Method for fluorescence detection of biotoxicity of desmetryn by scenedesmus obliquus in ammonium salt environment
A technology of Scenedesmus obliquus and biotoxicity, which is applied in the direction of fluorescence/phosphorescence, measuring devices, and material analysis through optical means, can solve the problems of unstable luminescent bacteria and high method cost of the luminescent bacteria method, and achieve intuitive biological toxicity, Effect of promoting action and improving detection sensitivity
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[0044] 3. Preparation of Scenedesmus obliquus liquid
[0045] The preparation of Scenedesmus obliquus algae liquid comprises, the logarithmic phase Scenedesmus obliquus obtained in the cultivation process of the above-mentioned 2 Scenedesmus obliquus species, the algae cell density is obtained by microscopic inspection, and the selected cell density ranges from (1-2)×10 6 ind / ·ml -1 The logarithmic phase Scenedesmus obliquus algae liquid, used for the determination of the biological toxicity of diquat.
[0046] 4. Preparation of Diquat Standard Solution
[0047] 10mg / L diquat stock solution: take 10μl of diquat stock solution with a concentration of 200g / L, add pure water to dilute to 200ml, and obtain diquat stock solution;
[0048] 200μg / L Diquat intermediate solution: Take 2.0ml of Diquat stock solution in a 100ml volumetric flask, dilute with pure water to obtain Diquat intermediate solution;
[0049] Diquat standard solution: take 2.5, 5.0, 7.5, 10.0, 12.5ml of diquat...
Embodiment 1
[0051] Determination of Effect of Diquat on Fluorescent Effect of Scenedesmus obliquus
[0052] In the logarithmic growth phase of Scenedesmus obliquus (i.e. cultured for 5-6 days), take Scenedesmus obliquus algae liquid, diquat standard solution of different concentrations and distilled water in a volume ratio of 1:1:1, mix and shake well, and At the same time, a blank group (distilled water instead of diquat) was set as a control. After the mixture was placed in the dark for 15 minutes, the kinetic parameters of chlorophyll fluorescence in Scenedesmus obliquus were measured with a water sample chlorophyll fluorescence meter, including the maximum light energy conversion efficiency (Fv / Fm) of photosystem II, the actual light energy of photosystem II Transformation efficiency (Y(II)), photosynthetic electron transfer efficiency (ETR), photochemical quenching (qP) and non-photochemical quenching (NPQ), three parallel control experiments were carried out, and the average value w...
Embodiment 2
[0056] Determination of Effect of Diquat on Fluorescent Effect of Scenedesmus obliquus
[0057] In the logarithmic phase of the growth of Scenedesmus obliquus (i.e. cultured for 5-6 days), take Scenedesmus oblique algae liquid, diquat standard solution of different concentrations and distilled water in a volume ratio of 2:1:2, mix and shake well, and At the same time, a blank group (distilled water instead of diquat) was set as a control. After the mixture was placed in the dark for 10 min, the kinetic parameters of chlorophyll fluorescence in Scenedesmus obliquus were measured with a water sample chlorophyll fluorescence meter, including the maximum light energy conversion efficiency (Fv / Fm) of photosystem II, the actual light energy of photosystem II Transformation efficiency (Y(II)), photosynthetic electron transfer efficiency (ETR), photochemical quenching (qP) and non-photochemical quenching (NPQ), three parallel control experiments were carried out, and the average value...
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