首页> 外文期刊>Journal of Applied Phycology >Impact of nitrogen limitation on biomass, photosynthesis, and lipid accumulation in Chlorella sorokiniana
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Impact of nitrogen limitation on biomass, photosynthesis, and lipid accumulation in Chlorella sorokiniana

机译:氮限制对小球藻生物量,光合作用和脂质积累的影响

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摘要

Induction of oil accumulation in algae for biofuel production is often achieved by withholding nitrogen. However, withholding nitrogen often reduces total biomass yield. In this report, it is demonstrated that Chlorella sorokiniana will not only accumulate substantial quantities of neutral lipids when grown in the absence of nitrogen but will also exhibit unimpeded growth rates for up to 2 weeks. To determine the physiological basis for the observed increase in oil and biomass accumulation, we compared photosynthetic and respiration rates and chlorophyll, lipid, and total energy content under ammonia replete and deplete conditions. Under N-depleted growth conditions, there was a 64 % increase in total energy density and a similar to 20-fold increase in oil accumulation relative to N-replete growth leading to a 1.6-fold greater total energy yield in N-depleted than in N-replete cultures. We propose that the higher energy accumulation in N-depleted cultures is due to enhanced photosynthetic energy capture and conversion associated with reduced chlorophyll levels and reduced self-shading as well as a shift in metabolism leading to the accumulation of oils.
机译:通常通过保留氮来诱导藻类中的油积累以用于生物燃料生产。但是,保留氮通常会降低总生物量产量。在该报告中,证明了在无氮条件下生长时,Sorokiniana小球藻不仅会积累大量的中性脂质,而且还会在长达2周的时间内显示出不受阻碍的生长速度。为了确定观察到的油和生物量积累增加的生理基础,我们比较了在氨充足和枯竭条件下的光合作用和呼吸速率以及叶绿素,脂质和总能量含量。在氮贫乏的生长条件下,相对于氮贫乏的增长,总能量密度增加了64%,而油藏增加了20倍,导致氮贫乏的总能量产出比氮贫乏的增长了1.6倍。 N种文化。我们提出,贫氮培养物中较高的能量积累是由于增强的光合能量捕获和转化,与降低的叶绿素水平和减少的自身遮荫以及新陈代谢的转移相关,从而导致油的积累。

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