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Biology Articles » Immunobiology » Efficiency of the immunome protein interaction network increases during evolution » Table 1
Table 1
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Network parameters for the human immunome at the evolutionary levels of the corresponding subnetworks. |
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| Evolutionary level |
Taxon name |
Nodes |
Edges |
αa |
SE(α)a |
-2logΛa |
|
|
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| 0 |
Homo sapiens |
584 |
1349 |
2.226 |
0.0677 |
1713 |
| 1 |
Mammalia ancestors |
577 |
1335 |
2.235 |
0.0683 |
1699 |
| 2 |
Amniota ancestors |
453 |
1039 |
2.260 |
0.0790 |
1304 |
| 3 |
Tetrapoda ancestors |
357 |
770 |
2.332 |
0.0950 |
970 |
| 4 |
Vertebrata ancestors |
354 |
761 |
2.319 |
0.0950 |
957 |
| 5 |
Chordata ancestors |
159 |
254 |
2.607 |
0.1924 |
303 |
| 6 |
Coelomata |
145 |
223 |
2.725 |
0.2144 |
267 |
| 7 |
Bilateria ancestors |
106 |
124 |
3.478 |
0.4107 |
115 |
| 8 |
Fungi/Metazoa ancestors |
62 |
57 |
4.376 |
0.9953 |
29 |
| 9 |
Eukaryota ancestors |
48 |
39 |
4.585 |
1.5668 |
12 |
|
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aEstimates for power law exponent (α) of the degree distributions are presented with the standard error [SE(α)] together and the log-likelihood ratios (-2logΛ) of the power law degree distributions. |
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