Influence of Biostimulation Treatment Using Composted Plant Biomass on Bacterial Diversity of an Aged Petroleum Contaminated Soil as Determined by Culture-dependent and 16S rRNA Gene PCR-DGGE Based Identification Methods
Leera Solomon, Chimezie Jason Ogugbue, Gideon Chijioke Okpokwasili
South Asian Journal of Research in Microbiology · pp. 1–16 · Published 4 May 2018
10.9734/sajrm/2018/v1i2740Abstract
Influence of biostimulation treatment using composted plant biomass on bacterial diversity of an aged crude oil contaminated soil (ACOCS) was determined using culture-dependent and 16S rRNA gene PCR-DGGE based identification methods. Seven treatment plots were designed and included treatments A (TPA) through G (TPG). Samples were collected bi-weekly from 7 treatment plots designed in situ during a 70-day study period that spanned 10 weeks. Composted (2,500 g each) Water hyacinth (EC), Mexican sunflower (TD) and Bermuda grass (CD) were used as nutrient supplements in 4,000 g of ACOCS in situ. TPA was un-amended while TPB, TPC, and TPD had EC, TD and CD added singly. TPE had EC and TD while TPF contained EC and CD in combination. TPG consisted of EC, TD and CD combined. Bacterial isolates were obtained on mineral salts medium and identified based on their morphological and biochemical characteristics. DGGE fingerprints of PCR-amplified 16S rRNA bacterial gene fragments were also determined using the universal primer set: 7F: 5’-GAGTTTGATCCTGGCTCAG-3’ and 1492R:5’-GGTTACCTTGTTACGACT-3’that corresponded to positions 968 and 1401 of Escherichia coli 16S rRNA gene sequence. DGGE bands fell into corresponding operational taxonomic units based on a threshold of 91-100% sequence similarity. Dendrogram showed dominant DGGE bands in TPB though TPG over time with TPA having no band. The isolates are known crude oil utilizers and are closely related to Gordonia sp. BS261404 with 98% sequence similarity, Aquitalea magnusonii KG26145 (96%), Sphingobacterium sp. K1261411 (97%) and Achromobacter sp. HQ261417 (100%). Data indicated that pseudomonads are the dominant bacteria involved in hydrocarbon biodegradation after biostimulation with the composted plant materials. Cultural and molecular methods of cultivation of microorganisms are neither contradictory nor excluding and should be considered as complementary to interrogate the bacterial diversity in the natural soil environment.
Cited by 5
Richa Sharma, Vijay Pooniya, Virendra S. Bisaria · World Journal of Microbiology and Biotechnology · 2020
Shobhika Parmar, Vijay Kumar Sharma, Jitendra Kumar · Microbial Genomics in Sustainable Agroecosystems · 2019
K.F. Hsia, C.C. Chen, J.H. Ou · Journal of Cleaner Production · 2021
Gunda Mohanakrishna, Riyadh I. Al-Raoush, Ibrahim M. Abu-Reesh · Biotechnology Reports · 2020
Anwuli U. Osadebe, Chimezie J. Ogugbue, Gideon C. Okpokwasili · Bioremediation Journal · 2024
Related research
- Diversity and Antimicrobial Activity of Hydrobionts Associated Microorganisms from the Sea of Japan with the Occurrence of Tropodithietic Acid Producing Bacteria — shares topic coverage
- Compliance Monitoring of Microbiological and Physicochemical Parameters of Abattoirs’ Effluents Discharged into Water Bodies in Owerri, Nigeria — shares topic coverage
- Metagenomic Study and Biodegrading Capability of Bacterial Community in Monocrotophos Treated Tea Soil — shares topic coverage
- Rethinking Contextual Waste Management Policies to Mitigate the Risk of Antimicrobial Resistant Infections in Healthcare Settings: Evidence from Selected Hospitals in West Cameroon — shares topic coverage
- Effect of Woodchips on Bioremediation of Crude Oil-polluted Soil — shares topic coverage
Article metrics
Real usage data collected on this platform.
0
Page views
0
PDF downloads
0
Outbound clicks
5
Citations
Views by country
Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".
No views recorded yet.
Traffic sources
Referring site, by host.
No traffic recorded yet.
Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.