Yeast preserving solution and using method thereof
A yeast and solution technology, which is applied in the field of strain preservation solution, can solve the problems of low strain preservation temperature, manpower and time, and easy mutation of strains, and achieve the effects of convenient transportation, reduced seed production cycle and stable preservation
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Embodiment 1
[0024] Embodiment 1: preparation yeast preservation solution
[0025] The formula 1-3 in the following list 1 is respectively prepared the yeast preservation solution with different component contents:
[0026] Table 1: Formula table of solution for yeast preservation
[0027]
[0028] Preparation method: at room temperature, use the buffer solution in the above formula as a solvent, add various solutes into the solvent according to the amount in the above formula, stir, stand, filter, and sterilize to obtain the yeast preservation agent of the present invention. solution.
Embodiment 2
[0029] Example 2: Preservation of yeast using a solution for preserving yeast
[0030] First in the aseptic laboratory, a large number of purebred cultures in fermenters produce yeast (the strain preservation number is CCTCC No: M205125, the genus of chromium-rich Saccharomyces cerevisiae Z1.3 (Saccharomycescerevisiae Hansen Z1.3) (see CN101045906A), strain The preservation number is CCTCCNo: M205129 Saccharomyces cerevisiae Hansen Z2.3 (Saccharomyces cerevisiae Hansen Z2.3) (see CN101050430A), the strain preservation number is ATCC9950 Candida utilis (Candida utilis) (see US4720457A ) or the Rhodotorula glutinis (Rhodotorula glutinis) (see CN1415738A) whose strain preservation number is CGMCC No.2.703 (referring to CN1415738A), then the above-mentioned saccharomycetes obtained after aseptic washing and centrifugation are respectively added to the method described in Example 1 In the yeast preservation solution (prescription 1, 2 or 3) of the present invention, the concentrati...
Embodiment 3
[0031] Embodiment 3: Stability experiment
[0032] experimental method:
[0033] When the various bacterial suspensions prepared in Example 2 above were stored at 4-10° C. or at room temperature (25° C.) for a period of time as described below, the viable cell rate was detected under an optical microscope and the production performance test was performed.
[0034] Experimental results:
[0035] (1) The various bacterial suspensions prepared in the above-mentioned embodiment 2 are preserved at 4-10°C using the yeast preservation solution of the present invention, and the viable cell rate is all above 80% in 1 year, and the viable cell rate in 2 years is more than 80%. The production rate is above 75%, and the production performance is not lower than that of solid slant strains stored at 4-10°C for one month.
[0036] (2) The various bacterial suspensions prepared in the above-mentioned embodiment 2 are preserved at room temperature (25° C.) using the yeast preservation soluti...
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