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Optimal Growth Conditions for the Two Euryhaline Cyanobacterial Clones, Anabaena sp. CB-MAL21 and CB-MAL22 Isolated from Mankyeong Estuary, Korea

机译:两种Euryhaline蓝细菌无性系(Anabaena sp。)的最佳生长条件。 CB-MAL21和CB-MAL22从韩国Mankyeong河口分离

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As a result of the 2-year monthly monitoring of the phytoplankton community at 3 stations in Mankyeong Estuary, Korea, we learned that cyan bacterial species of the genus Anabaena occurred at most sampling points with huge salinity differences (0.1-32.5 psu). We isolated several clones of Anabaena spp. from the monitoring stations, and screen out two euryhaline and nitrogen-fixing Anabaena clones, CB-MAL21 and CB-MAL22. The two clones were grown under various environmental gradients such as temperature (20, 30, 35 and 40 ), salinity (0, 2, 5, 15 and 30psu), and -P concentration (0, 1.6, 8.0, 40 and 200 M). Growth of CB-MAL21 and CB-MAL22 was measured by daily monitoring of chlorophyll fluorescence from each experimental culture for more than three serial transfers. Both the two experimental clones did not grow at 0psu. Maximal growth rates of the two clones were markedly reduced at lower -P concentrations showing negligible growth at 0 and 1.6 M. However, growth of CB-MAL21 was not affected by low concentration in culture media, showing the nitrogen-fixing ability. Maximum biomass yields of the two clones decreased dramatically at 35 and 40 . Optimal growth conditions for the two experimental clones were determined to be 20-30 , 40 M -P, and wide salinity range from 5.0 to over 30psu. Best growth of CB-MAL21 was shown at (20 -15psu), which is less saline and cooler condition than those (i.e., 30 -30psu) for the best growth of CB-MAL22. The euryhaline and nitrogen-fixing CB-MAL21 strain thus can be a candidate laboratory culture for the future cyan bacterial marine biotechnology in temperate coastal waters.
机译:通过对韩国Mankyeong河口3个站的浮游植物群落进行为期2年的每月监测,我们了解到,鱼腥藻属的蓝细菌物种在大多数采样点处出现,其盐度差异很大(0.1-32.5 psu)。我们分离了鱼腥藻的几个克隆。从监测站中筛选出两个鱼腥藻和固氮鱼腥藻克隆CB-MAL21和CB-MAL22。这两个克隆在各种环境梯度(例如温度(20、30、35和40),盐度(0、2、5、15和30psu)和-P浓度(0、1.6、8.0、40和200 M)下生长)。 CB-MAL21和CB-MAL22的生长是通过每天监测来自每个实验培养物的叶绿素荧光超过三个系列的转移来测量的。两个实验克隆都没有在0psu生长。在较低的-P浓度下,两个克隆的最大生长速率显着降低,在0和1.6 M时生长可忽略不计。但是,CB-MAL21的生长不受培养基中低浓度的影响,显示出固氮能力。两个克隆的最大生物量产量在35和40时急剧下降。确定两个实验克隆的最佳生长条件为20-30、40 M -P,盐度范围从5.0到30psu以上。 CB-MAL21的最佳生长表现为(20 -15psu),与CB-MAL22的最佳生长相比,盐和凉爽的条件比(30 -30psu)少。因此,在温带沿海水域中,euryhaline和固氮CB-MAL21菌株可以成为未来蓝藻细菌海洋生物技术的候选实验室培养物。

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