Heavy-Metal and Antibiotic Resistance in the Bacterial Flora of Sediments of New York Bight
Устойчивость к тяжёлым металлам и антибиотикам у бактериальной флоры донных отложений Нью-Йоркской бухты
1978-09-01
SCID: 54.1/yx3jxhap
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Bacillusantibiotic resistancebeta-lactamase productionheavy-metal resistancemercury resistance
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Abstract (AI)
The New York Bight extends seaward some 80 to 100 miles (ca. 129 to 161 km) from the Long Island and New Jersey shorelines to the edge of the continental shelf. Over 14 x 10(6) m(3) of sewage sludge, dredge spoils, acid wastes, and cellar dirt are discharged into this area each year. Large populations of Bacillus sp. resistant to 20 mug of mercury per ml were observed in Bight sediments contaminated by these wastes. Resistant Bacillus populations were much greater in sediments containing high concentrations of Hg and other heavy metals than in sediments from areas further offshore where dumping has never been practiced and where heavy-metal concentrations were found to be low. Ampicillin resistance due mainly to beta-lactamase production was significantly (P < 0.001) more frequent in Bacillus strains from sediments near the sewage sludge dump site than in similar Bacillus populations from control sediments. Bacillus strains with combined ampicillin and Hg resistances were almost six times as frequent at the sludge dump site as in control sediments. This observation suggests that genes for Hg resistance and beta-lactamase production are simultaneously selected for in Bacillus and that heavy-metal contamination of an ecosystem can result in a selection pressure for antibiotic resistance in bacteria in that system. Also, Hg resistance was frequently linked with other heavy-metal resistances and, in a substantial proportion of Bacillus strains, involved reduction to volatile metallic Hg (Hg degrees ).
Key Findings
1
Ampicillin resistance, mainly attributable to beta-lactamase production, was significantly more frequent near the sewage-sludge dump site than in control sediments (P < 0.001).
2
Bacillus strains combining ampicillin and mercury resistance were nearly six times more frequent at the sludge dump site than in control sediments.
3
Large populations of mercury-resistant Bacillus, tolerating 20 μg Hg/ml, occurred in heavily contaminated New York Bight sediments.
4
Mercury-resistant Bacillus populations were substantially greater in sediments with high mercury and heavy-metal concentrations than in uncontaminated offshore sediments.
5
The findings indicate simultaneous selection for mercury-resistance and beta-lactamase genes, with mercury resistance often linked to other heavy-metal resistances and sometimes involving volatilization of metallic mercury.
Research Object
Bacillus populations in New York Bight sediments contaminated with sewage sludge and heavy metals
Research Subject
The relationship between heavy-metal contamination and mercury, ampicillin, and linked antibiotic resistance in Bacillus, including beta-lactamase production, co-selection, and mercury reduction to volatile metallic Hg
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1978-09-01
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