Sample deliverable · public data

Bacterial genome resequencing: variant report

SRR2584866 · E. coli REL606 long-term evolution clone REL11365 (public-data example)

ProjectDEMO-DNA-01
Data sourceNCBI SRA SRR2584866
Analysis date2026-10-01
Issued byHST GENOMICS bioinformatics

Project overview

This report is a sample deliverable built on public data to show how HST GENOMICS delivers a microbial genome resequencing and variant calling project. Data: NCBI SRA run SRR2584866, clone REL11365 from the E. coli B REL606 long-term evolution experiment (study “E. coli genome evolution over 50,000 generations”), Illumina HiSeq 2500, 2 × 150 bp. Variants are called against the ancestral REL606 reference genome (NCBI GCF_000017985.1).

4.95 M
reads after QC
99.99%
mapped
143.9x
mean depth
789
variants after filtering

Methods

Quality control

MetricValue
Raw reads5,536,796
Reads after QC4,951,018
Q30 after QC91.6%
Mapping rate99.99%
Mean depth143.9x
Genome at ≥10x93.1%
Table 1. Sequencing and alignment QC.
Figure 1. Read depth along the genome (10 kb window means). About 6.9% of reference positions have depth below 10x; contiguous stretches near zero may reflect deletions in this clone relative to the ancestor, and stretches at roughly twice the mean may reflect amplifications; both need confirmation from read-level evidence such as split reads at breakpoints.
Figure 1. Read depth along the genome (10 kb window means). About 6.9% of reference positions have depth below 10x; contiguous stretches near zero may reflect deletions in this clone relative to the ancestor, and stretches at roughly twice the mean may reflect amplifications; both need confirmation from read-level evidence such as split reads at breakpoints.

Results

After filtering there are 789 variants: 683 SNPs, 65 insertions and 41 deletions. By snpEff predicted impact: HIGH 76, MODERATE 362, LOW 208, MODIFIER 143.

Figure 2. Variant types and predicted functional effects.
Figure 2. Variant types and predicted functional effects.
Figure 3. Base substitution spectrum (collapsed to six pyrimidine-referenced classes). Transitions 626, transversions 57.
Figure 3. Base substitution spectrum (collapsed to six pyrimidine-referenced classes). Transitions 626, transversions 57.
Figure 4. Read depth at called variants; dashed line marks the 10x filter.
Figure 4. Read depth at called variants; dashed line marks the 10x filter.
PositionChangeGeneEffectHGVSDepth
16,518INSECB_RS00080frameshift variantp.Arg362fs229
105,581G>AddlBstop gainedp.Trp182*138
148,134INSyadEframeshift variantp.Arg86fs88
157,998DELhtrEframeshift variantp.Asn91fs119
172,553CAA>CAfhuAframeshift variantp.Thr744fs186
175,213GAA>GAfhuBframeshift variantp.Val305fs144
233,686INSyafCframeshift variantp.Leu41fs88
337,563C>TlacZstop gainedp.Trp433*194
360,604INSECB_RS01680frameshift variantp.Ala485fs185
377,000T>GECB_RS01790stop lostp.Ter154Cysext*?106
429,704INSECB_RS02045frameshift variantp.Arg362fs217
451,177INSylaCframeshift variantp.Ala48fs136
473,901INSybaLframeshift variantp.Ala469fs141
495,902INSrhsDframeshift variantp.Ala161fs73
619,368T>GECB_RS02980stop lostp.Ter154Cysext*?76
636,294INSdpiBframeshift variantp.Val493fs157
708,824DELkdpBframeshift variantp.Thr103fs122
830,946INSybiIframeshift variantp.Ile46fs155
901,822INSECB_RS04470frameshift variantp.Ala460fs114
917,183INSartJframeshift variantp.Phe34fs108
998,936INSldtDframeshift variantp.Pro269fs142
1,018,106DELelfCframeshift variantp.Asn603fs181
1,019,308DELelfGframeshift variantp.Asp140fs64
1,046,822DELrlmIframeshift variantp.Ser80fs102
1,062,285INSgfcEframeshift variantp.Leu204fs143
1,407,377C>TdbpAstop gainedp.Gln233*157
1,424,975INSpinRframeshift variantp.Ile103fs169
1,426,401DELECB_RS25730frameshift variantp.Leu20fs175
1,439,576INSfeaBframeshift variantp.Ala153fs215
1,470,490DELydcKframeshift variantp.Asn23fs224
Table 2. Variants with HIGH predicted impact (76 in total, first 30 shown; full list in tables/variants_table.csv).
Interpretation note: predicted effects describe where a variant falls and how it may change coding; they are not functional evidence. In real projects candidates are prioritised for the research question (resistance, adaptation, phenotype) with suggestions for validation.

Deliverables

Methods paragraph (for the manuscript)

Paired-end reads (SRA SRR2584866) were quality-filtered with fastp 1.3.7 and aligned to the E. coli B REL606 reference genome (GCF_000017985.1) with BWA-MEM 0.7.19-r1273; alignments were sorted and indexed with samtools 1.24. SNPs and indels were called with bcftools 1.24 mpileup and call in haploid mode, retaining sites with QUAL ≥ 30 and depth ≥ 10, and variant effects were predicted with snpEff 5.4c using the REL606 annotation.