1996년 6월부터 10월까지 적조다발해역 마산만에서 C. polykrikoides 살조세균의 분포와 분리된 110 균주 중 살조능이 우수한 Micrococcus sp. LG-1의 살조특성을 요약하면 다음과 같다. 현장해수에서 C. polykrikoides 살조세균은 $10^2\~10^3$cells/ml의 범위로, C. polykrikoides 적조가 발생한 9월에 $4.8\times10^3$cells/ml로 가장 높았으며, 적조가 소멸하는 10월에 $2.0\times10^2$cells/ml로 감소하는 경향을 나타내었다. C. polykrikoides에 대한 Micrococcus sp. LG-1의 살조특성을 혼합배양을 통하여 조사하였다. 잠복기와 대수증식기의 C. polykrikoides의 배양액에 Micrococcus sp. LG-1을 접종한 결과 각각 6일과 5일 만에 사멸되어, 대수증식기의 C. polykrikoides가 빠르게 사멸되었다. 또한, Micro-coccus sp. LG-1의 개체수와 배양여과액의 농도에 비례하여 C. polyklikoides의 사멸효과가 높게 나타났으며, 배양여과액은 최종농도가 2.5\%$일 경우는 접종 후 5.5시, $5\%$에서는 3.5시간, 10과 $20\%$에서는 1.5시간 그리고 $30\%$에서는 1시간만에 모두 사멸하였다. Alexandrium tamarense, Prorocentrum micans, Scrippsiella trochoidea. ana Gymnodinium sanguineum, Cochlodinium polykrikoides의 5종의 적조원인 편모조류에 대한 Micrococcus sp. LG-1의 살조특이성은 C. polykrikoides에만 살조효과를 나타내었다.
1996년 6월부터 10월까지 적조다발해역 마산만에서 C. polykrikoides 살조세균의 분포와 분리된 110 균주 중 살조능이 우수한 Micrococcus sp. LG-1의 살조특성을 요약하면 다음과 같다. 현장해수에서 C. polykrikoides 살조세균은 $10^2\~10^3$cells/ml의 범위로, C. polykrikoides 적조가 발생한 9월에 $4.8\times10^3$cells/ml로 가장 높았으며, 적조가 소멸하는 10월에 $2.0\times10^2$cells/ml로 감소하는 경향을 나타내었다. C. polykrikoides에 대한 Micrococcus sp. LG-1의 살조특성을 혼합배양을 통하여 조사하였다. 잠복기와 대수증식기의 C. polykrikoides의 배양액에 Micrococcus sp. LG-1을 접종한 결과 각각 6일과 5일 만에 사멸되어, 대수증식기의 C. polykrikoides가 빠르게 사멸되었다. 또한, Micro-coccus sp. LG-1의 개체수와 배양여과액의 농도에 비례하여 C. polyklikoides의 사멸효과가 높게 나타났으며, 배양여과액은 최종농도가 2.5\%$일 경우는 접종 후 5.5시, $5\%$에서는 3.5시간, 10과 $20\%$에서는 1.5시간 그리고 $30\%$에서는 1시간만에 모두 사멸하였다. Alexandrium tamarense, Prorocentrum micans, Scrippsiella trochoidea. ana Gymnodinium sanguineum, Cochlodinium polykrikoides의 5종의 적조원인 편모조류에 대한 Micrococcus sp. LG-1의 살조특이성은 C. polykrikoides에만 살조효과를 나타내었다.
In this study, we have investigated the distributions and killing effects of marine bacteria that tend to kill the red tide microalgae, C. polykikoides in the area of Masan bay from June to October, 1996. To summarize, C. polykikoides killing bacteria were detected at $10^2$ to $10^3...
In this study, we have investigated the distributions and killing effects of marine bacteria that tend to kill the red tide microalgae, C. polykikoides in the area of Masan bay from June to October, 1996. To summarize, C. polykikoides killing bacteria were detected at $10^2$ to $10^3$ cells/ml of seawater samples during the survey period, and the bloom was observed in September by containing $4.8\times10^3$cells/ml. It appears however that the number of these bacteria is decreased ($2.0\times10^2$cells/ml) in October, A total of 110 strains were isolated from seawater samples and seawater filtrate (pore size, 0.8 $\mu$m)-containing mixed culture of C. polykikoides in which the mixed culture was grown in f/2 medium. As results we have successfully isolated Micrococcus sp. LG-1 which decreased to less than 10cells/ml within 6days and 5days sfter inoculation of Micrococcus sp. LG-1 into the la9 and logarithmic growth phases of C. polykrikoides respectively. Therefore, it appears that inoculation of Micrococcus sp. LG-1 against the logarithmic C. polykrikoides is more effective than the lag growth phase, (n addition, the killing effects were increased in accordance with bacterial cell densities inoculated in a dose dependent manner. Especially, the filtrate of kitling bacterium culture (nore size, 0.2 $\mu$m) revealed a dramatic effect in which C. polykrikoides were decreased to less than 10 cells/mf of culture within 1 hr, 1,5 hrs, 1,5 hrs, 3.5 hrs. and 5,5 hrs after inoculations of the culture filtrate with concentration of $30\%,\;20\%,\;10\%,\;5\%$ and $2.5\%$, respectively. Moreover Micrococcus sp. LG-1 showed a selective specificity against C. polykrikoides and any other killing effects of Micrococcus sp. LG-1 were not observed against Alexandrium tamarense, Prorocentrum micans, Scrippsiella trochoidea. ana Gymnodinium sanguineum.
In this study, we have investigated the distributions and killing effects of marine bacteria that tend to kill the red tide microalgae, C. polykikoides in the area of Masan bay from June to October, 1996. To summarize, C. polykikoides killing bacteria were detected at $10^2$ to $10^3$ cells/ml of seawater samples during the survey period, and the bloom was observed in September by containing $4.8\times10^3$cells/ml. It appears however that the number of these bacteria is decreased ($2.0\times10^2$cells/ml) in October, A total of 110 strains were isolated from seawater samples and seawater filtrate (pore size, 0.8 $\mu$m)-containing mixed culture of C. polykikoides in which the mixed culture was grown in f/2 medium. As results we have successfully isolated Micrococcus sp. LG-1 which decreased to less than 10cells/ml within 6days and 5days sfter inoculation of Micrococcus sp. LG-1 into the la9 and logarithmic growth phases of C. polykrikoides respectively. Therefore, it appears that inoculation of Micrococcus sp. LG-1 against the logarithmic C. polykrikoides is more effective than the lag growth phase, (n addition, the killing effects were increased in accordance with bacterial cell densities inoculated in a dose dependent manner. Especially, the filtrate of kitling bacterium culture (nore size, 0.2 $\mu$m) revealed a dramatic effect in which C. polykrikoides were decreased to less than 10 cells/mf of culture within 1 hr, 1,5 hrs, 1,5 hrs, 3.5 hrs. and 5,5 hrs after inoculations of the culture filtrate with concentration of $30\%,\;20\%,\;10\%,\;5\%$ and $2.5\%$, respectively. Moreover Micrococcus sp. LG-1 showed a selective specificity against C. polykrikoides and any other killing effects of Micrococcus sp. LG-1 were not observed against Alexandrium tamarense, Prorocentrum micans, Scrippsiella trochoidea. ana Gymnodinium sanguineum.
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