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. 2023 Dec 30;206(1):48.
doi: 10.1007/s00203-023-03785-5.

Characterization of Priestia megaterium S1, a polymer degrading gut microbe isolated from the gut of Tenebrio molitor larvae fed on Styrofoam

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Characterization of Priestia megaterium S1, a polymer degrading gut microbe isolated from the gut of Tenebrio molitor larvae fed on Styrofoam

Krishnamoorthi Akash et al. Arch Microbiol. .

Abstract

This study reveals that Tenebrio molitor larvae are fed with two different feeds i.e., barley bran along with Styrofoam, and barley bran without Styrofoam, the survival percentage of mealworms shows 86 and 89%, respectively. Five isolates namely S1, S2, S3, S4, and S5 were isolated from the gut of Styrofoam-feeding Tenebrio molitor larvae and tested for Hydrophobicity percentage, clear zone assay and turbidity measurement. S1 isolate showed best (turbidity percentage of 19.65%, 13.54% hydrophobicity percentage, and 37% zone of clearance) when compared to other isolates, respectively. 16S rRNA characterization of S1 isolate revealed that the isolate belongs to Priestia megaterium S1(ON024787). Biodegradation of PE and PS beads by Priestia megaterium S1 makes physical and structural changes over 180 days, after microbial adhesion to the beads. Growth parameters have shown that the Priestia megaterium S1 thrives more effectively in the pH (6.5), temperature (28 °C) and at 1.5% LDPE/HDPE/PS concentration there is maximum utilization of carbon and a high percentage survival rate. Significant colonization of the isolate after 30 days over beads of LDPE (52.47%), HDPE (49.26%), and PS (48.11%), respectively. Experimental data revealed that Priestia megaterium S1 have PE and PS beads degradation capacity, proven by weight loss studies, at 6th-month percentage weight loss of LDPE (36.1%), HDPE (31.9%), and PS (28.6%), the percentage loss of carbon and hydrogen shows higher when compared to control. One month Biological Oxygen Demand (BOD) showed that LDPE (7.4 mg/l), HDPE (7.2 mg/l), PS (6.7 mg/l), and simultaneous studies on CO2 evolution over LDPE treatment is 5.05 g/l, HDPE (4.26 g/l), and PS (3.91 g/l), respectively. Fourier Transform Infrared Spectroscopy (FTIR) and Scanning Electron Microscope (SEM) prove the occurrence of biodegradation on the surface of beads. This work highlights that Priestia megaterium S1 plays a vital role in effectively degrading PE and PS beads.

Keywords: Biodegradation; Mealworm; Polyethylene; Polystyrene; Styrofoam.

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References

    1. Ali SS, Elsamahy T, Abdelkarim EA et al (2022) Biowastes for biodegradable bioplastics production and end-of-life scenarios in circular bioeconomy and biorefinery concept. Bioresour Technol 363:127869. https://doi.org/10.1016/J.BIORTECH.2022.127869 - DOI - PubMed
    1. Augusta J, Müller RJ, Widdecke H (1993) A rapid evaluation plate-test for the biodegradability of plastics. Appl Microbiol Biotechnol 39:673–678. https://doi.org/10.1007/BF00205073/METRICS - DOI
    1. Azagoh C, Hubert A, Mezdour S (2015) Insect biorefinery in Europe: “DESigning the Insect bioRefinery to contribute to a more sustainABLE agro-food industry.” J Insects Food Feed 1:159–168. https://doi.org/10.3920/JIFF2014.0009 - DOI
    1. Brandon AM, El Abbadi SH, Ibekwe UA et al (2020) Fate of hexabromocyclododecane (HBCD), a common flame retardant, in polystyrene-degrading mealworms: Elevated HBCD levels in egested polymer but no bioaccumulation. Environ Sci Technol 54:364–371. https://doi.org/10.1021/ACS.EST.9B06501 - DOI - PubMed
    1. Chamas A, Moon H, Zheng J et al (2020) Degradation rates of plastics in the environment. ACS Publicat 8:3511. https://doi.org/10.1021/acssuschemeng.9b06635 - DOI

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