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Directed evolution of a filamentous fungus for thermotolerance

机译:定向进化丝状真菌的耐热性

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摘要

BackgroundFilamentous fungi are the most widely used eukaryotic biocatalysts in industrial and chemical applications. Consequently, there is tremendous interest in methodology that can use the power of genetics to develop strains with improved performance. For example, Metarhizium anisopliae is a broad host range entomopathogenic fungus currently under intensive investigation as a biologically based alternative to chemical pesticides. However, it use is limited by the relatively low tolerance of this species to abiotic stresses such as heat, with most strains displaying little to no growth between 35–37°C. In this study, we used a newly developed automated continuous culture method called the Evolugator™, which takes advantage of a natural selection-adaptation strategy, to select for thermotolerant variants of M. anisopliae strain 2575 displaying robust growth at 37°C.
机译:背景丝状真菌是工业和化学应用中使用最广泛的真核生物催化剂。因此,人们对可以利用遗传学的力量开发性能提高的菌株的方法学产生了极大的兴趣。例如,金属担子菌是一种广泛的宿主范围内的致病性真菌,目前正在作为化学农药的生物学替代品进行深入研究。但是,它的使用受到该物种对非生物胁迫(例如热量)的较低耐受性的限制,大多数菌株在35–37°C之间几乎没有或根本没有生长。在这项研究中,我们使用了一种新开发的自动连续培养方法,称为Evolugator™,该方法利用自然选择适应策略,选择了M. anisopliae菌株2575的耐热变异体,该变异体在37°C时表现出强劲的生长。

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