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Characterization of the genome and serine protease of a novel Bacillus subtilis isolate

  • Z. Khan
  • , M. Shafique
  • , F. Saleem
  • , M.K. Azim
  • , N. Jabeen
  • , S.A. Naz

Research output: Contribution to journalArticlepeer-review

Abstract

Current study was undertaken to carry out the genome-wide analysis of a multipotent isolate from desert soil which was previously identified as Bacillus tequilensis based on 16S rDNA analysis. This study also aims to characterize the serine protease and its biocatalytic potentials implying a combination of empirical and in-silico approaches. Next generation sequencing and short read de novo assembly generated the 4,235,084 bp draft genome of Bacillus sp. ZMS-2. Genome sequence analysis by digital DNA:DNA hybridization (dDDH) and average nucleotide identity classified the isolate as Bacillus subtilis ZMS-2 (Bioproject ID: PRJNA691551). Genome annotation revealed 10 antibiotic resistance genes, 8 antibiotic/antifungal gene clusters and 25 genes encoding proteases including subtilisin E, an extracellular alkaline protease. This extracellular protease (ZMS-2 protease) was produced using a statistically optimized medium, purified partially and characterized as alkaline serine protease. The partially purified ZMS-2 protease (780 U/mL) showed a 21 mm zone of casein hydrolysis and dehaired goat skin by pulling out hair with roots. These catalytic potentials of ZMS-2 protease were further confirmed using scanning electron microscopy of casein beads and dehaired skin. The study concludes B. subtilis ZMS-2 as a potent producer of a protease with promising potentials of commercial importance.
Original languageEnglish
Pages (from-to)281-295
Number of pages15
JournalAntonie van Leeuwenhoek
Volume115
Early online date15 Jan 2022
DOIs
Publication statusPublished (in print/issue) - 28 Feb 2022

Data Availability Statement

Whole genome data is submitted to NCBI having Bioproject ID: PRJNA691551 and is freely available. Moreover, all relevant raw data, will be freely available to any researcher wishing to use it for non-commercial purposes, without breaching participant confidentiality.

Funding

The authors acknowledge Higher Education Commission, Pakistan for the provision of funds for this study through TDF Grant No. 02-078 (awarded to corresponding author) and for Indigenous Ph.D. fellowship (awarded to first author).

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Bacillus subtilis ZMS-2
  • Genome-wide
  • ZMS-2 protease
  • Caseinolytic
  • Keratinolytic

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