# How can I make a histogram of occurences of specific patterns in a FASTA file?

I have written a Perl script for the following bioinformatics question, but unfortunately there is a problem with the output.

Question

1) From a file of 40,000 unique sequences, unique meaning the sequence id numbers, extract the following pattern

`````` \$gpat = [G]{3,5}; \$npat = [A-Z]{1,25};<br>
\$pattern = \$gpat.\$npat.\$gpat.\$npat.\$gpat.\$npat.\$gpat;
``````

2) For each sequence, find if `\$pattern` occurs between the values of

• 0-100
• 100-200
• 200-300
• ...
• 900-1000
• >1000

If a certain sequence is <1000 characters long, even then the division must be maintained i.e. 0-100,100-200 etc.

The Issue

The main issue I am having is with counting the number of times \$pattern occurs for each sequence subdivision and then adding its count for all the sequences.

For example, for sequence 1, say \$pattern occurs 5 times at a length >1000. For sequence 2, say \$pattern occurs 3 times at length>1000. Then total count should be 5+3 =8.

Instead, my result is coming like : (5+4+3+2+1) + (3+2+1) = 21 i.e. a cumulative total.

I am facing the same issue with the count for the first 10 subdivisions of 100 characters each.

I would be grateful if a correct code could be provided for this calculation.

The code I have written is as under. It is heavily derived from Borodin's answer to one of my previous questions here : Perl: Search a pattern across array elements

The Code :

``````use strict;
use warnings;

my \$gpat = '[G]{3,5}';
my \$npat = '[A-Z]{1,25}';
my \$pattern = \$gpat.\$npat.\$gpat.\$npat.\$gpat.\$npat.\$gpat;
my \$regex = qr/\$pattern/i;

open my \$fh, '<', 'small.fa' or die \$!;

my (\$id, \$seq);
my @totals = (0, 0, 0, 0, 0, 0, 0, 0, 0, 0); #intialize the @total arrays...
#..it should  contain 10 parts for 10 divisions upto 1000bp
my @thousandcounts =(0); #counting total occurrences of \$pattern at >1000 length

while (<\$fh>) {
chomp;

if (/^>(\w+)/) {
process_seq(\$seq) if \$id;
\$id = \$1;
\$seq = '';
print "\$id\n";
}
elsif (\$id) {
\$seq .= \$_;
process_seq(\$seq) if eof;
}
}

print "Totals : @totals\n";
print "Thousand Counts total : @thousandcounts\n";

##**SUBROUTINE**

sub process_seq {

my \$sequence = shift @_;
my \$subseq = substr \$sequence,0,1000;
my \$length = length \$subseq;
print \$length,"\n";

if (\$length eq 1000) {

my @offsets = map {sprintf '%.0f', \$length * \$_/ 10} 1..10;
print "Offsets of 10 divisions: @offsets\n";

my @counts = (0, 0, 0, 0, 0, 0, 0, 0, 0, 0);
my @count = (0);

while (\$sequence =~ /\$regex/g) {
my \$place = \$-[0];
print \$place,"\n\n";

if (\$place <=1000){
for my \$i (0..9) {
next if \$place >= \$offsets[\$i];
\$counts[\$i]++;
last;
}

}
print "Counts : @counts\n\n";

\$totals[\$_] += \$counts[\$_] for 0..9;

if (\$place >1000){

for my \$i(0){
\$count[\$i]++;
last;
}

} print "Count greater than 1000 : @count\n\n";

\$thousandcounts[\$_] += \$count[\$_] for 0;

}

}

#This region of code is for those sequences whose total length is less than 1000
#It is working great ! No issues here
elsif (\$length != 1000) {

my \$substr = join ' ', unpack '(A100)*', \$sequence;

my @offsets = map {sprintf '%.0f', \$length * \$_/ (\$length/100)} 1..10;
print "Offsets of 10 divisions: @offsets\n";

my @counts = (0, 0, 0, 0, 0, 0, 0, 0, 0, 0,);

while (\$sequence =~ /\$regex/g) {
my \$place = \$-[0];
print "Place : \$place","\n\n";

for my \$i (0..9) {
next if \$place >= \$offsets[\$i];
\$counts[\$i]++;                                    .
last;
}
}
print "Counts : @counts\n\n";

\$totals[\$_] += \$counts[\$_] for 0..9;

}

}#subroutine ends
``````

I am also attaching a small segment of the file I am working with. This one is titled `small.fa` and I have been experimenting with this file only before moving onto to the bigger file containing >40,000 sequences.

``````>NR_037701 1
aggagctatgaatattaatgaaagtggtcctgatgcatgcatattaaaca
tgcatcttacatatgacacatgttcaccttggggtggagacttaatattt
aaatattgcaatcaggccctatacatcaaaaggtctattcaggacatgaa
ggcactcaagtatgcaatctctgtaaacccgctagaaccagtcatggtcg
gtgggctccttaccaggagaaaattaccgaaatcactcttgtccaatcaa
agctgtagttatggctggtggagttcagttagtcagcatctggtggagct
gcaagtgttttagtattgtttatttagaggccagtgcttatttagctgct
agagaaaaggaaaacttgtggcagttagaacatagtttattcttttaagt
gtagggctgcatgacttaacccttgtttggcatggccttaggtcctgttt
gtaatttggtatcttgttgccacaaagagtgtgtttggtcagtcttatga
cctctattttgacattaatgctggttggttgtgtctaaaccataaaaggg
aggggagtataatgaggtgtgtctgacctcttgtcctgtcatggctggga
actcagtttctaaggtttttctggggtcctctttgccaagagcgtttcta
ttcagttggtggaggggacttaggattttatttttagtttgcagccaggg
tcagtacatttcagtcacccccgcccagccctcctgatcctcctgtcatt
cctcacatcctgtcattgtcagagattttacagatatagagctgaatcat
ttcctgccatctcttttaacacacaggcctcccagatctttctaacccag
gacctacttggaaaggcatgctgggtctcttccacagactttaagctctc
cctacaccagaatttaggtgagtgctttgaggacatgaagctattcctcc
caccaccagtagccttgggctggcccacgccaactgtggagctggagcgg
gagggaggagtacagacatggaattttaattctgtaatccagggcttcag
ttatgtacaacatccatgccatttgatgattccaccactccttttccatc
tcccagaagcctgctttttaatgcccgcttaatattatcagagccgagcc
tggaatcaaactgcctctttcaaaacctgccactatatcctggctttgtg
acctcagccaagttgcttgactattctcagtctcagtttctgcacctgtc
aaatagggtttatgttaacctaactttcagggctgtcaggattaaatgag
catgaaccacataaaatgtttggtgtatagtaagtgtacagtaaatactt
ccattatcagtccctgcaattctatttttcttccttctctacacagcccc
tgtctggctttaaaatgtcctgccctgctttttatgagtggataccccca
gccctatgtggattagcaagttaagtaatgacactcagagacagttccat
ctttgtccataacttgctctgtgatccagtgtgcatcactcaaacagact
atctcttttctcctacaaaacagacagctgcctctcagataatgttgggg
gcataggaggaatgggaagcccgctaagagaacagaagtcaaaaacagtt
gggttctagatgggaggaggtgtgcgtgcacatgtatgtttgtgtttcag
gtcttggaatctcagcaggtcagtcacattgcagtgtgtcgcttcacctg
gctccctcttttaaagattttccttccctctttccaactccctgggtcct
ggatcctccaacagtgtcagggttagatgccttttatgggccacttgcat
tagtgtcctgatagaggcttaatcactgctcagaaactgccttctgccca
ctggcaaagggaggcaggggaaatacatgattctaattaatggtccaggc
agagaggacactcagaatttcaggactgaagagtatacatgtgtgtgatg
gtaaatgggcaaaaatcatcccttggcttctcatgcataatgcatgggca
cacagactcaaaccctctctcacacacatacacatatacattgttattcc
acacacaaggcataatcccagtgtccagtgcacatgcatacacgcacaca
ttcccttcctaggccactgtattgctttcctagggcatcttcttataaga
caccagtcgtataaggagcccaccccactcatctgagcttatcaaccaat
tacattaggaaagactgtatttcctagtaaggtcacattcagtagtactg
agggttgggacttcaacacagctttttgggggatcataattcaacccatg
acagccactgagattattatatctccagagaataaatgtgtggagttaaa
aggaagatacatgtggtacaaggggtggtaaggcaagggtaaaaggggag
ggaggggattgaactagacacagacacatgagcaggactttggggagtgt
gttttatatctgtcagatgcctagaacagcacctgaaatatgggactcaa
tcattttagtccccttctttctataagtgtgtgtgtgcggatatgtgtgc
tagatgttcttgctgtgttaggaggtgataaacatttgtccatgttatat
aggtggaaagggtcagactactaaattgtgaagacatcatctgtctgcat
ttattgagaatgtgaatatgaaacaagctgcaagtattctataaatgttc
actgttattagatattgtatgtctttgtgtccttttattcatgaattctt
gcacattatgaagaaagagtccatgtggtcagtgtcttacccggtgtagg
gtaaatgcacctgatagcaataacttaagcacacctttataatgacccta
tatggcagatgctcctgaatgtgtgtttcgagctagaaaatccgggagtg
gccaatcggagattcgtttcttatctataatagacatctgagcccctggc
ccatcccatgaaacccaggctgtagagaggattgaggccttaagttttgg
gttaaatgacagttgccaggtgtcgctcattagggaaaggggttaagtga
aaatgctgtataaactgcatgatgtttgcaggcagttgtggttttcctgc
ccagcctgccaccaccgggccatgcggatatgttgtccagcccaacacca
caggaccatttctgtatgtaagacaattctatccagcccgccacctctgg
actccctcccctgtatgtaagccctcaataaaaccccacgtctcttttgc
tggcaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa
aaa
>NR_002714 1
gttatacatctctaccattacctagcctgaaaagccacctcagattcagc
caacaagtaagtgggcattacaggagaagggtacctttcacaagggctgt
aatctaaaatcttggggaagatacagcgtcatctgtccaagaggtgtcag
cagtaacgaagcctcagtagaagccaaagttattttggattactgagcct
gtatagtttccagattctcaagagaaatatatgggaatgtagatatctca
gaggaccttcctgctgtcaggaattcagaggaggaaataaggaaggtaat
aggtgctctgctctcattctctcaaaccctcttccctgtgttttcctata
gagattgctgatttgctccttaagcaagagattcactgctgctcagcatg
gctcagaccaactcatgcttcatgctgatctcctgcctgatgttcctgtc
tctgagccaaggtgagattgttttccccacacatacctcccacaacccca
gccctgaagccctcactctatcctcatgcatatgagttcacttgagaaaa
agcagagtcaagttcaggggttgttttgtgttgttcagtgatatttattg
ctgatctcatcccattcaaaaacatcctgacctccctaaggagttagaga
tggaacttagcataaccctttatcagtgaccactgcagttggcattggtt
tgtcatattaacactactcatgatgggggtgttgaggatgtctgtttgta
gacagtcattagtggaatggggaactgaggggagctttgtgtgtagagaa
actggacaggcttgagaaagaagcctcagtccttcaaggaagaaaaagcc
ataagtaaaagggacaatggggacacttttcatgagcctattcattgtgt
gctcttgtcttgagcaaagacatcttgagagcctataggtaagatgcaga
agggcagaagtgaccaatcgcttcgtgacctataggatccttctattcct
ataaagaatcctcagaagctcctacctcatattttagcctttaccttgcc
ctgagggtctttcttaattgtctctcttttcccaggacaggaggcccatg
ctgagttgcccaaggcccagatcagctgcccagaaggcaccagtgcctaa
ggctcccactgctactactttaatgaagagcatgagacctgggtttatgc
agatgtgagtgaggagagcagtgtgggaagggaggctcacgaagggaggg
gaagctgccactctccagtgtgttcagtggctgatatgagatgagactaa
tcccctccctatccaatcatcagcccaaaactttccaatctactttatcc
catcattcagcacagagatgctggtggtcagtgacagcatcatcagggac
atttctgtgctgtcctttttctgttacatcctctgggagggctcaatatg
tctcccacactttcctccttcactgagtgctccattttcttctccaacag
ctctactgccagaacatgaattcaggtaacctggtgtctgtgctcaccca
ggctgagggtgcctttgtggcttcgctgattaaagagagtggcaccaagg
atagcaatgtctggattggcctccatgacccccaccggatcagtctgctg
catcttctacctcctgattatcaggttccagagggtctgatgtctggcac
ctcaagcatcagtttttactatattatgataaaagcaacctctctataaa
tcatataatgtaaaggatatcaaggttctccataggttcttcgagataag
cttaaagctgaatttcctgtgtgtttcaggcattcacagataaactcatt
ctctgtacttctagggtagcatctttatgtatctattatgtacctcttat
ctattgtgttatcatctctgttatagaagagccttctgtagaccatatag
aaaaagattatagaggaggagaatctactgctggcaattgggaaccgcaa
ggtatactaaataatatatcaacaactaatggccatctaatgctatgctg
gatatgaacttttggggcctcaggaaagaaaaaccaggaactagtttcaa
taatgaggtgtcatggttccctgtggcaaatttagaacgcttatcgtttg
gcaggacacagagaggtaggtgaacattccaggaaagaagcagcttagag
aaaatgtggaggaaataatatgacacttagagaaaaaggaaggtttattc
ttgtcttatgtcttgacctgtttctgagtgcgaacacaaaccaggtgttt
ctgtctctttctgagtcacgtctgcccctgttctggcccttccccatcta
gaactgccattatcagtggagtagtgggtccctggtctcctacaaatcct
gggacattggatccccaagctgtgccaatactgcctactgtgctagcctg
acttcaagctcaggtgaggggcacagaatccacacacttattgccatcct
ctcctatttatctctgaggatcgaccggggactgggatagaggaagggtg
agctcctcattcaggaaatagaggagtgtttcctctttatttttgctgag
tcctgcagccaggagggtaatacactctgatcccctcagtctgaatcttc
tcattgtcttataggattcaagaaatggaaggatgattcttgtaaggaga
agttctcctttgtttgcaagttcaaatactggaggcaattgtaaaatgga
cgtctagaattggtctaccagttactatggagtaaaagaattaaactgga
ccatctctctccatatcaatctggaccatctctcctctgctaaatttgca
tgactgatctttagtatctttacctacctcaatttctggagccctaaaca
ataaaaataaacatgtttcccccat
>NR_003569 1
ctgggacccacgacgacagaaggcgccgatggccgcgcctgctgagccct
gcgcggggcagggggtctggaaccagacagagcctgaacctgccgccacc
agcctgctgagcctgtgcttcctgagaacagcaggggtctgggtaccccc
catgtacctctgggtccttggtcccatctacctcctcttcatccaccacc
atggccggggctacctccggatgttccccactcttcaaagccaagatggt
gcttggattcgccctcatagtcctgtgtacctccagcgtggctgtcgctc
tttggaaaatccaacagggaacgcctgaggccccagaattcctcattcat
cctactgtgtggctcaccacgatgagcttcgcagtgttcctgattcacac
caagaggaaaaagggagtccagtcatctggagtgctgtttggttactggc
ttctctgctttgtcttgccagctaccaacgctgcccagcaggcctccgga
gcgggcttccagagcgaccctgtccgccacctgtccacctacctatgcct
gtctctggtggtggcacagtttgtgctgtcctgcctggcggatcaacccc
ccttcttccctgaagacccccagcagtctaacccctgtccagagactggg
gcagccttcccctccaaagccacgttctggtgggtttctggcctggtctg
gaggggatacaggaggccactgagaccaaaagacctctggtcgcttggga
gagaaaactcctcagaagaacttgtttcccggcttgaaaaggagtggatg
aggaaccgcagtgcagcccgggggcacaacaaggcaatagcatttaaaag
gaaaggcggcagtggcatggaggctccagagactgagcccttcctacggc
aagaagggagccagtggcgcccactgctgaaggccatctggcaggtgttc
cattctaccttcctcctggggaccctcagcctcgtcatcagtgatgtctt
caggttcactgtccccaagctgctcagccttttcctggagtttattggtg
atcccaagcctccagcctggaagggctacctcctcgccgtgctgatgttc
ctctcggcctgcctgcaaacgctgtttgagcagcagaacatgtacaggct
caaggtgctgtagatgaggctgcggtcggccatcactggcctggtgtaca
gaaaggcatccacagcatatctgaagaaatattcagaagttaactaatct
cagatgatttcagcaggagtaaagaagagaaacagactcagaaatgccat
tacaacagttaattatgtcaaatttatcaccctgattgatcacgcagcat
taacctcaagaacgccaagccaagtttttttgacaaatgtgagccaaggt
ttccgaaaaactagcagatatgactgtgacttacaaaatggaaaaagtaa
acgagaaacacaatttgatatgatttaataaaagatttgtttccaccact
tctcctgggaacctcagcacattttctttccactgacagttattatctct
acctttattgaacaaagacacccggaacacagctgctgaggatcagtaaa
gaaaatcattcttttattaataagactgttattagcaggaaaaaaaaatc
catgtttgggagtttgcactgaagttacaggccattttgaagaaatatgg
ctgactagtgccaacattatttcaggcaatttcatgatcaaatgtcttat
taggttgtttaaaatttttatagagattgtaaatcagaactattttctat
ttgccctaaatatttagatgctacagggaaagcagatcaaattaaagggt
actgtgcacatttttttactgggaactcccagggatataaatcatttcgc
ctgcagcatggaattcttcagtacacatgcttgtggaaacattccacgct
ccgccagcacgctcattaaagtgatgatttgggttgcaacaacagtgcca
agtacttcctgtgttcaactggggaccatgtggcaagacccaaagcttcc
ccagagatcctatgggaataagttttttgagccaccatattccattattt
cagcctaaaataacaccatgggacaagaatcagaagacagaggagcagac
aaatgtgtgtagacatgctggaaggaatctttctttttagaaacagggtc
aatatctattaaactttaagatgtgtatctcttgacctggcagtttctgt
atttgagttttaacctactgatatacccatgcatgtgaataaagtatctt
cctgcatgtaacaggatatttaatgtaaccttgattatagttgcaaatgc
tgggaaacgatccaaatgtctttcaatatggcactgattaaataaattat
ggcacagtctcacaatgaaaaacaaatgtagccattaaacagaatgaaat
gggtctagctaaattgaaataggactacctctaagatatgttgttaaaaa
gaaaaaaaagaaagtgcagaggaacaagtatgataccattttgtattttt
taacatatgcaagcgtgattgtgcccacacagaatacctttgaaaataaa
ctcagtatttgcctcagtggataaaaacaagaaccagccttattttcact
gttatatcttttggtgccactttttgaactttttaccatatgtgcatatg
taactttctaaataaattttgtaaaaaaaaaaaaaaaaaa
>NR_002817 2
aactcggtctccactgcactgctggccagacgagggatgttattttgggc
agtgcatctggacttggttcaagtggcaccagccaaatccctgccttact
gacctctcccctggaggagcaggagcagtgctcaaggccgccctgggagg
gctgagaggcaggctctggactggggacacagggatagctgagccccagc
tgggggtggaagctgagccagggacagtcacagaggaacaagatcaagat
gcgctttaactgagaagcccccaaggcagaggctgagaatcagaagacat
ttcagcagacatctacaaatctgaaggacaaaacatggttcaagcatctg
ggcacaggcggtccacccgtggctccaaaatggtctcctggtccgtgata
gcaaagatccaggaaatatggtgcgaggaagatgagaggaagatggcgcg
agagttcctggccgagttcatgagcacatatgtcatgatggagtggctga
ccgggatgctccagctgtgtctcttcgccatcgtggaccaggagaacaac
ccagcactgccaggaacacacgcactggtgataggcatcctcgtggtcat
catcagggtgtaccatggcatgaacacaggatatgccatcaatccgtccc
gggacctgccccccccccccgcatcttcaccttcattgctggttggggca
aactggtcttcaggtactgcccctgcccaggcccattcctttgagatttt
ctgtggggcccctgtgtgttgaggtgtggggggtgatgtgaggggcagca
caggagggtcctgcagagcccccaggtggcctggggagcaggagtgagtc
ccaacatttccccaggccagtagagatacagatcctgcacctgcactgag
tgtcaaccctgtccctgagtcgggctgaggctgaccagggccccgggttg
ggggtgtttcctgggttagcctgaggatgactcctctgctcaaccagtct
tggcccgaggtggatgagggtgctgtcctgggcatcagccccctcagccg
gcctctgcctcttgcctgcagcgatggggagaacttgtggtgggtgccag
tggtggcaccacttctgggtgcctctctaggtggcatcatctacctggtc
ttcattggctccaccatcccacgggagcccctgaaattggaggactctgt
ggcatatgaagaccacgggataaccgtattgcccaagatgggatctcatg
aacccatgatctctccccttaccctcatctccgtgagccctgccaacaga
tcttcagtccaccctgccccacccttacatgaatccatggccctagagca
cttctaagcagagattatttgtgatcccatcccttccccaataaagagaa
gcttgtcccacagcagtacccccacttcctgggggcctcctgtggttggg
cttccctcctgggttcttccaggagctctagggctatgtcttagcccaag
gtgtagaggtgaggcacctcaagtctttcatgccctgggaactggggtgc
cccagggggagaatggggaagagctgacctgcgccctcagtaggaacaag
gtaagatgaaagaatgacagaaacagaatgagggattttcaggcaagggg
gaaggaagggcagttttggtgaaaggactgtagctgactggtggggggct
ggctttggaaatactttgaggggatcctgagactggactctagactctcc
cctggttgttcccttccccgagttctggccggttcttggaccagacaagg
catggcccaagaaggtagatcagaattttttagcctttttttcattagtg
ccttccctagtataattccagattttttttcttaatcacatgaaatttta
ataccacagatatactatacatctgtttatgttctgtatatgttctgtgc
tttatacgtaaaaaagagtaagattttttttcacctccccttttaagaat
cagttttaattcccttgagaatgcttgttatagattgaaggctggtaagg
ggttgggctcctctttcttcttcctggtgccagagtgctcccacatgaag
gaataggaaaggaagatgcaaagagggaaatccttcgaacacatgaagac
acaggaagaggcctcttagggctccaagggctccagggaagcagctgcag
aggttgggtggggtgaggggccaggatccactgaccctggggccaggcag
gaatcactctgttgcctggggctcagaaggcagtatcacccatggttcct
gtcattgctcatgtattttgcctttcaacaattattgtgcacctactgtg
tgcaggccctgcctggacactggggatgcgcagtggatgcactgggctct
gcctttgagggttgcagtttaatgggtgacaggtaattataaggaagaag
gtgagtgcagagtgggaggcttggaggctgtggggcttggggtgggggag
ctcacatccagcctctgggccaaggccaggaggcttcccagagcaggaga
cagagcagggtattgtggtggggggtgtcctttttggggctgggatctgc
actttacagtttgaggggatgggcagaggaggctgggcttcattctggag
gtggggacatggtgaggtgaggtttagaaagcacacctgagccgcagtgt
gtaggatgctggaaatggtggagatgggcctgcgaagagagtgctgggaa
gtgatgacccaggagcagcagccgggcacctaacaatgggtcagcaccgt
gggcgtggagacaaaggccgggattgatcaatacccgagaagtacaatgt
acaggacttgggctccatttggatggagtgggtgagggaggagtcagaaa
tggcttccgatttccagcttgggcctggggattggagatgtccccactga
gagtagggcacaagtgaggaaatggtttggagaggaagatgataagttac
atcatggatgtgctgagtctgagttgcctatgggacttggaatggggggt
ggcaaaaggtgtgtgatcttgagcaagatattcaactcttctgggccttg
gtcttctcatttgtaaaacggtgataagaatattacttcccatttgtgtt
gctgtgaatattaaatgcgctaccacatgt
``````

Thank you for taking the time to go through my problem.

Any help and input would be deeply appreciated.

Thank you for taking the time to go through my problem!

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It looks like you're missing the point of hyperlinking, and code formatting, but oh well ... –  Sinan Ünür Jun 29 '12 at 19:32
Hello Sinan. I have only just begun writing codes, I did try to make it readable. I apologize if the code does not appear well formatted. Being from a biology background, the world of programming is quite new to me, but I am trying... –  Neal Jun 30 '12 at 7:13
I was referring to the fact that you reverted my edits. –  Sinan Ünür Jun 30 '12 at 11:45
Oh...it must have happened inadvertently because, while I was editing I did get a notification of another edit, but I did not know what to do, being new here..I should have checked the new edits, before proceeding with my own. I'll remember it henceforth. I also see that the question title has been changed completely. –  Neal Jun 30 '12 at 13:53

This is pretty much the same as your previous problem except that the intervals are independent of the length of the sequence and so can be defined just once instead of changing them for every sequence.

This program is a modification of my previous solution. As I described, it starts with a fixed set of values in `@offsets` from `100` to `1000` in steps of `100`, and the final range `> 1000` is terminated at `2E9` or 2 billion. This is close to the maximum positive 32-bit integer and serves to catch all offsets above 1000. I assume you won't be dealing with sequences any bigger than this?

The `@totals` and `@counts` arrays are initialised to zeroes with the same number of elements as the `@offsets` array.

Otherwise the functionality is much as before.

``````use strict;
use warnings;

use List::MoreUtils 'firstval';

my \$gpat = '[G]{3,5}';
my \$npat = '[A-Z]{1,25}';
my \$pattern = \$gpat.\$npat.\$gpat.\$npat.\$gpat.\$npat.\$gpat;
my \$regex = qr/\$pattern/i;

open my \$fh, '<', 'small.fa' or die \$!;

my @offsets = map \$_*100, 1 .. 10;
push @offsets, 2E9;
my @totals = (0) x @offsets;

my (\$id, \$seq);

while (<\$fh>) {

chomp;

if (/^>(\w+)/) {
process_seq(\$seq) if \$id;
\$id = \$1;
\$seq = '';
print "\$id\n";
}
elsif (\$id) {
\$seq .= \$_;
process_seq(\$seq) if eof;
}
}

print "Total: @totals\n";

sub process_seq {

my \$sequence = shift;

my @counts = (0) x @offsets;

while (\$sequence =~ /\$regex/g) {
my \$place = \$-[0];
my \$i = firstval { \$place < \$offsets[\$_] } keys @offsets;
\$counts[\$i]++;
}

print "Counts: @counts\n\n";
\$totals[\$_] += \$counts[\$_] for keys @totals;
}
``````

output

Running this program against your new data file `small.fa` produces

``````Total: 1 1 0 0 0 0 0 1 0 1 10
``````

But using the data from the previous question, `sample.fa` is much more interesting

``````Total: 5 4 1 0 0 2 2 1 0 0 1
``````
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The following seems to work. While playing around, I put the data you posted in the `__DATA__` section at the end of the script. To use it with a real data file, you'll need to open it, and pass the file handle to `run`.

``````#!/usr/bin/env perl

use strict; use warnings;
use Data::Dumper;
use List::MoreUtils qw( first_index );

if (@ARGV) {
my (\$input_file) = @ARGV;
open my \$input, '<', \$input_file
or die "Cannot open '\$input_file': \$!";
run(\$input);
close \$input
or die "Cannot close '\$input_file': \$!";
}
else {
run(\*DATA);
}

sub run {
my (\$fh, \$start_pat, \$stop_pat) = @_;

# These are your patterns. I changed \$npat because I don't
# think, e.g., q is a valid character in your input.
my \$gpat = '[g]{3,5}';
my \$npat = '[acgt]{1,25}';
my \$wanted = qr/\$gpat\$npat\$gpat\$npat\$gpat\$npat\$gpat/;

# These just tell us where a sequence begins and ends.
my \$start = qr/\A>([A-Za-z_0-9]+)/;
my \$stop = qr/[^acgt]/;

# Set up the bins and labels for the histogram.
my @bins = map 100 * \$_, 1 .. 10;
my @labels = map sprintf('%d - %d', \$_ - 100, \$_), @bins;

# Initialize the histogram with all zero counts.
my %hist = map { \$_ => 0 } @labels;

my \$id;
while (my \$line = <\$fh>) {
# Whenever you see a new sequence, read it completely
# and pass it to build_histogram.
if ((\$id) = (\$line =~ \$start)) {
print "Start sequence: '\$id':\n";
my \$seq_ref;

my \$hist = build_histogram(
\$seq_ref,
\$wanted,
\@bins,
\@labels,
);

# Add the counts from this sequence to the overall
# histogram.

for my \$key ( keys %\$hist ) {
\$hist{ \$key } += \$hist->{\$key};
}

# exit loop if read_sequence stopped because of EOF.
last unless defined \$line;

# else see if the line that stopped input is the start
# of a new sequence.
redo;
}
}

print Dumper \%hist;
}

sub build_histogram {
my (\$seq_ref, \$wanted, \$bins, \$labels) = @_;

my %hist;

while (\$\$seq_ref =~ /\$wanted/g) {
# Whenever we find segment which matches what we want,
# store the position,
my \$pos = \$-[0];

# and find the bin where it fits.
my \$idx = first_index { \$_ > \$pos } @\$bins;

# if you do not have List::MoreUtils, you should install it
# however, the grep can be used instead of first_index
# my (\$idx) = grep { \$bins->[\$_] > \$pos } 0 .. \$#\$bins;
# \$idx = -1 unless defined \$idx;

# if it did not fit in the bins, then the position must
# be greater than the upper limit of the last bin, put
# it in "> than upper limit of last bin".
my \$key = (\$idx == -1 ? "> \$bins->[-1]" : \$labels->[\$idx]);
\$hist{ \$key } += 1;
}

# we're done matching, return the histogram for this sequence
return \%hist;
}

my (\$fh, \$stop) = @_;

my (\$line, \$seq);

while (\$line = <\$fh>) {
\$line =~ s/\s+\z//;
last if \$line =~ \$stop;
\$seq .= \$line;
}

return (\$line, \\$seq);
}

__DATA__

-- Either paste your data here, or pass the name
-- of your input file on the command line
``````

### Output:

```Start sequence: 'NR_037701':
Start sequence: 'NR_002714':
Start sequence: 'NR_003569':
Start sequence: 'NR_002817':
\$VAR1 = {
'700 - 800' => 0,
'> 1000' => 10,
'200 - 300' => 1,
'900 - 1000' => 1,
'800 - 900' => 1,
'500 - 600' => 0,
'0 - 100' => 0,
'100 - 200' => 1,
'300 - 400' => 0,
'400 - 500' => 0,
'600 - 700' => 0
};```

Also, you should take Chris Charley's advice and use Bio::SeqIO to read sequences rather than my homebrewed `read_sequence` function. I was just too lazy to install `BioPerl` just for the purpose of answering this question.

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Hello Sinan! Thank you for your reply. I am a Perl newbie with less than 2 months of programming experience and well.....the code is very advanced for me. In fact, I cannot even make it to run :| much less understand it... :( –  Neal Jun 30 '12 at 7:15
I do have the BioPerl module installed. I installed it through Perl Package Manager. But somehow it has not installed properly and keeps giving error messages stating it can't locate Bio/SeqIO.pm –  Neal Jun 30 '12 at 8:20
Of course, it is impossible to figure out why you can't make it run if you don't give any information. Anyhow, I put in some comments, and changed to using `Data::Dumper` instead of `YAML` and `print` instead of `say`. –  Sinan Ünür Jun 30 '12 at 12:27
Hello again Sinan! A wonderful thing happened in the last couple of hours. I was finally able to see where I was going wrong with my own code. It turned out to be a looping problem. I have posted my corrected version also. –  Neal Jun 30 '12 at 13:49
@Neal With due respect, you make no sense: Putting counts of things in bins is the definition of a histogram. That's what you've been working on all this time. Also, I am not sure you are doing this on purpose, but completely ignoring my answer, not providing any feedback on it, no even explaining why it is not working is very, very rude. After all, I did put some effort into understanding your question, as opposed to posting a throwaway answer like the only other one you got in response to your query. –  Sinan Ünür Jun 30 '12 at 23:51

Generally, in Perl you can count the occurrence of a pattern by:

`````` \$_ = \$input;
my \$c = 0;
\$c++ while s/pattern//s;
``````
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Hello Omega. Thank you for your reply. I tried to fit the above lines of code in my program but it won't work. Could you suggest an alternative? I have provided the exact region of my code above, where the problem is. –  Neal Jun 30 '12 at 7:17
Hmm, I just noticed that my entire code is producing flawed results. The final score is cumulative for all the parts and not just for those over 1000 characters long –  Neal Jun 30 '12 at 8:22

I was finally able to figure out where I was going wrong with my code. It turned out to be a looping problem. The following code works perfectly. I have marked it in comments the places where I made the modification.

``````#!/usr/bin/perl -w

use strict;
use warnings;

my \$gpat    = '[G]{3,5}';
my \$npat    = '[A-Z]{1,25}';
my \$pattern = \$gpat . \$npat . \$gpat . \$npat . \$gpat . \$npat . \$gpat;
my \$regex   = qr/\$pattern/i;

open my \$fh, '<', 'refMrna.fa' or die \$!;

my ( \$id, \$seq );    # can be written as my \$id; my \$seq;
my @totals = ( 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, );    #intialize the @total arrays.
my @thousandcounts = (0);

while (<\$fh>) {

chomp;

if (/^>(\w+)/) {
process_seq(\$seq) if \$id;
\$id  = \$1;
\$seq = '';
print "\$id\n";
print OUT "\$id\n";
}
elsif (\$id) {
\$seq .= \$_;
process_seq(\$seq) if eof;
}
}

print "Totals : @totals\n";
print OUT "Totals : @totals \n";

print "Thousand Counts total : @thousandcounts\n";
print OUT "Thousand Counts total : @thousandcounts\n";

sub process_seq {

my \$sequence = shift @_;

my \$subseq = substr \$sequence, 0, 1000;
my \$length = length \$subseq;
print \$length, "\n";

my @offsets = map { sprintf '%.0f', \$length * \$_ / 10 } 1 .. 10;
print "Offsets of 10 divisions: @offsets\n";

my @counts = ( 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, );
my @count = (0);

# *MODIFICATION*
# This if loop was intialized from my @offsets above earlier
if ( \$length eq 1000 ) {
while ( \$sequence =~ /\$regex/g ) {
my \$place = \$-[0];
print \$place, "\n\n";

if ( \$place <= 1000 ) {
for my \$i ( 0 .. 9 ) {
next if \$place >= \$offsets[\$i];
\$counts[\$i]++;
last;
}

}

if ( \$place > 1000 ) {

for my \$i (0) {
\$count[\$i]++;
last;
}
}

}    #*MODIFICATION*
#The following commands were also subsequently shifted to ..
#...properly compute the total

print "Counts : @counts\n\n";

\$totals[\$_] += \$counts[\$_] for 0 .. 9;

print "Count : @count\n\n";

\$thousandcounts[\$_] += \$count[\$_] for 0;
}

elsif ( \$length != 1000 ) {

my \$substr = join ' ', unpack '(A100)*', \$sequence;

my @offsets =
map { sprintf '%.0f', \$length * \$_ / ( \$length / 100 ) } 1 .. 10;
print "Offsets of 10 divisions: @offsets\n";

my @counts = ( 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, );

while ( \$sequence =~ /\$regex/g ) {
my \$place = \$-[0];
print "Place : \$place", "\n\n";
for my \$i ( 0 .. 9 ) {
next if \$place >= \$offsets[\$i];
\$counts[\$i]++;
last;
}
}
print "Counts : @counts\n\n";

\$totals[\$_] += \$counts[\$_] for 0 .. 9;

}

}    #subroutine ends
``````
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