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Preservation of salt-tolerant acidophiles used for chalcopyrite bio leaching: Assessment of cryopreservation, liquid-drying and cold storage

机译:用于黄铜矿生物浸出的耐盐性耐酸化合物的保存:对冷冻保存,液体干燥和冷藏的评估

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Microorganisms with importance to mineral biotechnology are commonly maintained through live culture maintenance, which can be labour intensive and expensive. Live culture maintenance can also result in contamination, genetic drift and loss of traits, or whole strains, that are crucial to some biotechnological applications. This study aimed to investigate alternative preservation methods, and to determine the best method required for the preservation of mixed microbial cultures capable of bioleaching chalcopyrite under salt stress. Live culture maintenance followed by cold storage at 4 °C, liquid drying and temperature-controlled cryopreservation were used to preserve mesophilic (30 °C), moderately thermophilic (45 °C) and thermophilic (60 °C) bioleaching cultures. Recovery of cells and bioleaching activity were determined following revival. Results were compared to cultures routinely maintained by subculture. Across all temperatures, cryopreservation with 10 % (v/v) glycerol as a cryoprotectant resulted in the highest post-revival cell recovery. Further research is required to determine if the microbial diversity in each culture is impacted by the preservation method employed.
机译:通过现场培养维护,通常维持具有矿物生物技术的微生物,这可以通过现场培养维护来维持,这可以是劳动密集型和昂贵的。实时培养维护还可以导致污染,遗传漂移和性状丧失或整个菌株,这对于一些生物技术应用至关重要。本研究旨在调查替代保存方法,并确定保存能够在盐胁迫下Boolcoping黄铜矿的混合微生物培养所需的最佳方法。实时培养维护,然后在4℃下冷却,使用液体干燥和温度控制的冷冻保存来保持嗜水煮(30℃),适度嗜热(45℃)和嗜热(60℃)的生物浸入培养物。在复发后确定细胞和生物浸出活性的回收率。将结果与通过传代培养定期维持的培养物进行比较。在所有温度下,用10%(v / v)甘油的冷冻保存作为冷冻保护剂导致了最高的复发后细胞回收。需要进一步的研究来确定每种培养中的微生物多样性是否受所用的保存方法影响。

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