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Enforced Mutualism Leads to Improved Cooperative Behavior between Saccharomyces cerevisiae and Lactobacillus plantarum

机译:强制互感导致酿酒酵母酿酒酵母和乳酸杆菌之间的合作行为改善

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摘要

and are responsible for alcoholic and malolactic fermentation, respectively. Successful completion of both fermentations is essential for many styles of wine, and an understanding of how these species interact with each other, as well as the development of compatible pairings of these species, will help to manage the process. However, targeted improvements of species interactions are difficult to perform, in part because of the chemical and biological complexity of natural grape juice. Synthetic ecological systems reduce this complexity and can overcome these difficulties. In such synthetic systems, mutualistic growth of different species can be enforced through the reciprocal exchange of essential nutrients. Here, we implemented a novel approach to evolve mutualistic traits by establishing a co-dependent relationship between BY4742Δ and IWBT B038 by omitting different combinations of amino acids from a chemically defined synthetic medium simulating standard grape juice. After optimization, the two species were able to support the growth of each other when grown in the absence of appropriate combinations of amino acids. In these obligatory mutualistic conditions, BY4742Δ and IWBT B038 were co-evolved for approximately 100 generations. The selected evolved isolates showed improved mutualistic growth and the growth patterns under non-selective conditions indicate the emergence of mutually beneficial adaptations independent of the synthetic selection pressure. The combined use of synthetic ecology and co-evolution is a promising strategy to better understand and biotechnologically improve microbial interactions.
机译:并分别对酒精和恶性发酵负责。成功完成两种发酵对于多种葡萄曲风格至关重要,并了解这些物种如何相互互动,以及这些物种的兼容配对的发展将有助于管理该过程。然而,有针对性的物种相互作用的改进是难以进行的,部分原因是天然葡萄汁的化学和生物复杂性。合成生态系统降低了这种复杂性,可以克服这些困难。在这种合成系统中,可以通过互核交换的基本营养素来执行不同物种的互动生长。在这里,我们通过从化学定义的合成培养基模拟标准葡萄汁中省略不同组合来实现通过在氨基酸的不同组合中建立共同依赖性关系来实现一种新颖的方法来发展互相关系。优化后,在没有适当组合的氨基酸的情况下生长时,两个物种能够支持彼此的生长。在这些义务互动条件下,BY4742Δ和IWBT B038共进化约100代。所选择的进化分离物显示出改善的互动生长和非选择性条件下的生长模式表明与合成选择压力无关的互利适应的出现。合成生态学和共同进化的结合使用是一种有希望的策略,以更好地理解和生物技术地改善微生物相互作用。

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