Biodiversitas Journal of Biological Diversity
Vol. 27 No. 5 (2026)

Indigenous Bacillus biodiversity from plastic-contaminated soil and its potential for low-density polyethylene (LDPE) biodegradation

WAHYU IRAWATI (Department of Biology Education, Faculty of Education, Universitas Pelita Harapan. Jl. M.H. Thamrin Boulevard 1100, Tangerang 15811, Banten, Indonesia)
SERGIO TRISON LIE (Department of Biology, Faculty of Health Science, Universitas Pelita Harapan. Jl. M.H. Thamrin Boulevard 1100, Tangerang 15811, Banten, Indonesia)
GEOFFREY DARRIEN FIDELI (Department of Biology, Faculty of Health Science, Universitas Pelita Harapan. Jl. M.H. Thamrin Boulevard 1100, Tangerang 15811, Banten, Indonesia)
BILLY YOSUA COTANTIN PONGAJOW (Department of Biology, Faculty of Health Science, Universitas Pelita Harapan. Jl. M.H. Thamrin Boulevard 1100, Tangerang 15811, Banten, Indonesia)
JUANDY JO (Department of Biology, Faculty of Health Science, Universitas Pelita Harapan. Jl. M.H. Thamrin Boulevard 1100, Tangerang 15811, Banten, Indonesia)



Article Info

Publish Date
04 Jul 2026

Abstract

Abstract. Irawati W, Lie ST, Fideli GD, Pongajow BYC, Jo J. 2026. Indigenous Bacillus biodiversity from plastic-contaminated soil and its potential for low-density polyethylene (LDPE) biodegradation. Biodiversitas 27 (5): d270528. https://doi.org/10.13057/biodiv/d270528. Increasing plastic use has led to persistent accumulation of low-density polyethylene (LDPE) in terrestrial environments. This study isolated and characterized indigenous Bacillus-like bacteria from plastic-contaminated soil in the public parking area of Universitas Pelita Harapan and evaluated their capacity to induce early-stage LDPE modification. Soil suspensions were plated on King’s B agar supplemented with polyethylene glycol (PEG), yielding eight morphologically distinct isolates. LDPE strips were incubated for 30 days in minimal salt medium (MSM) inoculated with each isolate, with LDPE as the principal experimental substrate and no additional organic carbon intentionally supplied. Surface changes were assessed by scanning electron microscopy (SEM), chemical changes by Fourier-transform infrared (FTIR) spectroscopy and carbonyl index (CI) calculation, and taxonomic identity by 16S rRNA gene sequencing. All eight isolates were Gram-positive, catalase-positive, endospore-forming rods, and 16S analysis assigned them to Bacillus velezensis, Bacillus altitudinis, Bacillus licheniformis, Bacillus subtilis, and Bacillus paralicheniformis. SEM revealed isolate-specific colonization-associated surface changes, ranging from roughening and small pits to deep cracks and perforation, with A.4.I.1 showing the most extensive damage. FTIR spectra indicated oxidation-related changes, including intensified carbonyl and C-O bands; screening-level CI values ranged from 0.190 to 0.346, again highest for A.4.I.1. These findings suggest that plastic-impacted urban soil can serve as a reservoir of LDPE-associated Bacillus isolates and identify B. velezensis A.4.I.1 as a priority candidate for follow-up biodegradation studies. Because FTIR/CI observations were exploratory and no mass-loss or mineralization endpoints were measured, the results should be interpreted as evidence of biodeterioration and early oxidative modification rather than complete LDPE biodegradation.

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Journal Info

Abbrev

biodiv

Publisher

Subject

Agriculture, Biological Sciences & Forestry Biochemistry, Genetics & Molecular Biology

Description

The Biodiversitas Journal was first published in 2000 by the Department of Biology, FMNS, Universitas Sebelas Maret, Surakarta, Indonesia, then in 2006 it was co-published by the Society for Indonesian Biodiversity and that department; since 2017 it was also hosted by Smujo. From 2003-2012 it was ...