Cleanup of taxonomy processing scripts. Now only one is left

This commit is contained in:
Anton Nekrutenko
2008-03-18 19:29:51 +00:00
parent ed6dce9405
commit 447be81be8
16 changed files with 251 additions and 1611 deletions
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1 all synonym
1 root scientific name
2 Bacteria scientific name
2 Monera in-part
2 Procaryotae in-part
2 Prokaryota in-part
2 Prokaryotae in-part
2 bacteria blast name
2 eubacteria genbank common name
2 not Bacteria Haeckel 1894 synonym
2 prokaryotes in-part
6 Azorhizobium scientific name
6 Azorhizobium Dreyfus et al. 1988 synonym
6 Azotirhizobium equivalent name
7 Azorhizobium caulinodans scientific name
7 Azorhizobium caulinodans Dreyfus et al. 1988 synonym
7 Azotirhizobium caulinodans equivalent name
9 Acyrthosiphon pisum symbiont P includes
9 Buchnera aphidicola scientific name
9 Buchnera aphidicola Munson et al. 1991 synonym
10 Cellvibrio Winogradsky 1929 synonym
10 Cellvibrio scientific name
10 Cellvibrio (ex Winogradsky 1929) Blackall et al. 1986 emend. Humphry et al. 2003 synonym
11 'Cellvibrio gilvus' synonym
11 Cellvibrio gilvus scientific name
13 Dictyoglomus scientific name
13 Dictyoglomus Saiki et al. 1985 synonym
14 Dictyoglomus thermophilum scientific name
14 Dictyoglomus thermophilum Saiki et al. 1985 synonym
16 Methyliphilus equivalent name
16 Methylophilus scientific name
16 Methylophilus Jenkins et al. 1987 synonym
16 Methylotrophus misspelling
17 Methyliphilus methylitrophus equivalent name
17 Methyliphilus methylotrophus equivalent name
17 Methylophilus methylitrophus equivalent name
17 Methylophilus methylotrophus scientific name
17 Methylophilus methylotrophus Jenkins et al. 1987 synonym
17 Methylotrophus methylophilus synonym
18 Pelobacter scientific name
18 Pelobacter Schink and Pfennig 1983 synonym
19 Pelobacter carbinolicus scientific name
19 Pelobacter carbinolicus Schink 1984 synonym
20 Phenylobacterium scientific name
20 Phenylobacterium Lingens et al. 1985 emend. Kanso and Patel 2004 synonym
20 Phenylobacterium Lingens et al. 1985 emend. Tiago et al. 2005 synonym
21 Phenylobacterium immobile scientific name
21 Phenylobacterium immobile Lingens et al. 1985 synonym
22 Shewanella scientific name
22 Shewanella MacDonell and Colwell 1986 synonym
23 Alteromonas colwelliana synonym
23 Shewanella colwelliana scientific name
23 Shewanella colwelliana (Weiner et al. 1988) Coyne et al. 1990 synonym
24 Pseudomonas putrefaciens (Derby and Hammer) Long and Hammer 1941 synonym
24 Alteromonas putrefaciens synonym
24 Alteromonas putrefaciens (ex Derby and Hammer) Lee et al. 1981 synonym
24 Alteromonas putrifaciens misspelling
24 Pseudomonas putrefaciens synonym
24 Shewanella putrefaciens scientific name
24 Shewanella putrefaciens (Lee et al. 1981) MacDonell and Colwell 1986 synonym
24 Shewanella putrifaciens misspelling
25 Alteromonas hanedai synonym
25 Alteromonas hanedai Jensen et al. 1981 synonym
25 Shewanella hanedai scientific name
25 Shewanella hanedai (Jensen et al. 1981) MacDonell and Colwell 1986 synonym
27 halophilic eubacterium (NRCC 41227) synonym
27 halophilic eubacterium NRCC 41227 scientific name
27 halophilic eubacterium NRCC41227 synonym
29 Myxobacteria synonym
29 Myxococcales scientific name
29 Myxococcales Tchan et al. 1948 synonym
29 The Myxobacteria synonym
29 fruiting gliding bacteria genbank common name
31 Myxococcaceae scientific name
31 Myxococcaceae Jahn 1924 synonym
32 Myxococcus scientific name
32 Myxococcus Thaxter 1892 synonym
33 Micrococcus fulvus Cohn 1875 synonym
33 Micrococcus fulvus synonym
33 Myxococcus fulvus scientific name
33 Myxococcus fulvus (Cohn 1875) Jahn 1911 synonym
34 Myxococcus xanthus scientific name
34 Myxococcus xanthus Beebe 1941 synonym
34 Myxococcus xanthus retron Mx162 includes
34 Myxococcus xanthus retron Mx65 includes
35 Chondrococcus macrosporus Krzemieniewska and Krzemieniewski 1926 synonym
35 'Corallococcus macrosporus' synonym
35 Chondrococcus macrosporus synonym
35 Corallococcus macrosporus synonym
35 Myxococcus macrosporus scientific name
35 Myxococcus macrosporus (Krzemieniewska and Krzemieniewski 1926) Zahler and McCurdy 1974 synonym
35 not Myxococcus macrosporus Zukal 1897 synonym
36 Chondrococcus coralloides (Thaxter 1892) Jahn 1924 synonym
36 Chondrococcus polycystus (Kofler 1913) Krzemieniewska and Krzemieniewski 1926 synonym
36 Myxococcus clavatus Quehl 1906 synonym
36 Myxococcus digitatus Quehl 1906 synonym
36 Myxococcus exiguus Kofler 1913 synonym
36 Myxococcus polycystus Kofler 1913 synonym
36 Chondrococcus coralloides synonym
36 Chondrococcus polycystus synonym
+1 -8
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@@ -10,15 +10,8 @@ gunzip gi_taxid_nucl.dmp.gz
gunzip gi_taxid_prot.dmp.gz
cat gi_taxid_nucl.dmp gi_taxid_prot.dmp > gi_taxid_all.dmp
rm gi_taxid_nucl.dmp gi_taxid_prot.dmp
echo "Parsing nodes.dmp..."
cat nodes.dmp | tr -s "\t" "|" | tr "|" "\t" | cut -f 1,2,3,5 > nodes.txt
echo "Collapsing taxonomy. This will take several hours..."
python tax1_NodeParser.py nodes.txt > node2child.txt
echo "Parsing names.dmg"
cat names.dmp | cut -f 1,2,4 -d "|" | tr -s "\t" "|" | tr "|" "\t" | sed s/\"//g > names.txt
echo "Running tax2_Node2Name.py"
python tax2_Node2Name.py node2child.txt names.txt taxonomy.db
echo "Running tax3_gi2tax.py"
python tax3_gi2tax.py taxonomy.db gi_taxid_all.dmp
python process_NCBI_taxonomy.py gi_taxid_all.dmp names.txt taxonomy.db
echo "Done!.."
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"""
process_NCBI_taxonomy.py <gi2tax.txt file> <name.txt> <database_name>
"""
import pkg_resources
pkg_resources.require( 'pysqlite' )
from pysqlite2 import dbapi2 as sqlite
import string, sys, tempfile
def stop_err(msg):
sys.stderr.write(msg)
sys.exit()
try:
gi2tax = open(sys.argv[1], 'r')
names = open(sys.argv[2], 'r')
db_name = sys.argv[3]
except:
stop_err('Check arguments: process_NCBI_taxonomy.py <gi2tax.txt file> <name.txt> <database_name>\n')
try:
con = sqlite.connect(db_name)
cur = con.cursor()
cur.execute('create table gi2tax(gi int unsigned not null, taxId int unsigned not null)')
cur.execute('create table t_names(taxId int unsigned not null, name text not null)')
cur.execute('create table names(taxId int unsigned not null, name text not null)')
for line in gi2tax:
fields = string.split(line.rstrip(), '\t')
cur.execute('insert into gi2tax values(%s, %s)' % ( fields[0], fields[1] ) )
gi2tax.close()
for line in names:
fields = string.split(line.rstrip(), '\t')
cur.execute('insert into t_names values(%s, "%s")' % ( fields[0], fields[1] ) )
names.close()
cur.execute('create index gi_i on gi2tax(gi)')
cur.execute('insert into names select * from t_names group by name')
cur.execute('drop table t_names')
cur.execute('create index name_i on names(name)')
cur.execute('vacuum')
con.commit()
con.close()
except Exception, e:
stop_err("%s\n" % e)
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How to prepare NCBI taxonomy for Galaxy Metagenomic Toolkit
-----------------------------------------------------------
1. run runTest.sh
If this script produces NO messages -> everything is OK
2. run processTaxonomy.sh
This script does several things:
- downloads taxonomy dump tarball from NCBI ftp site
- downloads very large gi2taxId files for nucleotide and protein entries of GenBank
- runs a series of 3 python scripts on these files
- creates a sqlite database called taxonomy.db (you can use sqlite to explore this database)
- this database is used by /tools/taxonomy/tax.py tool to convert gi's into full taxonomic representation
3. move taxonomy.db into /static/taxonomy/
Taxonomy ranks
--------------
These scripts consider the following taxonomic ranks:
1 root
2 superkingdom
3 kingdom
4 subkingdom
5 superphylum
6 phylum
7 subphylum
8 superclass
9 class
10 subclass
11 superorder
12 order
13 suborder
14 superfamily
15 family
16 subfamily
17 tribe
18 subtribe
19 genus
20 subgenus
21 species
22 subspecies
Problems?
---------
E-mail to anton@bx.psu.edu
-8
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PYTHONPATH="../../lib:../../eggs:../../eggs/`../check_python_ucs.py`"
export PYTHONPATH
rm -f /tmp/taxTest.db
python tax1_NodeParser.py tax1_test_argv1.txt > tax2_test_argv1.txt
python tax2_Node2Name.py tax2_test_argv1.txt tax2_test_argv2.txt /tmp/taxTest.db
python tax3_gi2tax.py /tmp/taxTest.db tax3_test_argv2.txt
python tax.py tax3_test_argv2.txt tax_out.txt 1
diff tax_out.txt tax_result.txt
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#!/usr/bin/env python
"""
Identify full taxonomic standing for sequences identified by gi number
usage: tax.py gi_list_file out_file columnNumber
gi_list_file - input file containing GI identifiers
out_file - output file
columnNumber - integer corresponding to column in gi_list_file containing GIs (column numbers start with 1)
"""
import pkg_resources
pkg_resources.require( 'bx-python' )
pkg_resources.require( 'pysqlite' )
import traceback
import fileinput
from pysqlite2 import dbapi2 as sqlite
from warnings import warn
import string, sys
TAXONOMY = '/tmp/taxTest.db'
# database containing collapsed NCBI taxonomy generated by prepareTaxonomy.sh script
# distributed with Galaxy. See prepareTaxonomy.readme (in scripts/taxonomy ditrectory) for information on how to generate
# necessary files
def main():
try:
gi_fname = sys.argv[1]
out_fname = sys.argv[2]
giCol = int( sys.argv[3] ) - 1
except:
sys.stderr.write('Not enough arguments\n')
sys.exit(0)
try:
con = sqlite.connect(TAXONOMY)
except:
sys.stderr.write('Cannot connect to database\n')
sys.exit(0)
cur = con.cursor()
fg = open(gi_fname, 'r')
of = open( out_fname, "w" )
try:
for line in fg:
try:
field = string.split(line.rstrip(), '\t')
sqlTemplate = string.Template('select gi2tax.gi, tax.* from gi2tax left join tax on gi2tax.taxId = tax.taxId where gi2tax.gi = $gi')
sql = sqlTemplate.substitute(gi = int(field[giCol]))
cur.execute(sql)
for item in cur.fetchall():
ranks = string.split(item[2], ",")
print >> of, str(item[0]) + "\t" + str(item[1]) + "\t" + "\t".join(ranks)
except:
pass
finally:
fg.close()
of.close()
if __name__ == "__main__":
main()
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"""
tax1_NodeParser.py <nodes_file>
flattens NCBI taxonomy by printing list of children for every node
nodes_file is created from nodes.dmp file using the following command:
cat nodes.dmp | tr -s "\t" "|" | tr "|" "\t" | cut -f 1,2,3,5 > nodes.txt
(nodes.dmp is downloaded from NCBI taxonomy FTP site)
anton nekrutenko | anton@bx.psu.edu
"""
import sys
import string
def findAll(L, value):
hits = []
i = 0
for item in L:
if item == value:
hits.append(i)
else:
pass
i += 1
return hits
def makeLookup(L):
D = {}
i = 0
for item in L:
if item in D:
D[item].append(i)
else:
D[item] = [i]
i += 1
return D
def addUnique(baseList, otherList):
auxDict = dict.fromkeys(baseList)
for item in otherList:
if item not in auxDict:
baseList.append(item)
auxDict[item] = None
return baseList
def main():
taxId = []
taxParentId = []
name = []
try:
inFile = sys.argv[1]
nodeFile = open(inFile, 'r')
except:
sys.stderr.write('tax1_NodeParser.py <nodes_file>: No arguments or file does not exist\n')
sys.exit(0)
try:
for line in nodeFile:
field = string.split(line.rstrip(), '\t')
taxId.append(int(field[0]))
taxParentId.append(int(field[1]))
name.append(field[2])
finally:
nodeFile.close()
# Check data consistency
if (len(taxId)+len(taxParentId)+len(name))/3 != len(taxId):
sys.stderr.write('Arrays are of different length: Corrupted input file')
sys.exit(0)
else:
pass
parentLookUp = makeLookup(taxParentId)
i = 0
children = []
for taxon in taxId:
try:
children = parentLookUp[taxon] #findAll(taxParentId, taxon)
except:
pass
for child in children:
if len(children) > 0:
if taxId[child] != taxParentId[child]:
try:
children = addUnique(children, parentLookUp[taxId[child]])
except:
pass
else:
pass
if len(children) > 0:
for child in children:
outTmp = string.Template('$pId\t$pRank\t$cId\t$cRank')
out = outTmp.substitute(pId = taxon, pRank = name[i], cId = taxId[child], cRank = name[child])
print out
else:
outTmp = string.Template('$pId\t$pRank\t0\tNone')
out = outTmp.substitute(pId = taxon, pRank = name[i])
print out
children = []
i += 1
if __name__ == "__main__":
main()
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63221 9606 subspecies
1 1 no rank
2759 131567 superkingdom
6072 33208 no rank
7711 33511 phylum
7742 89593 no rank
7776 7742 superclass
8287 117571 no rank
9347 32525 no rank
9443 314146 order
9526 314293 parvorder
9604 314295 family
9605 207598 genus
32523 8287 no rank
32524 32523 no rank
32525 40674 no rank
33154 2759 no rank
33208 33154 kingdom
33213 6072 no rank
33316 33213 no rank
33511 33316 no rank
40674 32524 class
89593 7711 subphylum
117570 7776 no rank
117571 117570 no rank
131567 1 no rank
207598 9604 no rank
314146 9347 superorder
314293 376913 infraorder
314295 9526 superfamily
376913 9443 suborder
9606 9605 species
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"""
tax2_Node2Name.py <node2child_file> <names_file> <db_name>
adds taxonomic names to collapsed NCBI taxonomy produced by tax1_NodeParser.py script
node2child_file = created by tax1_NodeParser.py script
names_file = created from names.dmp file with the following command:
cat names.dmp | cut -f 1,2,4 -d "|" | tr -s "\t" "|" | tr "|" "\t" | sed s/\"//g > names.txt
(names.dmp is downloaded from NCBI taxonomy FTP site)
db_name = a name of sqlite file this program will create. Output of this script is stored in table names of this database
anton nekrutenko | anton@bx.psu.edu
"""
import pkg_resources
pkg_resources.require('pysqlite')
from pysqlite2 import dbapi2 as sqlite
import sys
import string
def main():
try:
inFileNodes = sys.argv[1]
inFileNames = sys.argv[2]
dbName = sys.argv[3]
except:
sys.stderr.write('tax2_Node2Name.py <node2child_file> <names_file> <db_name>: Not enough arguments\n')
sys.exit(0)
taxRank = {
'root' :1,
'superkingdom':2,
'kingdom' :3,
'subkingdom' :4,
'superphylum' :5,
'phylum' :6,
'subphylum' :7,
'superclass' :8,
'class' :9,
'subclass' :10,
'superorder' :11,
'order' :12,
'suborder' :13,
'superfamily' :14,
'family' :15,
'subfamily' :16,
'tribe' :17,
'subtribe' :18,
'genus' :19,
'subgenus' :20,
'species' :21,
'subspecies' :22
}
con = sqlite.connect(dbName)
cur = con.cursor()
cur.execute('drop table if exists nodes')
cur.execute('create table nodes (pid int unsigned not null, pidRank varchar(20) not null, pnumRank smallint unsigned not null, id int unsigned not null, idRank varchar(20), numRank smallint unsigned not null)')
cur.execute('create index if not exists ipid on nodes(pid)')
cur.execute('drop table if exists names')
cur.execute('create table names (taxId int unsigned not null, name text, type text)')
cur.execute('create index itaxId on names(taxId)')
con.commit()
f = open(inFileNodes, 'r')
try:
for line in f:
field = string.split(line.rstrip(), '\t')
field = [ int(field[0]), field[1], 0, int(field[2]), field[3], 0 ]
# Changing taxId == 1 from 'no rank' to 'root'
if field[0] == 1:
field[1] = 'root'
# Setting numeric IDs for major taxonomic groups from taxRank dictionary
if taxRank.has_key(field[1]):
field[2] = taxRank[field[1]]
if taxRank.has_key(field[4]):
field[5] = taxRank[field[4]]
sqlTemplate = string.Template('insert into nodes values($pId, "$pRank", $pNumRank, $cId, "$cRank", $cNumRank)')
sql = sqlTemplate.substitute(pId = field[0], pRank = field[1], pNumRank = field[2], cId = field[3], cRank = field[4], cNumRank = field[5])
cur.execute(sql)
finally:
f.close()
con.commit()
f = open(inFileNames, 'r')
try:
for line in f:
field = string.split(line.rstrip(), '\t')
# The following is based on assimption that every tax id in NCBI taxonomy
# contains a single 'scientific name' type
try:
if field[2] == 'scientific name':
field[1] = field[1].replace('\t','_')
sqlTemplate = string.Template('insert into names values($taxId, "$name", "$syn")')
sql = sqlTemplate.substitute(taxId = int(field[0]), name = field[1], syn = field[2])
cur.execute(sql)
except:
pass
finally:
f.close()
con.commit()
cur.execute('drop table if exists t')
cur.execute('create table t (pid int unsigned not null, pidRank varchar(20) not null, pnumRank smallint unsigned not null, id int unsigned not null, idRank varchar(20), numRank smallint unsigned not null, pName text)')
cur.execute('insert into t select nodes.*, name from nodes left join names on pid = taxId')
cur.execute('create index iid on t(id)')
cur.execute('drop table nodes')
cur.execute('drop table if exists node2name')
cur.execute('create table node2name (pId int unsigned not null, pIdRank varchar(20) not null, pNumRank smallint unsigned not null, cId int unsigned not null, cIdRank varchar(20), cNumRank smallint unsigned not null, pName text, cName text)')
cur.execute('insert into node2name select t.*, name from t left join names on id = taxId')
cur.execute('drop table t')
cur.execute('vacuum')
con.commit()
con.close()
if __name__ == "__main__":
main()
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63221 subspecies 0 None
1 no rank 1 no rank
1 no rank 131567 no rank
1 no rank 2759 superkingdom
1 no rank 33154 no rank
1 no rank 33208 kingdom
1 no rank 6072 no rank
1 no rank 33213 no rank
1 no rank 33316 no rank
1 no rank 33511 no rank
1 no rank 7711 phylum
1 no rank 89593 subphylum
1 no rank 7742 no rank
1 no rank 7776 superclass
1 no rank 117570 no rank
1 no rank 117571 no rank
1 no rank 8287 no rank
1 no rank 32523 no rank
1 no rank 32524 no rank
1 no rank 40674 class
1 no rank 32525 no rank
1 no rank 9347 no rank
1 no rank 314146 superorder
1 no rank 9443 order
1 no rank 376913 suborder
1 no rank 314293 infraorder
1 no rank 9526 parvorder
1 no rank 314295 superfamily
1 no rank 9604 family
1 no rank 207598 no rank
1 no rank 9605 genus
1 no rank 9606 species
1 no rank 63221 subspecies
2759 superkingdom 33154 no rank
2759 superkingdom 33208 kingdom
2759 superkingdom 6072 no rank
2759 superkingdom 33213 no rank
2759 superkingdom 33316 no rank
2759 superkingdom 33511 no rank
2759 superkingdom 7711 phylum
2759 superkingdom 89593 subphylum
2759 superkingdom 7742 no rank
2759 superkingdom 7776 superclass
2759 superkingdom 117570 no rank
2759 superkingdom 117571 no rank
2759 superkingdom 8287 no rank
2759 superkingdom 32523 no rank
2759 superkingdom 32524 no rank
2759 superkingdom 40674 class
2759 superkingdom 32525 no rank
2759 superkingdom 9347 no rank
2759 superkingdom 314146 superorder
2759 superkingdom 9443 order
2759 superkingdom 376913 suborder
2759 superkingdom 314293 infraorder
2759 superkingdom 9526 parvorder
2759 superkingdom 314295 superfamily
2759 superkingdom 9604 family
2759 superkingdom 207598 no rank
2759 superkingdom 9605 genus
2759 superkingdom 9606 species
2759 superkingdom 63221 subspecies
6072 no rank 33213 no rank
6072 no rank 33316 no rank
6072 no rank 33511 no rank
6072 no rank 7711 phylum
6072 no rank 89593 subphylum
6072 no rank 7742 no rank
6072 no rank 7776 superclass
6072 no rank 117570 no rank
6072 no rank 117571 no rank
6072 no rank 8287 no rank
6072 no rank 32523 no rank
6072 no rank 32524 no rank
6072 no rank 40674 class
6072 no rank 32525 no rank
6072 no rank 9347 no rank
6072 no rank 314146 superorder
6072 no rank 9443 order
6072 no rank 376913 suborder
6072 no rank 314293 infraorder
6072 no rank 9526 parvorder
6072 no rank 314295 superfamily
6072 no rank 9604 family
6072 no rank 207598 no rank
6072 no rank 9605 genus
6072 no rank 9606 species
6072 no rank 63221 subspecies
7711 phylum 89593 subphylum
7711 phylum 7742 no rank
7711 phylum 7776 superclass
7711 phylum 117570 no rank
7711 phylum 117571 no rank
7711 phylum 8287 no rank
7711 phylum 32523 no rank
7711 phylum 32524 no rank
7711 phylum 40674 class
7711 phylum 32525 no rank
7711 phylum 9347 no rank
7711 phylum 314146 superorder
7711 phylum 9443 order
7711 phylum 376913 suborder
7711 phylum 314293 infraorder
7711 phylum 9526 parvorder
7711 phylum 314295 superfamily
7711 phylum 9604 family
7711 phylum 207598 no rank
7711 phylum 9605 genus
7711 phylum 9606 species
7711 phylum 63221 subspecies
7742 no rank 7776 superclass
7742 no rank 117570 no rank
7742 no rank 117571 no rank
7742 no rank 8287 no rank
7742 no rank 32523 no rank
7742 no rank 32524 no rank
7742 no rank 40674 class
7742 no rank 32525 no rank
7742 no rank 9347 no rank
7742 no rank 314146 superorder
7742 no rank 9443 order
7742 no rank 376913 suborder
7742 no rank 314293 infraorder
7742 no rank 9526 parvorder
7742 no rank 314295 superfamily
7742 no rank 9604 family
7742 no rank 207598 no rank
7742 no rank 9605 genus
7742 no rank 9606 species
7742 no rank 63221 subspecies
7776 superclass 117570 no rank
7776 superclass 117571 no rank
7776 superclass 8287 no rank
7776 superclass 32523 no rank
7776 superclass 32524 no rank
7776 superclass 40674 class
7776 superclass 32525 no rank
7776 superclass 9347 no rank
7776 superclass 314146 superorder
7776 superclass 9443 order
7776 superclass 376913 suborder
7776 superclass 314293 infraorder
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376913 suborder 9606 species
376913 suborder 63221 subspecies
9606 species 63221 subspecies
-498
View File
@@ -1,498 +0,0 @@
63221 subspecies 0 None
1 no rank 1 no rank
1 no rank 131567 no rank
1 no rank 2759 superkingdom
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33213 no rank 33316 no rank
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131567 no rank 117571 no rank
131567 no rank 8287 no rank
131567 no rank 32523 no rank
131567 no rank 32524 no rank
131567 no rank 40674 class
131567 no rank 32525 no rank
131567 no rank 9347 no rank
131567 no rank 314146 superorder
131567 no rank 9443 order
131567 no rank 376913 suborder
131567 no rank 314293 infraorder
131567 no rank 9526 parvorder
131567 no rank 314295 superfamily
131567 no rank 9604 family
131567 no rank 207598 no rank
131567 no rank 9605 genus
131567 no rank 9606 species
131567 no rank 63221 subspecies
207598 no rank 9605 genus
207598 no rank 9606 species
207598 no rank 63221 subspecies
314146 superorder 9443 order
314146 superorder 376913 suborder
314146 superorder 314293 infraorder
314146 superorder 9526 parvorder
314146 superorder 314295 superfamily
314146 superorder 9604 family
314146 superorder 207598 no rank
314146 superorder 9605 genus
314146 superorder 9606 species
314146 superorder 63221 subspecies
314293 infraorder 9526 parvorder
314293 infraorder 314295 superfamily
314293 infraorder 9604 family
314293 infraorder 207598 no rank
314293 infraorder 9605 genus
314293 infraorder 9606 species
314293 infraorder 63221 subspecies
314295 superfamily 9604 family
314295 superfamily 207598 no rank
314295 superfamily 9605 genus
314295 superfamily 9606 species
314295 superfamily 63221 subspecies
376913 suborder 314293 infraorder
376913 suborder 9526 parvorder
376913 suborder 314295 superfamily
376913 suborder 9604 family
376913 suborder 207598 no rank
376913 suborder 9605 genus
376913 suborder 9606 species
376913 suborder 63221 subspecies
9606 species 63221 subspecies
-72
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@@ -1,72 +0,0 @@
taxid name class
63221 Homo neanderthalensis synonym
63221 Homo sapiens neanderthalensis scientific name
1 all synonym
1 root scientific name
2759 Eucarya synonym
2759 Eucaryotae synonym
2759 Eukarya synonym
2759 Eukaryota scientific name
2759 Eukaryotae synonym
2759 eucaryotes genbank common name
2759 eukaryotes common name
2759 eukaryotes blast name
6072 Eumetazoa scientific name
7711 Chordata scientific name
7711 chordates genbank common name
7711 chordates blast name
7742 Vertebrata scientific name
7742 vertebrates genbank common name
7742 vertebrates blast name
7776 Gnathostomata scientific name
7776 jawed vertebrates genbank common name
8287 Sarcopterygii scientific name
9347 Eutheria scientific name
9347 Placentalia synonym
9347 eutherian mammals common name
9347 placental mammals common name
9347 placentals genbank common name
9347 placentals blast name
9443 Primata synonym
9443 Primates scientific name
9443 primate equivalent name
9443 primates blast name
9526 Catarrhini scientific name
9604 Hominidae scientific name
9604 Pongidae synonym
9604 great apes common name
9605 Homo scientific name
32523 Tetrapoda scientific name
32523 tetrapods genbank common name
32524 Amniota scientific name
32524 amniotes genbank common name
32525 Theria scientific name
33154 Fungi/Metazoa group scientific name
33208 Animalia synonym
33208 Metazoa scientific name
33208 animals blast name
33208 metazoans genbank common name
33208 multicellular animals common name
33213 Bilateria scientific name
33316 Coelomata scientific name
33511 Deuterostomia scientific name
40674 Mammalia scientific name
40674 mammals genbank common name
40674 mammals blast name
89593 Craniata scientific name
117570 Teleostomi scientific name
117571 Euteleostomi scientific name
117571 bony vertebrates genbank common name
131567 biota synonym
131567 cellular organisms scientific name
207598 Homo/Pan/Gorilla group scientific name
314146 Euarchontoglires scientific name
314293 Anthropoidea synonym
314293 Simiiformes scientific name
314295 Hominoidea scientific name
314295 ape common name
314295 apes common name
376913 Haplorrhini scientific name
9606 Homo sapiens scientific name
9606 human genbank common name
9606 man common name
-103
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@@ -1,103 +0,0 @@
"""
tax3_gi2tax.py <db_name> <gi2tax_file>
db_name = name of the database produced by tax2_Node2Name.py scriopt
gi2tax_file = conactenation of gi_taxid_nucl.dmp and gi_taxid_prot.dmp downloaded from NCBI Taxonomy FTP site
"""
import pkg_resources
pkg_resources.require('pysqlite')
from pysqlite2 import dbapi2 as sqlite
import sys
import string
def main():
try:
dbName = sys.argv[1]
inFileGIs = sys.argv[2]
con = sqlite.connect(dbName)
except:
sys.stderr.write('tax3_gi2tax.py <db_name> <gi2tax_file>: Not enough arguments of database does not exist\n')
sys.exit(0)
cur = con.cursor()
try:
cur.execute('select * from node2name limit 1')
except:
sys.stderr.write('Table node2name does not exist')
sys.exit(0)
cur.execute('drop table if exists gi2tax')
cur.execute('create table gi2tax (gi int unsigned primary key, taxId int unsigned not null)')
cur.execute('drop table if exists tax')
cur.execute('create table tax (taxId int unsigned not null, tax text)')
cur.execute('insert into tax values(0,"superkingdom,kingdom,subkingdom,superphylum,phylum,subphylum,superclass,class,subclass,superorder,order,suborder,superfamily,family,subfamily,tribe,subtribe,genus,subgenus,species,subspecies")')
cur.execute('create index if not exists cId_index on node2name(cId)')
con.commit()
fg = open(inFileGIs, 'r')
try:
for line in fg:
field = string.split(line.rstrip(), '\t')
sqlTemplate = string.Template('insert into gi2tax values($gi, $taxId)')
sql = sqlTemplate.substitute(gi = int(field[0]), taxId = int(field[1]))
cur.execute(sql)
finally:
con.commit()
fg.close()
cur.execute('select distinct taxId from gi2tax')
for line in cur.fetchall():
i = 0
taxRank = ['n' for i in range(22)] # This number depends on the length of taxRank dictionary in tax2_Node2Name.py
# select all parents of a given taxId
sqlTemplate = string.Template('select * from node2name where cId = $taxId and pNumRank > 0 order by pNumRank asc')
sql = sqlTemplate.substitute(taxId = int(line[0]))
cur.execute(sql)
for item in cur.fetchall():
taxRank[item[2]-1] = str(item[6])
# select lowest ranking parent (with max pNumRank)
sqlTemplate = string.Template('select max(pNumRank) from node2name where cId = $taxId')
sql = sqlTemplate.substitute(taxId = int(line[0]))
cur.execute(sql)
row = cur.fetchone()
# Set the child of the lowest ranking parent as the lowest taxon for that taxId (e.g., species, subspecies etc.)
try:
sqlTemplate = string.Template('select * from node2name where cId = $taxId and pNumRank = $max_pNumRank')
sql = sqlTemplate.substitute(taxId = int(line[0]), max_pNumRank = int(row[0]))
cur.execute(sql)
lowestRank = cur.fetchone()
taxRank[int(lowestRank[5])-1] = str(lowestRank[7])
taxonomyInfo = ",".join(taxRank)
except:
print "The following taxId was not found in taxonomy database: ", line[0]
pass
taxTemplate = string.Template('insert into tax values($taxId, "$taxInfo")')
tax = taxTemplate.substitute(taxId = int(line[0]), taxInfo = taxonomyInfo)
cur.execute(tax)
cur.execute('create index taxId_index on tax(taxId)')
cur.execute('drop table if exists node2name')
cur.execute('vacuum')
con.commit()
con.close()
if __name__ == "__main__":
main()
-5
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@@ -1,5 +0,0 @@
33001686 9443
23236241 9604
12583 9606
410771 40674
2286205 63221
-5
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@@ -1,5 +0,0 @@
33001686 9443 root Eukaryota Metazoa n n Chordata Craniata Gnathostomata Mammalia n Euarchontoglires Primates n n n n n n n n n n
23236241 9604 root Eukaryota Metazoa n n Chordata Craniata Gnathostomata Mammalia n Euarchontoglires Primates Haplorrhini Hominoidea Hominidae n n n n n n n
12583 9606 root Eukaryota Metazoa n n Chordata Craniata Gnathostomata Mammalia n Euarchontoglires Primates Haplorrhini Hominoidea Hominidae n n n Homo n Homo sapiens n
410771 40674 root Eukaryota Metazoa n n Chordata Craniata Gnathostomata Mammalia n n n n n n n n n n n n n
2286205 63221 root Eukaryota Metazoa n n Chordata Craniata Gnathostomata Mammalia n Euarchontoglires Primates Haplorrhini Hominoidea Hominidae n n n Homo n Homo sapiens Homo sapiens neanderthalensis