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首页> 外文期刊>Journal of Theoretical Biology >Theoretical lessons for increasing algal biofuel: Evolution of oil accumulation to avert carbon starvation in microalgae
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Theoretical lessons for increasing algal biofuel: Evolution of oil accumulation to avert carbon starvation in microalgae

机译:增加藻类生物燃料的理论课程:储油中易氧碳饥饿的进化

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Microalgae-derived oil is considered as a feasible alternative to fossil-derived oil. To produce more algal biomass, both algal population size and oil accumulation in algae must be maximized. Most of the previous studies have concentrated on only one of these issues, and relatively little attention has been devoted to considering the tradeoff between them. In this paper, we first theoretically investigated evolutionary reasons for oil accumulation and then by coupling population and evolutionary dynamics, we searched for conditions that may provide better yields. Using our model, we assume that algae allocate assimilated carbon to growth, maintenance, and carbon accumulation as biofuel and that the amount of essential materials (carbon and nitrate) are strongly linked in fixed proportions. Such stoichiometrically explicit models showed that (i) algae with more oil show slower population growth; therefore, the use of such algae results in lower total yields of biofuel and (ii) oil accumulation in algae is caused by carbon and not nitrate starvation. The latter can be interpreted as a strategy for avoiding the risk of increased death rate by carbon starvation. Our model also showed that both strong carbon starvation and moderately limited nitrate will promote total biofuel production. Our results highlight considering the life-history traits for a higher total yields of biofuel, which leads to insight into both establishing a prolonged culture and collection of desired strains from a natural environment. (C) 2015 Elsevier Ltd. All rights reserved.
机译:微藻衍生的油被认为是化石衍生的油的可行替代品。为了产生更多的藻类生物量,必须最大化藻类中的藻类种群尺寸和油积累。以前的大多数研究仅集中在这些问题中的一个,并且致力于考虑到它们之间的权衡相对较少的关注。在本文中,我们首先研究了蓄油的进化原因,然后通过耦合人口和进化动态,我们搜索了可能提供更好收益率的条件。使用我们的模型,我们假设藻类将被同化的碳分配到生长,维护和碳积累作为生物燃料,并以固定的比例强烈地连接了必要材料(碳和硝酸盐)。这种化学素分析的模型显示(I)藻类具有更多的油,群体较慢的人口生长;因此,这种藻类的使用导致生物燃料的总产量和(ii)藻类的油积累是由碳而不是硝酸盐饥饿引起的。后者可以被解释为避免碳饥饿增加死亡率风险的策略。我们的模型还表明,碳饥饿和中度有限的硝酸盐将促进生物燃料总产量。我们的结果突出了终身历史特征,以获得更高的生物燃料产量,这导致洞察建立长期培养和从自然环境中收集所需的菌株。 (c)2015 Elsevier Ltd.保留所有权利。

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