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sample_id
stringlengths
23
23
population
stringclasses
7 values
region
stringclasses
5 values
is_SSA
bool
2 classes
is_reference_panel
bool
2 classes
sex
stringclasses
2 values
age
int64
18
90
diet_pattern
stringclasses
3 values
enterotype
stringclasses
3 values
shannon_index
float64
1.98
5.43
observed_richness
int64
43
306
rel_abundance_Bacteroides
float64
0
0.76
rel_abundance_Prevotella
float64
0
0.78
rel_abundance_Faecalibacterium
float64
0.05
0.38
rel_abundance_Ruminococcus
float64
0.05
0.49
functional_SCFA_potential
float64
1.22
5
functional_Bile_acid_potential
float64
0.87
5
functional_Mucin_deg_potential
float64
1.26
4.95
MICROBIOME_SAMPLE_00001
SSA_West
West
true
false
Female
53
Mixed_transition
Bacteroides
3.942
188
0.6618
0.0509
0.1251
0.1622
2.887012
3.518768
2.868167
MICROBIOME_SAMPLE_00002
SSA_West
West
true
false
Female
39
Westernized_high_fat_sugar
Prevotella
4.241
187
0.1068
0.5679
0.1498
0.1755
4.334107
2.001164
2.404391
MICROBIOME_SAMPLE_00003
SSA_West
West
true
false
Female
58
High_fiber_plant_rich
Ruminococcus_like
4.278
267
0.1965
0.169
0.2302
0.4043
3.197576
2.397544
3.408904
MICROBIOME_SAMPLE_00004
SSA_West
West
true
false
Female
60
High_fiber_plant_rich
Prevotella
4.102
158
0.0628
0.679
0.1337
0.1246
3.806894
2.042121
3.134634
MICROBIOME_SAMPLE_00005
SSA_West
West
true
false
Female
29
Mixed_transition
Prevotella
4.855
214
0.0804
0.6331
0.1489
0.1376
3.98827
1.991332
3.235568
MICROBIOME_SAMPLE_00006
SSA_West
West
true
false
Female
36
High_fiber_plant_rich
Prevotella
4.466
168
0.1093
0.5817
0.2022
0.1068
4.198045
2.570966
3.349487
MICROBIOME_SAMPLE_00007
SSA_West
West
true
false
Female
51
Westernized_high_fat_sugar
Bacteroides
3.969
182
0.597
0.0846
0.1305
0.1879
2.501568
4.584438
2.497529
MICROBIOME_SAMPLE_00008
SSA_West
West
true
false
Female
47
High_fiber_plant_rich
Prevotella
3.451
183
0.094
0.6676
0.136
0.1024
4.257783
2.567795
3.237364
MICROBIOME_SAMPLE_00009
SSA_West
West
true
false
Female
50
High_fiber_plant_rich
Bacteroides
4.314
190
0.6238
0.0737
0.1445
0.158
2.361228
3.541946
2.560842
MICROBIOME_SAMPLE_00010
SSA_West
West
true
false
Female
41
Mixed_transition
Ruminococcus_like
4.876
226
0.1711
0.2112
0.2152
0.4026
3.015799
3.801522
4.199761
MICROBIOME_SAMPLE_00011
SSA_West
West
true
false
Female
60
High_fiber_plant_rich
Bacteroides
3.986
170
0.65
0.0473
0.1742
0.1285
2.670832
4.334145
2.754607
MICROBIOME_SAMPLE_00012
SSA_West
West
true
false
Female
59
High_fiber_plant_rich
Prevotella
3.537
161
0.057
0.6416
0.1489
0.1525
3.989047
2.08476
3.495247
MICROBIOME_SAMPLE_00013
SSA_West
West
true
false
Female
51
Mixed_transition
Prevotella
4.055
210
0.0501
0.6228
0.1687
0.1584
4.06305
2.22595
4.028845
MICROBIOME_SAMPLE_00014
SSA_West
West
true
false
Female
62
Westernized_high_fat_sugar
Ruminococcus_like
4.233
188
0.1857
0.1608
0.2839
0.3695
4.271061
3.428329
3.606353
MICROBIOME_SAMPLE_00015
SSA_West
West
true
false
Female
55
Westernized_high_fat_sugar
Bacteroides
4.248
254
0.6344
0.0772
0.1031
0.1853
2.93927
3.40176
3.174032
MICROBIOME_SAMPLE_00016
SSA_West
West
true
false
Female
41
Mixed_transition
Prevotella
4.148
246
0.0459
0.637
0.1614
0.1556
4.24216
2.7046
2.678111
MICROBIOME_SAMPLE_00017
SSA_West
West
true
false
Female
54
Mixed_transition
Prevotella
4.002
237
0.0512
0.6255
0.1172
0.2061
4.923462
2.355904
3.107943
MICROBIOME_SAMPLE_00018
SSA_West
West
true
false
Female
39
Mixed_transition
Prevotella
3.961
194
0.0731
0.6233
0.1564
0.1473
4.12488
2.368993
2.755864
MICROBIOME_SAMPLE_00019
SSA_West
West
true
false
Female
60
High_fiber_plant_rich
Prevotella
4.658
207
0.0648
0.6504
0.085
0.1999
4.109752
3.273782
2.552262
MICROBIOME_SAMPLE_00020
SSA_West
West
true
false
Female
49
High_fiber_plant_rich
Bacteroides
4.245
202
0.6542
0.0607
0.1139
0.1712
2.086963
3.249197
2.447747
MICROBIOME_SAMPLE_00021
SSA_West
West
true
false
Female
48
High_fiber_plant_rich
Prevotella
4.492
240
0.0848
0.6146
0.2017
0.0988
3.834708
2.265928
3.257423
MICROBIOME_SAMPLE_00022
SSA_West
West
true
false
Female
43
Mixed_transition
Ruminococcus_like
4.332
218
0.1912
0.2157
0.2458
0.3474
2.90538
2.614082
4.105932
MICROBIOME_SAMPLE_00023
SSA_West
West
true
false
Female
63
High_fiber_plant_rich
Prevotella
4.312
231
0.0251
0.6967
0.1472
0.1311
3.899673
2.814708
3.192496
MICROBIOME_SAMPLE_00024
SSA_West
West
true
false
Female
48
High_fiber_plant_rich
Ruminococcus_like
3.673
216
0.1273
0.1669
0.3481
0.3577
3.4969
2.575586
2.909079
MICROBIOME_SAMPLE_00025
SSA_West
West
true
false
Female
45
High_fiber_plant_rich
Bacteroides
4.569
195
0.6696
0.0576
0.1532
0.1196
3.052832
4.016205
2.255524
MICROBIOME_SAMPLE_00026
SSA_West
West
true
false
Female
46
High_fiber_plant_rich
Prevotella
4.641
144
0.058
0.6641
0.1341
0.1437
4.450773
1.907135
2.564121
MICROBIOME_SAMPLE_00027
SSA_West
West
true
false
Female
56
High_fiber_plant_rich
Prevotella
4.548
219
0.0668
0.6445
0.1344
0.1542
4.404816
3.118728
2.91747
MICROBIOME_SAMPLE_00028
SSA_West
West
true
false
Female
54
Mixed_transition
Bacteroides
4.689
174
0.64
0.1287
0.1165
0.1148
2.532682
3.840976
2.176019
MICROBIOME_SAMPLE_00029
SSA_West
West
true
false
Female
55
High_fiber_plant_rich
Prevotella
3.908
261
0.0871
0.7025
0.1054
0.1051
4.184025
3.141943
2.496026
MICROBIOME_SAMPLE_00030
SSA_West
West
true
false
Female
55
High_fiber_plant_rich
Prevotella
3.813
197
0.0669
0.7068
0.1225
0.1038
4.190634
2.639032
3.137021
MICROBIOME_SAMPLE_00031
SSA_West
West
true
false
Female
74
High_fiber_plant_rich
Prevotella
4.383
190
0.0651
0.6069
0.1442
0.1838
4.455143
2.297516
3.115449
MICROBIOME_SAMPLE_00032
SSA_West
West
true
false
Female
46
High_fiber_plant_rich
Bacteroides
3.768
214
0.5995
0.0504
0.2068
0.1433
2.30015
3.481818
3.545982
MICROBIOME_SAMPLE_00033
SSA_West
West
true
false
Female
44
Mixed_transition
Prevotella
4.019
205
0.0692
0.6349
0.1882
0.1076
4.257852
2.370841
2.700382
MICROBIOME_SAMPLE_00034
SSA_West
West
true
false
Female
41
Westernized_high_fat_sugar
Prevotella
3.153
198
0.07
0.627
0.0975
0.2055
4.185206
2.407858
3.778098
MICROBIOME_SAMPLE_00035
SSA_West
West
true
false
Female
57
High_fiber_plant_rich
Prevotella
3.628
147
0.0874
0.6428
0.1753
0.0945
4.281439
2.795707
3.274469
MICROBIOME_SAMPLE_00036
SSA_West
West
true
false
Female
62
High_fiber_plant_rich
Prevotella
3.79
180
0.0449
0.6697
0.1466
0.1389
3.696483
1.880161
3.684438
MICROBIOME_SAMPLE_00037
SSA_West
West
true
false
Female
49
High_fiber_plant_rich
Prevotella
3.396
238
0.0759
0.6274
0.1298
0.1669
2.818762
2.070323
2.852366
MICROBIOME_SAMPLE_00038
SSA_West
West
true
false
Female
41
High_fiber_plant_rich
Prevotella
3.965
225
0.1214
0.6523
0.1218
0.1046
4.298168
3.05801
3.118385
MICROBIOME_SAMPLE_00039
SSA_West
West
true
false
Female
41
Mixed_transition
Ruminococcus_like
4.435
151
0.1674
0.2111
0.2403
0.3813
3.173225
3.133739
3.259704
MICROBIOME_SAMPLE_00040
SSA_West
West
true
false
Female
57
Westernized_high_fat_sugar
Prevotella
3.457
175
0.0377
0.658
0.1252
0.179
4.40936
2.624118
2.39294
MICROBIOME_SAMPLE_00041
SSA_West
West
true
false
Female
58
High_fiber_plant_rich
Ruminococcus_like
4.041
213
0.1966
0.1795
0.2873
0.3366
3.106576
3.349464
3.76259
MICROBIOME_SAMPLE_00042
SSA_West
West
true
false
Female
56
Westernized_high_fat_sugar
Ruminococcus_like
3.982
120
0.2139
0.1457
0.3077
0.3328
2.912133
2.82656
3.88069
MICROBIOME_SAMPLE_00043
SSA_West
West
true
false
Female
43
High_fiber_plant_rich
Prevotella
4.246
182
0.0878
0.5736
0.1391
0.1994
3.904288
2.474692
2.235584
MICROBIOME_SAMPLE_00044
SSA_West
West
true
false
Female
53
High_fiber_plant_rich
Bacteroides
3.968
212
0.6509
0.0377
0.1917
0.1197
2.294031
3.891794
3.226809
MICROBIOME_SAMPLE_00045
SSA_West
West
true
false
Female
51
Mixed_transition
Prevotella
4.162
213
0.0966
0.5796
0.1577
0.1661
4.713584
2.600769
2.962975
MICROBIOME_SAMPLE_00046
SSA_West
West
true
false
Female
52
High_fiber_plant_rich
Ruminococcus_like
3.989
194
0.1856
0.2124
0.2294
0.3726
3.997908
3.39824
3.646476
MICROBIOME_SAMPLE_00047
SSA_West
West
true
false
Female
60
Mixed_transition
Prevotella
3.398
206
0.0016
0.6979
0.1572
0.1433
4.868553
3.129737
3.313125
MICROBIOME_SAMPLE_00048
SSA_West
West
true
false
Female
52
High_fiber_plant_rich
Bacteroides
4.348
157
0.6064
0.1047
0.1332
0.1556
2.726591
3.359658
2.491963
MICROBIOME_SAMPLE_00049
SSA_West
West
true
false
Female
57
High_fiber_plant_rich
Prevotella
3.737
200
0.0358
0.6891
0.1231
0.1519
4.072153
2.545902
2.191106
MICROBIOME_SAMPLE_00050
SSA_West
West
true
false
Female
51
High_fiber_plant_rich
Prevotella
4.314
181
0.0699
0.6285
0.1943
0.1074
3.840106
2.443039
2.799456
MICROBIOME_SAMPLE_00051
SSA_West
West
true
false
Female
53
High_fiber_plant_rich
Ruminococcus_like
3.823
156
0.2227
0.2423
0.2484
0.2866
3.495218
2.607569
3.180332
MICROBIOME_SAMPLE_00052
SSA_West
West
true
false
Female
57
Westernized_high_fat_sugar
Bacteroides
3.958
144
0.5864
0.107
0.1509
0.1557
1.707101
4.179113
2.325792
MICROBIOME_SAMPLE_00053
SSA_West
West
true
false
Female
34
High_fiber_plant_rich
Prevotella
3.875
131
0.115
0.5731
0.1442
0.1677
4.089635
2.94096
2.70857
MICROBIOME_SAMPLE_00054
SSA_West
West
true
false
Female
46
Mixed_transition
Prevotella
3.898
193
0.0388
0.7188
0.1476
0.0948
3.816935
2.261978
3.241135
MICROBIOME_SAMPLE_00055
SSA_West
West
true
false
Female
45
Mixed_transition
Prevotella
4.308
171
0.0695
0.6304
0.1562
0.144
3.748576
2.40344
3.084472
MICROBIOME_SAMPLE_00056
SSA_West
West
true
false
Female
43
High_fiber_plant_rich
Bacteroides
3.469
229
0.592
0.1191
0.112
0.1769
2.974312
3.727107
2.449343
MICROBIOME_SAMPLE_00057
SSA_West
West
true
false
Female
47
Westernized_high_fat_sugar
Prevotella
3.8
146
0.1148
0.5885
0.1443
0.1524
4.143
2.578115
3.27856
MICROBIOME_SAMPLE_00058
SSA_West
West
true
false
Female
66
Mixed_transition
Bacteroides
3.983
236
0.6918
0.0409
0.0929
0.1743
3.028149
4.582791
2.895156
MICROBIOME_SAMPLE_00059
SSA_West
West
true
false
Female
40
Mixed_transition
Prevotella
4.686
221
0.0359
0.6633
0.1563
0.1445
3.984758
3.026891
2.597267
MICROBIOME_SAMPLE_00060
SSA_West
West
true
false
Female
61
High_fiber_plant_rich
Bacteroides
3.757
152
0.602
0.0982
0.1624
0.1373
1.849558
3.973084
2.530509
MICROBIOME_SAMPLE_00061
SSA_West
West
true
false
Female
31
High_fiber_plant_rich
Ruminococcus_like
4.005
206
0.1732
0.1413
0.2759
0.4096
3.216107
3.027369
3.269732
MICROBIOME_SAMPLE_00062
SSA_West
West
true
false
Female
46
High_fiber_plant_rich
Prevotella
3.435
231
0.0819
0.6242
0.1464
0.1476
3.706181
2.269895
2.710317
MICROBIOME_SAMPLE_00063
SSA_West
West
true
false
Male
52
Westernized_high_fat_sugar
Prevotella
4.167
238
0.108
0.61
0.138
0.144
4.244611
2.310403
2.860588
MICROBIOME_SAMPLE_00064
SSA_West
West
true
false
Female
56
High_fiber_plant_rich
Bacteroides
3.523
175
0.5996
0.0486
0.1756
0.1762
2.474723
4.249594
3.141617
MICROBIOME_SAMPLE_00065
SSA_West
West
true
false
Female
58
Mixed_transition
Prevotella
3.919
212
0.0367
0.6836
0.1727
0.1069
3.684393
2.5685
2.7647
MICROBIOME_SAMPLE_00066
SSA_West
West
true
false
Female
59
Westernized_high_fat_sugar
Prevotella
4.71
190
0.1269
0.596
0.0942
0.1828
4.439472
2.552059
3.158653
MICROBIOME_SAMPLE_00067
SSA_West
West
true
false
Female
46
Mixed_transition
Ruminococcus_like
4.083
238
0.1744
0.2168
0.285
0.3238
3.673503
3.609038
3.367927
MICROBIOME_SAMPLE_00068
SSA_West
West
true
false
Female
45
High_fiber_plant_rich
Ruminococcus_like
3.135
200
0.1996
0.1795
0.2737
0.3473
2.401191
3.665038
3.252868
MICROBIOME_SAMPLE_00069
SSA_West
West
true
false
Female
59
Mixed_transition
Prevotella
4.491
200
0.0913
0.5958
0.1373
0.1757
3.729143
2.000667
2.931442
MICROBIOME_SAMPLE_00070
SSA_West
West
true
false
Female
48
Mixed_transition
Prevotella
3.549
101
0.1068
0.6683
0.137
0.0879
4.409165
2.540135
3.024078
MICROBIOME_SAMPLE_00071
SSA_West
West
true
false
Female
36
Mixed_transition
Prevotella
4.221
118
0.0465
0.6775
0.1306
0.1453
4.09848
2.802575
2.307918
MICROBIOME_SAMPLE_00072
SSA_West
West
true
false
Female
38
Mixed_transition
Bacteroides
3.73
183
0.6065
0.0744
0.1681
0.151
2.475255
3.330916
2.698867
MICROBIOME_SAMPLE_00073
SSA_West
West
true
false
Female
40
High_fiber_plant_rich
Bacteroides
4.333
234
0.6746
0.0618
0.1477
0.1158
3.401793
3.620446
2.256618
MICROBIOME_SAMPLE_00074
SSA_West
West
true
false
Female
55
High_fiber_plant_rich
Ruminococcus_like
3.822
240
0.1491
0.1376
0.3201
0.3932
3.110822
3.223854
3.454685
MICROBIOME_SAMPLE_00075
SSA_West
West
true
false
Female
52
Mixed_transition
Bacteroides
3.433
165
0.6425
0.0941
0.1087
0.1547
2.53077
3.784138
2.759586
MICROBIOME_SAMPLE_00076
SSA_West
West
true
false
Female
58
Mixed_transition
Prevotella
4.598
179
0.109
0.617
0.1387
0.1353
4.092487
2.232061
2.938454
MICROBIOME_SAMPLE_00077
SSA_West
West
true
false
Female
45
Mixed_transition
Prevotella
4.522
143
0.0385
0.6625
0.1683
0.1307
3.720966
2.957537
3.174351
MICROBIOME_SAMPLE_00078
SSA_West
West
true
false
Female
52
Mixed_transition
Bacteroides
3.892
223
0.6535
0.0626
0.1353
0.1486
2.950033
3.196134
2.851621
MICROBIOME_SAMPLE_00079
SSA_West
West
true
false
Female
57
High_fiber_plant_rich
Prevotella
4.042
182
0.0632
0.6299
0.1265
0.1805
4.01002
2.349621
2.642139
MICROBIOME_SAMPLE_00080
SSA_West
West
true
false
Female
47
High_fiber_plant_rich
Ruminococcus_like
4.406
164
0.1126
0.2069
0.2954
0.3851
3.564622
1.906592
4.030498
MICROBIOME_SAMPLE_00081
SSA_West
West
true
false
Female
55
High_fiber_plant_rich
Ruminococcus_like
3.92
208
0.1983
0.1565
0.2109
0.4343
3.58245
3.062741
3.47031
MICROBIOME_SAMPLE_00082
SSA_West
West
true
false
Female
43
Westernized_high_fat_sugar
Ruminococcus_like
3.265
178
0.1757
0.1871
0.3198
0.3174
2.660343
2.727302
3.461738
MICROBIOME_SAMPLE_00083
SSA_West
West
true
false
Female
46
High_fiber_plant_rich
Bacteroides
3.985
219
0.6214
0.0913
0.1493
0.138
2.17384
3.347363
2.738833
MICROBIOME_SAMPLE_00084
SSA_West
West
true
false
Female
46
Mixed_transition
Bacteroides
4.366
183
0.6134
0.0718
0.1871
0.1278
2.683711
3.77783
2.295676
MICROBIOME_SAMPLE_00085
SSA_West
West
true
false
Female
37
High_fiber_plant_rich
Prevotella
4.144
142
0.0977
0.6128
0.1211
0.1685
3.58726
2.100927
2.168301
MICROBIOME_SAMPLE_00086
SSA_West
West
true
false
Female
55
High_fiber_plant_rich
Bacteroides
3.431
161
0.629
0.0622
0.1557
0.153
2.763021
3.415614
2.677064
MICROBIOME_SAMPLE_00087
SSA_West
West
true
false
Female
45
High_fiber_plant_rich
Prevotella
3.405
176
0.0544
0.6616
0.1394
0.1446
3.991019
1.548356
2.101221
MICROBIOME_SAMPLE_00088
SSA_West
West
true
false
Male
50
Mixed_transition
Prevotella
4.006
160
0.0629
0.617
0.1608
0.1593
3.778634
2.38003
3.01048
MICROBIOME_SAMPLE_00089
SSA_West
West
true
false
Female
55
High_fiber_plant_rich
Prevotella
4.089
231
0.0429
0.7003
0.0917
0.165
4.25901
1.377846
2.975315
MICROBIOME_SAMPLE_00090
SSA_West
West
true
false
Female
55
Westernized_high_fat_sugar
Bacteroides
3.622
217
0.5999
0.0927
0.1461
0.1613
3.043694
3.718391
2.713642
MICROBIOME_SAMPLE_00091
SSA_West
West
true
false
Female
57
High_fiber_plant_rich
Prevotella
3.65
214
0.109
0.6591
0.1583
0.0736
3.745667
2.16616
2.917947
MICROBIOME_SAMPLE_00092
SSA_West
West
true
false
Female
49
High_fiber_plant_rich
Bacteroides
3.668
268
0.5923
0.0523
0.1765
0.1789
2.859979
3.492218
2.800811
MICROBIOME_SAMPLE_00093
SSA_West
West
true
false
Female
45
Mixed_transition
Prevotella
4.062
161
0.1034
0.6377
0.139
0.1199
4.415044
2.133549
3.356804
MICROBIOME_SAMPLE_00094
SSA_West
West
true
false
Female
49
High_fiber_plant_rich
Prevotella
4.112
173
0.0871
0.6377
0.131
0.1443
3.367114
2.369661
3.159845
MICROBIOME_SAMPLE_00095
SSA_West
West
true
false
Female
31
Mixed_transition
Prevotella
3.949
174
0.0387
0.6186
0.195
0.1477
3.765786
1.997543
2.260588
MICROBIOME_SAMPLE_00096
SSA_West
West
true
false
Female
34
High_fiber_plant_rich
Ruminococcus_like
3.929
156
0.1561
0.2124
0.279
0.3525
3.076645
3.882353
3.887849
MICROBIOME_SAMPLE_00097
SSA_West
West
true
false
Female
35
High_fiber_plant_rich
Prevotella
4.04
167
0.0844
0.6534
0.1477
0.1145
3.735595
2.648228
3.188029
MICROBIOME_SAMPLE_00098
SSA_West
West
true
false
Female
39
Mixed_transition
Prevotella
4.12
199
0.0885
0.6368
0.1383
0.1363
3.965081
2.087868
2.582789
MICROBIOME_SAMPLE_00099
SSA_West
West
true
false
Female
54
High_fiber_plant_rich
Ruminococcus_like
4.426
188
0.1985
0.1922
0.2845
0.3248
3.36356
3.295155
2.779469
MICROBIOME_SAMPLE_00100
SSA_West
West
true
false
Female
40
High_fiber_plant_rich
Prevotella
4.479
218
0.0855
0.614
0.1354
0.1651
3.610713
1.975713
2.741068
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SSA Breast Gut Microbiome Dataset (Women, Multi-ancestry, Synthetic)

Dataset summary

This dataset provides a synthetic gut microbiome cohort linked conceptually to women with invasive breast cancer across multiple ancestry groups, with emphasis on Sub-Saharan Africa (SSA) and comparable reference populations.

It approximates 16S rRNA stool profiles at a coarse genus/functional level, focusing on factors that vary with diet and geography:

  • Diet patterns – high-fiber plant-rich vs mixed-transition vs Westernized diets.
  • Enterotypes – Bacteroides-, Prevotella-, and Ruminococcus-like communities.
  • Alpha diversity – Shannon index and observed richness.
  • Core genus relative abundances – Bacteroides, Prevotella, Faecalibacterium, Ruminococcus.
  • Functional scores – predicted potential for short-chain fatty acid (SCFA) production, bile acid transformation, and mucin degradation, loosely inspired by PICRUSt/KEGG/MetaCyc pathway analyses.

The dataset is informed by De Filippo et al. (Burkina Faso vs Italy), Yatsunenko et al. (age and geography), Arumugam et al. (enterotypes), SSA rural/urban cohorts, and functional prediction studies, while remaining fully synthetic and non-identifiable.

Cohort design

Sample size and populations

  • Total N: 10,000 synthetic gut microbiome profiles.
  • Populations:
    • SSA_West: 2,000
    • SSA_East: 2,000
    • SSA_Central: 1,500
    • SSA_Southern: 1,500
    • AAW (African American women): 1,500
    • EUR (European reference): 1,000
    • EAS (East Asian reference): 500

Demographic structure mirrors other Electric Sheep Africa breast cancer modules:

  • Predominantly women, small male fraction (~1%).
  • Ages 18–90, with younger mean ages in SSA vs older in EUR/EAS/AAW.

Diet patterns and enterotypes

Diet pattern

Variable:

  • diet_pattern – one of:
    • High_fiber_plant_rich
    • Mixed_transition
    • Westernized_high_fat_sugar

Anchoring:

  • High_fiber_plant_rich – inspired by rural African and Amerindian diets (high fiber, resistant starch, low animal fat) in De Filippo and Yatsunenko.
  • Westernized_high_fat_sugar – reflects urban/industrialized diets rich in animal protein, fat, and refined carbohydrates.
  • Mixed_transition – intermediate pattern seen in migrants and urbanizing SSA cohorts.

SSA populations are enriched for High_fiber_plant_rich and Mixed_transition patterns, while EUR/EAS have higher probabilities of Westernized_high_fat_sugar diets.

Enterotypes

Variable:

  • enterotype – Bacteroides, Prevotella, or Ruminococcus_like.

Anchoring:

  • Based on Arumugam et al. and later enterotype literature.
  • Prevotella enterotypes are more common in high-fiber, plant-rich diets (rural SSA and some AAW groups).
  • Bacteroides enterotypes are enriched in Westernized diets (EUR/EAS, some AAW urban cohorts).
  • Ruminococcus-like enterotypes represent intermediate/alternative communities.

In this dataset:

  • SSA_West/East/Central have Prevotella fractions β‰ˆ0.50–0.55 and Bacteroides β‰ˆ0.25–0.30.
  • EUR/EAS have Bacteroides β‰ˆ0.52–0.60 and Prevotella β‰ˆ0.15–0.20.

Diversity metrics

Alpha diversity

Variables:

  • shannon_index – Shannon diversity index (log base e).
  • observed_richness – approximate number of observed taxa.

Anchoring:

  • Yatsunenko et al. and rural/urban SSA studies report higher richness and Shannon diversity in traditional, high-fiber populations vs Western cohorts.

Approximate configuration:

  • SSA_West/East/Central: Shannon β‰ˆ4.0–4.1; richness β‰ˆ185–190.
  • SSA_Southern/AAW: slightly lower but still elevated.
  • EUR/EAS: Shannon β‰ˆ3.4–3.5; richness β‰ˆ155–160.

Beta diversity

This dataset does not pre-compute beta diversity matrices (e.g., UniFrac, Bray–Curtis). Instead, it provides per-sample genus-level profiles (rel_abundance_* columns) and diversity metrics that allow users to compute:

  • Ordination (PCoA) on genus relative abundances.
  • Distance matrices (Bray–Curtis, Jaccard, etc.).

Core genus profiles

Variables (relative abundances):

  • rel_abundance_Bacteroides
  • rel_abundance_Prevotella
  • rel_abundance_Faecalibacterium
  • rel_abundance_Ruminococcus

Construction:

  • For each enterotype, a template profile is defined (e.g., Bacteroides-dominant vs Prevotella-dominant), with small per-sample Gaussian noise followed by renormalization.
  • This mirrors 16S-derived community structures without modeling hundreds of taxa.

Examples:

  • Bacteroides enterotype: high Bacteroides, low Prevotella.
  • Prevotella enterotype: high Prevotella, lower Bacteroides.
  • Ruminococcus-like: more balanced Bacteroides/Prevotella with increased Ruminococcus and Faecalibacterium.

Functional pathway scores

Variables:

  • functional_SCFA_potential – predicted short-chain fatty acid (e.g., butyrate) production capacity.
  • functional_Bile_acid_potential – predicted bile acid transformation capacity.
  • functional_Mucin_deg_potential – predicted mucin-degradation capacity.

Interpretation:

  • These are dimensionless scores on a 0–5 scale, intended to mimic PICRUSt/KEGG/MetaCyc-inferred functional potential from 16S data.
  • Means are enterotype-specific:
    • Prevotella enterotypes have higher SCFA potential and somewhat lower bile acid potential.
    • Bacteroides enterotypes show relatively higher bile acid potential.
    • Ruminococcus-like enterotypes show intermediate SCFA and bile acid, with slightly higher mucin-degradation potential.

File and schema

gut_microbiome_data.parquet / gut_microbiome_data.csv

Each row represents a synthetic gut microbiome profile:

  • Demographics

    • sample_id
    • population
    • region
    • is_SSA
    • is_reference_panel
    • sex
    • age
  • Diet and enterotype

    • diet_pattern
    • enterotype
  • Alpha diversity

    • shannon_index
    • observed_richness
  • Core genera

    • rel_abundance_Bacteroides
    • rel_abundance_Prevotella
    • rel_abundance_Faecalibacterium
    • rel_abundance_Ruminococcus
  • Functional scores

    • functional_SCFA_potential
    • functional_Bile_acid_potential
    • functional_Mucin_deg_potential

Generation

The dataset is generated using:

  • gut_microbiome/scripts/generate_gut_microbiome.py

with configuration in:

  • gut_microbiome/configs/gut_microbiome_config.yaml

and literature inventory in:

  • gut_microbiome/docs/LITERATURE_INVENTORY.csv

Generation steps:

  1. Cohort sampling – multi-ancestry demographic cohort.
  2. Diet pattern assignment – population-specific probabilities reflecting rural/traditional, transitional, and Westernized diets.
  3. Enterotype assignment – population-specific Bacteroides/Prevotella/Ruminococcus-like distributions conditioned on geography and diet literature.
  4. Alpha diversity sampling – Shannon and richness drawn by population, matching rural vs Western richness trends.
  5. Genus profile sampling – sample core genus relative abundances from enterotype-specific templates with noise and renormalization.
  6. Functional scores – draw SCFA, bile acid, and mucin-degradation scores by enterotype.

Validation

Validation is performed with:

  • gut_microbiome/scripts/validate_gut_microbiome.py

and summarized in:

  • gut_microbiome/output/validation_report.md

Checks include:

  • C01–C02 – Sample size and population counts vs config.
  • C03 – Diet pattern distributions by population.
  • C04 – Enterotype distributions by population.
  • C05 – Alpha diversity means (Shannon and richness) by population.
  • C06 – Functional score means by enterotype.
  • C07 – Missingness across key variables.

All checks are configured with a 10% relative deviation tolerance, aiming for an overall status of PASS in the released version.

Intended use

This dataset is intended for:

  • Epidemiologic and methodological simulations linking gut microbiome patterns with diet, geography, and breast cancer.
  • Integration with other Electric Sheep Africa synthetic datasets (pathology, IHC, immune profiles, systemic markers) to build multi-modal models.
  • Educational use for understanding enterotypes, diversity, and functional potential across global populations.

It is not suitable for:

  • Estimating exact taxon abundances or functional pathway prevalence in any specific cohort.
  • Direct clinical microbiome interpretation or individualized dietary recommendations.

Ethical considerations

  • No real stool or sequencing data are used; all profiles are simulated from literature-informed distributions.
  • Modeled geographic/dietary differences are intended for methodological realism and should not be used to stereotype populations.

License

  • License: CC BY-NC 4.0.
  • Free for non-commercial research, methods development, and education with attribution.

Citation

If you use this dataset, please cite:

Electric Sheep Africa. "SSA Breast Gut Microbiome Dataset (Women, Multi-ancestry, Synthetic)." Hugging Face Datasets.

and, as appropriate, key literature on diet, geography, and the human gut microbiome (e.g., De Filippo et al. 2010, Yatsunenko et al. 2012, Arumugam et al. 2011, SSA rural/urban microbiome studies, and PICRUSt-based functional analyses).

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