. Cell Differentiation

1

0.03

   iv. Cell Growth and/or Maintenance

3

0.08

1. Cell growth

2

0.06

2. Transport

90

2.50

b. Physiological process

  

   i. Photosynthesis

11

0.31

   ii. Response to stress

12

0.33

   iii. Response to external stimulus

3

0.08

   iv. Metabolism

373

10.38

1. Amino acid and derivative metabolism

14

0.39

2. Biosynthesis – Anabolism

43

1.20

3. Carbohydrate metabolism

74

2.06

4. Catabolism

22

0.61

5. Electron transport – transfer

91

2.53

6. Energy pathways

9

0.25

7. Lipid Metabolism

14

0.39

8. Nucleobase, nucleoside, nucleotide and nucleic acid metabolism

126

3.51

a. Transcription

41

1.14

9. Protein Metabolism

211

5.87

a. Protein Biosynthesis

120

3.34

b. Protein modification

7

0.19

10. Secondary metabolism

50

1.39

2. Cellular Component

778

21.65

a. Intracellular

12

0.33

   i. Cytoplasm

2

0.06

1. Cytoskeleton

19

0.53

2. Endoplasmic Reticulum

3

0.08

3. Mitochondrion

148

4.12

4. Plastid Chloroplast

283

7.87

5. Ribosome

2

0.06

i. Nucleus

51

1.42

ii. Thylakoid

2

0.06

b. Membrane

233

6.48

   i. Plasma Membrane, cell membrane, cytoplasmic membrane

23

0.64

3. Molecular Function

596

16.58

a. Catalytic activity

331

9.21

b. Binding

89

2.48

   i. Nuclei acid binding

47

1.31

a. Transcription factor activity

78

2.17

b. Translation factor activity, nucleic acid binding

8

0.22

   ii. Protein Binding

8

0.22

c. Molecular function unknown

10

0.28

d. Signal transducer activity

11

0.31

e. Structural molecule activity

8

0.22

f. Transporter activity

6

0.17

4. No Annotations

885

24.62