Method for accumulating grease mutant chlorella quickly by mutating pyrenoid freshwater chlorella by laser
A technology of pyrenoid and chlorella, which is applied in the biological field, can solve problems such as high cost, high equipment requirements, and complicated technical processes, and achieve the effects of light damage, strong safety, and low cost
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Embodiment 1
[0017] Step 1. Preparation of algae liquid: under the conditions of temperature 20°C, light intensity 1800lx, and light-dark ratio 12h / 12h, use fluorescent lamps as the light source to cultivate Chlorella pyrenoidosa cells to the logarithmic growth phase, so that the cell concentration reaches 10 8 per ml, to obtain the algae liquid that will be subjected to laser irradiation mutagenesis;
[0018] Step 2. Laser irradiation mutagenesis: take 20ml of logarithmic growth phase algae liquid and pour it into a small jar, and irradiate it with 808nm semiconductor laser for 0.9min. During the irradiation process, use magnetic stirring to keep the irradiation uniform, and obtain mutant algae strain;
[0019] Step 3. Cultivation of mutant algal strains: Rinse the laser irradiated cell liquid into a 50ml Erlenmeyer flask filled with BG11 nutrient salts, the final concentration of nutrient salts in the algae liquid is 1 / 4 times, at a temperature of 20°C and a light intensity of 1800lx 1....
Embodiment 2
[0022] Step 1. Preparation of algae liquid: under the conditions of temperature 23°C, light intensity 1900lx, and light-dark ratio 12h / 12h, use fluorescent lamps as the light source to cultivate Chlorella pyrenoidosa cells to the logarithmic growth phase, so that the cell concentration reaches 10 8 per ml, to obtain the algae liquid that will be subjected to laser irradiation mutagenesis;
[0023]Step 2. Laser irradiation mutagenesis: Take 20ml of logarithmic growth phase algae liquid and pour it into a small jar, and irradiate it with 808nm semiconductor laser for 1.0min. During the irradiation process, use magnetic stirring to keep the irradiation uniform, and obtain mutant algae strain;
[0024] Step 3. Cultivation of mutant algae strains: wash the laser irradiated cell fluid into a 50ml Erlenmeyer flask filled with BG11 nutrient salts, the final concentration of nutrient salts in the algae fluid is 1 / 4 times, at a temperature of 23°C and a light intensity of 1900lx 1. The...
Embodiment 3
[0027] Step 1. Preparation of algae liquid: under the conditions of temperature 25°C, light intensity 2000lx, and light-dark ratio 12h / 12h, use fluorescent lamps as the light source to cultivate Chlorella pyrenoidosa cells to the logarithmic growth phase, so that the cell concentration reaches 10 8 per ml, to obtain the algae liquid that will be subjected to laser irradiation mutagenesis;
[0028] Step 2, laser irradiation mutagenesis: take 20ml of logarithmic growth phase algae liquid and pour it into a small jar, and irradiate it with 808nm semiconductor laser for 1.1min to obtain mutant algal strains;
[0029] Step 3. Cultivation of mutant algae strains: irradiate the cell fluid with laser light into a 50ml Erlenmeyer flask filled with BG11 nutrient salts. The final concentration of nutrient salts in the algae fluid is 1 / 4 times. Cultivate for 20 days under the culture condition of 12h / 12h at a dark ratio; then transfer the above-mentioned algae liquid to a 300ml conical fl...
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