Bacillus cereus strain CZBC1 capable of dissolving pond oscillatoria, and its application
A technology of Bacillus cereus and pond oscillating algae, applied in the direction of bacteria, microorganism-based methods, water/sludge/sewage treatment, etc., can solve the research on whether Bacillus cereus strains can dissolve pond oscillating algae, ignore each other Contact, industrial technology application and development limitations, etc., to achieve the effect of inhibiting the formation of Oscillator algae, optimizing technical reserves, and obvious bacteriolysis effect
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Embodiment 1
[0017] The screening method of the Bacillus cereus bacterial strain CZBC1 of embodiment 1 dissolving Oscillator algae
[0018] 1. Material preparation
[0019] 1. Bacterial source
[0020] Obtained from a prawn farm in Honghai Bay, Shanwei;
[0021] 2. Medium
[0022] (1) Microalgae BG11 liquid medium;
[0023] (2) Add NH to sterilized pond water 4 Cl1.0~1.5g / L and Na 2 HPO 4 30~40mg / L;
[0024] (3) Microbial nutrient broth medium
[0025] 2. Isolation and screening of strains
[0026] In a farm in Dianbai, Maoming, the dominant Oscillator algae in the pond water body - Oscillatoria viridis was isolated and cultivated, and the culture medium can be two kinds, one is BG11 liquid medium, and the other is the sterilized pond water Add NaNO 3 1.0~1.5g / L and K 2 HPO 4 30 ~ 40mg / L; at the same time, the pond water dominated by Oscillator algae (the number of Oscillator algae accounts for more than 95% of the total microalgae) is cultivated, and no nutrients are added dur...
Embodiment 2
[0027] Example 2 Identification of Bacillus cereus Strain CZBC1 Dissolving Pond Oscillatoria
[0028] The present invention conducts physiological and biochemical identification and 16S rDNA molecule identification on the algae-dissolving algae-dissolving strain CZBC1 capable of dissolving Oscillator algae, and determines the species of the strain from the molecular level, combined with bacterial morphological characteristics and physiological and biochemical characteristics analysis. 16S rDNA sequence analysis mainly follows the following steps:
[0029] Extraction of bacterial genomic DNA:
[0030] 1. Use an autoclaved toothpick to pick a single colony and inoculate it in the expansion medium for overnight cultivation.
[0031] 2. Take 1.5mL of bacterial culture solution, centrifuge at 10,000rpm (11,500×g) for 1 minute, and suck up the supernatant as much as possible.
[0032] 3. Add 200 μL of buffer GA to the cell pellet, shake until the cells are completely suspended, ad...
Embodiment 3
[0070] Example 3 Small-scale Laboratory Application of Bacillus cereus Strain CZBC1 Dissolving Pond Oscillation Algae
[0071] Cultivate Bacillus cereus strain CZBC1 at 30°C and 200r / min for 16 hours, and add it to the pure culture algae liquid of Vibrella viridis, Chlorella pyrenoidosa, and Nitzschia crescentus. The initial density of the three microalgae 5.0×10 6 cell / mL, 1.6×10 6 cell / mL, 5.3×10 5 cell / mL, the number of bacteria added is 10 7cfu / mL. The bacteria and algae polyculture system was cultivated for 8 days under the conditions of temperature 25-28°C, light intensity 2500-4000 lx, and light-dark cycle 12h:12h. The results showed that all the vibrating algae died on the 5th day, and the algal cells were dissolved and broken; Chlorella pyrenoidosa and Nitzschia lunata grew slightly, and the algal cell densities were 1.7×10 7 cell / mL and 2.0×10 6 cell / mL. This shows that CZBC1 has a good dissolution effect on Oscillatoria, and has no adverse effects on fine gre...
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