Whole Genome Shotgun Sequencing-Based Insights into the Benzene and Xylene Degrading Potentials of Bacteria
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18. Juni 2025
Über diesen Artikel
Artikel-Kategorie: Original Paper
Online veröffentlicht: 18. Juni 2025
Seitenbereich: 244 - 261
Eingereicht: 07. Apr. 2025
Akzeptiert: 11. Mai 2025
DOI: https://doi.org/10.33073/pjm-2025-020
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© 2025 FATIMA MUCCEE et al., published by Sciendo
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
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Statistics of contigs produced by the metaSPAdes program_
No. | Quast quality parameters | Statistics (bp) |
---|---|---|
1 | Contigs > 10,000 bp | 4,992 |
2 | Contigs ≥ 5,000 bp | 940 |
3 | Contigs ≥ 10,000 bp | 431 |
4 | Contigs ≥ 25,000 bp | 169 |
5 | Contigs ≥ 50,000 bp | 76 |
6 | Largest contig | 469,435 |
7 | Total length | 30,570,959 |
8 | Total length ≥ 1,000 bp | 27,559,880 |
9 | Total length ≥ 5,000 bp | 19,294,370 |
10 | Total length ≥ 10,000 bp | 15,759,083 |
11 | Total length ≥ 25,000 bp | 11,859,173 |
12 | Total length ≥ 50,000 bp | 8,511,336 |
13 | N50 | 10,938 |
Stoichiometry of reactions involved in benzene, xylene and toluene degradation identified in the current study bacteria based on WGS_
No. of reaction | Stoichiometry of reactions | |
---|---|---|
Reactants | Products | |
Benzene degradation pathway | ||
I | C6H6 + H2 + CO2 benzene | C7H8O + [O-] |
II | C7H8O | C7H6O + H2 |
III | C7H6O + [O-] | C7H6O2 |
IV | C7H6O2 + [O-] + H2O | C7H8O4 |
V | C7H8O4 | C6H6O2 |
VI | C6H6O2 + 2 [H+] | C6H5O4- + 3 [H+] |
VII | C6H5O4- | C6H6O4 |
VIII | C6H6O4 | C6H5O4+ [H+] |
IX | C6H5O4 | C6H5O52- |
X | C6H5O52- + [H+] + C21H36N7O16P3S | C27H42N7O20P3S + [O] |
XI | C27H42N7O20P3S + 5H2O | C23H38N7O17P3S + 4CO2+ 7H2O |
I | C8H10 + [O-] |
C8H10O |
II | C8H10O + CO2 | C9H10O2 + [O-] |
III | C9H10O2 + 2O2 | C8H9O4 + CO2 + [H+] |
IV | C8H9O4 | C7H8O2 + CO2 + [H+] |
V | C7H8O2 + O2 | C7H8O4 |
VI | C7H8O4 + [O] | C7H8O5 |
VII | C7H8O5 | C7H8O5 |
VIII | C7H8O5 | C6H8O3 + CO2 |
IX | C6H8O3 + H2O | C6H10O4 |
X | C6H10O4 + 2O2 + H2O | 3CO2+ C3H3O3- + H2O |
I | C8H10+ [O] |
C8H10O |
II | C8H10O | C8H8O + H2 |
III | C8H8O + CO2+ H2 | C9H10O2 + H2O |
IV | C9H10O2 + CO2 | C8H8O4 + H2 |
I | C8H10 + [O-] |
C8H10O |
II | C8H10O | C8H8O + H2 |
III | C8H8O + CO2 + H2 | C9H10O2 + [O] |
IV | C9H10O + CO2 | C8H10O4 |
V | C8H10O4 | C7H8O2 + CO2 + H2 |
VI | C7H8O2 + O2 | C7H8O4 |
VII | C7H8O4 + [O-] | C5H6O3 + 2CO2 + H2 |
VIII | C5H6O3 + H2O | C5H7O4- + [H+] |
IX | C5H7O4- + [O-] | C3H3O3- + 2CO2 + 2H2 pyruvate |
Toluene degradation pathway | ||
I | C6H5CH3 + [O] toluene | C6H5CH2OH |
II | C6H5CH2OH benzyl alcohol | C6H5CHO + H2 |
III | C6H5CHO + [O] benzaldehyde | C7H5O2 + [H] |
Functional annotation of genes associated with aromatic compound degradation via the KEGG database_
No. | Associated biochemical pathway | Genes identified |
---|---|---|
1 | Xylene degradation pathway | toluene methyl-monooxygenase [EC:1.14.15.26], |
2 | Toluene degradation pathway | toluene methyl-monooxygenase [EC:1.14.15.26], |
3 | Benzene | benzoate/toluate 1,2-dioxygenase subunit alpha [EC:1.14.12.10], dihydroxycyclohexadiene carboxylate dehydrogenase [EC:1.3.1.25], |
3 | Aminobenzoate degradation pathway | benzaldehyde dehydrogenase (NAD) [EC:1.2.1.28], |
4 | Fluorobenzoate degradation pathway | benzoate/toluate 1,2-dioxygenase subunit alpha [EC:1.14.12.10], |