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Monster potential meets potential monster: pros and cons of deploying genetically modified microalgae for biofuels production

机译:潜在的怪物遇见潜在的怪物:部署转基因微藻用于生物燃料生产的利弊

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摘要

Biofuels production from microalgae attracts much attention but remains an unproven technology. We explore routes to enhance production through modifications to a range of generic microalgal physiological characteristics. Our analysis shows that biofuels production may be enhanced ca fivefold through genetic modification (GM) of factors affecting growth rate, respiration, photoacclimation, photosynthesis efficiency and the minimum cell quotas for nitrogen and phosphorous (N : C and P : C). However, simulations indicate that the ideal GM microalgae for commercial deployment could, on escape to the environment, become a harmful algal bloom species par excellence, with attendant risks to ecosystems and livelihoods. In large measure, this is because an organism able to produce carbohydrate and/or lipid at high rates, providing stock metabolites for biofuels production, will also be able to attain a stoichiometric composition that will be far from optimal as food for the support of zooplankton growth. This composition could suppress or even halt the grazing activity that would otherwise control the microalgal growth in nature. In consequence, we recommend that the genetic manipulation of microalgae, with inherent consequences on a scale comparable to geoengineering, should be considered under strict international regulation.
机译:微藻生产生物燃料备受关注,但仍未经验证。我们探索通过修改一系列普通微藻生理特性来提高产量的途径。我们的分析表明,通过影响生长速率,呼吸,光适应,光合作用效率以及氮和磷的最小细胞配额(N:C和P:C)的因素的遗传修饰(GM),生物燃料的产量可能提高约五倍。然而,模拟表明,用于商业用途的理想的转基因微藻,一旦逃逸到环境中,可能会成为有害的藻华物种,并给生态系统和生计带来风险。在很大程度上,这是因为能够以高速率产生碳水化合物和/或脂质,提供生物燃料生产原料代谢物的生物体,也将能够获得化学计量组成,而该化学计量组成远不能作为支持浮游动物的食物增长。该组合物可以抑制或什至停止放牧活动,否则将控制自然界中微藻类的生长。因此,我们建议应在严格的国际法规下考虑对微藻进行基因操作,其固有后果在规模上可与地球工程相媲美。

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