Title of article
Prey-predator dynamics in communities of culturable soil bacteria and protozoa: differential effects of mercury
Author/Authors
Holtze، نويسنده , , Maria S and Ekelund، نويسنده , , Flemming and Rasmussen، نويسنده , , Lasse D and Jacobsen، نويسنده , , Carsten S and Johnsen، نويسنده , , Kaare، نويسنده ,
Pages
7
From page
1175
To page
1181
Abstract
We investigated whether the prey-predator dynamics of bacteria and protozoa were affected by inorganic mercury at concentrations of 0, 3.5 and 15 mg Hg(II) kg soil−1. The amount of bioavailable Hg was estimated using a biosensor-assay based on the mer–lux gene fusion. The numbers of bacterial CFUs on the general medium 1/100 tryptic soy agar (TSA) were significantly decreased when the soil had been amended with Hg. In contrast, no effect was seen on the number of CFUs on the Pseudomonas-specific medium Gouldʹs S1 agar. Protozoan numbers estimated by the most probable number (MPN) method with 1/100 TSB as growth medium were also negatively affected by Hg. The different fractions of protozoa were affected to different degrees suggesting that amoebae were less sensitive than slow-growing flagellates, which again were less sensitive than the fast-growing flagellates. In contrast, Hg did not induce any detectable changes in the diversity of flagellate morphotypes. In the treatment with 15 mg Hg kg−1 a transiently increased number of bacteria was seen at day 6 probably concomitant with a decrease in the numbers of protozoa. This might indicate that Hg affected the prey-predator dynamics in communities of culturable bacteria and protozoa in soil. Furthermore, we showed that the number of Pseudomonas spp. was not affected by Hg whereas the number of bacteria growing on a general medium was.
Keywords
Prey-predator dynamics , Protozoa , PSEUDOMONAS , Bioavailable mercury , microcosms
Journal title
Astroparticle Physics
Record number
1994293
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