어류 치어기의 주요 먹이로 생물로 사용되는 해산 로티퍼 (Brachionus plicatilis)의 생존율 및 개체군 성장률을 이용하여, 국내 연안에 잔류하고 있는 것으로 알려진 신방 오물질인 chlorothalonil의 독성을 평가하고자 하였다. B. plicatilis의 생존율은 0.039 mg L-1에서 유의하게 감소하기 시작하여, chlorothalonil의 농도가 증가할수록 감소하는 농도의존성을 나타냈다. 생존율의 무영향농도는 0.020 mg L-1, 최소영향농도는 0.039 mg L-1, 반수영향농도는 0.057 mg L-1로 나타났다. 개체군 성장률 또한 생존율과 마찬가지로 0.313 mg L-1에서부터 농도의존적으로 감소하는 경향을 나타냈다. 개체군 성장률의 무영향농도는 0.156 mg L-1, 최소영향농도는 0.313 mg L-1, 반수영향농도는 0.506 mg L-1 로 나타났다. 본 연구 결과, 해양 생태계 내에서 신방오물질인 chlorothalonil의 잔류 농도가 0.039 mg L-1 이상일 경우 B. plicatilis에게 독성영향을 줄 것으로 예상되며, 본 연구의 생태독성 시험결과를 바탕으로 해양환경 내 chlorothalonil 의 독성을 평가하기 위한 기초연구자료 및 다른 방오물질과의 독성영향을 비교평가할 수 있는 자료로 활용될 수 있을 것이다.
해산로티퍼 (Brachionus plicatilis)의 생존 및 개체군 성장률 (r)을 사용하여 Zinc undecylenate (ZU)에 대한 독성평가를 실시하였다. 24 h 동안 ZU에 노출된 B. plicatilis의 생존율은 실험 최고농도 100 mg L-1에서도 영향이 나타나지 않았으나, ZU에 72 h 노출된 개체군 성장률 (r)은 농도 의존적으로 감소하는 경향을 나타내, 12.5 mg L-1 에서 유의적인 감소를 나타냈고 최고농도 50.0 mg L-1에서 개체군 성장률이 90% 이상 감소되었다. ZU에 노출된 B. plicatilis의 개체군 성장률의 반수영향농도 (EC50)값은 26.4 mg L-1, 무영향농도 (NOEC)는 6.3 mg L-1, 최소영향농도 (LOEC)는 12.5 mg L-1로 나타났다. 자연생태계 내에서 ZU 물질이 해수 중에서 12.5 mg L-1 이상을 초과하여 나타낼 때 B. plicatilis와 같은 동물성플랑크톤의 개체군 성장률이 영향을 받을 것으로 판단되며, 이러한 연구결과는 신방오도료물질의 생태안정성 평가를 위한 기준치 설정 및 다른 방오도료물질과의 독성치를 비교할 수 있는 유용한 자료로 활용될 것으로 판단된다.
The oxicity assesment of Phenanthrene (PHE) has been investigated by using the rate (r) of survival and population growth in rotifer Brachionus plicatilis. The survival rate was determined after 24 h of exposure to PHE. The survival rate of PHE had no effect at a maximum of 300 mg L-1. The r was determined after 72 h of exposure to PHE. It was observed that r in the controls (absence PHE) was greater than 0.5, but that it suddenly decreased with an increased concentration of PHE. PHE reduced r in a dose-dependent manner and a significant reduction occurred at a concentration of greater than 37.5 mg L-1. The EC50 value of r in PHE exposure was 63.7 mg L-1. The no-observed-effect-concentration (NOEC) of r in PHE exposure was 18.8 mg L-1. The lowest-observed-effect-concentration (LOEC) of r in the PHE exposure was 37.5 mg L-1. From the results, the concentration of PHE (greater than 37.5 mg L-1) has a toxic effect on the r of B. plicatilis in natural ecosystems. These results (including NOEC, LOEC and EC50) might be useful for the Polycyclic aromatic hydrocarbons (PAHs) toxicity assessment in marine ecosystems.
Effect of heavy metals (Cd, Cu, Zn) on the survival and population growth rates (PGR) of marine rotifer, Brachionus plicatilis were examined. B. plicatilis were exposed to Cd, Cu and Zn for 24 h to determine their survival and 72 h to determine their PGR. Survival rates in the control groups were greater than 90%. They were decreased with increasing concentrations of Cd, Cu and Zn. Survival rates were reduced in a concentration-dependent manner. Significant reduction in survival rates after exposure to Cd, Cu and Zn at concentration greater than 40.00, 0.13 and 10.00 mg L-1, respectively. PGR in the control groups were greater than 0.50. They were decreased with increasing concentrations of heavy metals. PGR were reduced in a concentrationdependent manner. Significant reduction in PGR after exposure to Cd, Cu and Zn occurred at concentration greater than 12.5, 0.06 and 1.00 mg L-1, respectively. The order of heavy metal toxicity based on PGR was Cu>Zn>Cd, with EC50 (50% Effective Concentration) values of 0.12, 6.15 and 21.41 mg L-1, respectively. The lowest-observed-effective-concentrations (LOEC) of PGR after exposure to Cd, Cu and Zn were 12.50, 0.06 and 1.00 mg L-1, respectively. The No-observedeffective- concentrations (NOEC) of PGR after exposure to Cd, Cu and Zn were 6.25, 0.03 and 0.01 mg L-1, respectively, in marine ecosystems have toxic effects on PGR of B. plicatilis. These results suggest that the PGR of B. plicatilis are useful tool to assess the effect of heavy metals on primary consumers in marine natural ecosystems.
Toxicity assessment of heavy metals (As, Cr and Pb) has been investigated by using the rate of survival and population growth(r) of marine rotifer, Brachionus plicatilis. The survival rate was determined after 24 hours of exposure to As, Cr and Pb. As and Cr reduced survival rate in dose-dependent manner and a significant reduction were occurred at concentration of greater than 30 and 150 mg L-1, but Pb had no effect on survival rate. The r was determined after 72 hours of exposure to As, Cr and Pb. As, Cr and Pb reduced r in dose-dependent manner and a significant reduction were occurred at concentration of greater than 5, 25 and 50 mg L-1. The toxicity of heavy metals were ranked As>Cr>Pb, with EC50 values of 12.98, 82.34 and 110.14 mg L-1, respectively. The no-observed-effect-concentration (NOEC) of r in As, Cr and Pb exposure were 1, 12.5 and 50 mg L-1, respectively. The lowest-observed-effect-concentration (LOEC) of r in As, Cr and Pb exposure were 5, 25, and 50 mg L-1, respectively. From the results, the concentration of As, Cr and Pb (greater than 5, 25 and 50 mg L-1, respectively) have toxic effect on the r of B. plicatilis in natural ecosystems. These results (including NOEC and EC50) might be useful for the mixing toxicity assessment and toxic guide line of heavy metals in marine ecosystems.