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Building a bio-based industry in the Middle East through harnessing the potential of the Red Sea biodiversity

机译:通过利用红海生物多样性的潜力在中东建立生物产业

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摘要

The incentive for developing microbial cell factories for production of fuels and chemicals comes from the ability of microbes to deliver these valuable compounds at a reduced cost and with a smaller environmental impact compared to the analogous chemical synthesis. Another crucial advantage of microbes is their great biological diversity, which offers a much larger “catalog” of molecules than the one obtainable by chemical synthesis. Adaptation to different environments is one of the important drives behind microbial diversity. We argue that the Red Sea, which is a rather unique marine niche, represents a remarkable source of biodiversity that can be geared towards economical and sustainable bioproduction processes in the local area and can be competitive in the international bio-based economy. Recent bioprospecting studies, conducted by the King Abdullah University of Science and Technology, have established important leads on the Red Sea biological potential, with newly isolated strains of Bacilli and Cyanobacteria. We argue that these two groups of local organisms are currently most promising in terms of developing cell factories, due to their ability to operate in saline conditions, thus reducing the cost of desalination and sterilization. The ability of Cyanobacteria to perform photosynthesis can be fully exploited in this particular environment with one of the highest levels of irradiation on the planet. We highlight the importance of new experimental and in silico methodologies needed to overcome the hurdles of developing efficient cell factories from the Red Sea isolates.
机译:与类似的化学合成相比,发展微生物细胞工厂生产燃料和化学品的动力来自微生物以降低的成本和较小的环境影响提供这些有价值的化合物的能力。微生物的另一个关键优势是其巨大的生物多样性,与化学合成方法相比,微生物具有更大的分子“目录”。适应不同环境是微生物多样性背后的重要驱动力之一。我们认为,红海是一个非常独特的海洋生态位,它代表着生物多样性的重要来源,可以将其用于当地的经济和可持续生物生产过程,并且可以在国际生物基经济中具有竞争力。由阿卜杜拉国王科技大学进行的近期生物勘探研究已经建立了红海生物潜力的重要线索,其中包括新分离出的芽孢杆菌和蓝细菌菌株。我们认为,就发展细胞工厂而言,这两组本地生物目前最有希望,因为它们具有在盐条件下运行的能力,从而降低了淡化和灭菌的成本。蓝细菌执行光合作用的能力可以在这种特殊的环境中被充分利用,这是地球上辐射水平最高的水平之一。我们强调了克服来自红海分离株发展高效细胞工厂所需要的新实验和计算机方法学的重要性。

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