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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Preferential utilization of intracellular nutrients supports microalgal growth under nutrient starvation: Multi-nutrient mechanistic model and experimental validation
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Preferential utilization of intracellular nutrients supports microalgal growth under nutrient starvation: Multi-nutrient mechanistic model and experimental validation

机译:优先利用细胞内养分,在养分匮乏的情况下支持微藻生长:多养分机理模型和实验验证

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Microalgae are able to grow even under exhaustion of some key nutrients such as nitrogen and phosphorous. Here, we report a multi-nutrient mechanistic model to predict heterotrophic growth of Chlorella sp. FC2 IITG over two sequential phases of fermentation: nutrient sufficient condition to nutrient starved condition. The model assumes that the growth of the microorganism takes place via sequential utilization of extracellular nutrients (ECN) under nutrient replete condition followed by intracellular stored nutrients under exhaustion of limiting nutrients. Further, intracellular nutrient was assumed to be in three different forms: structural form of nutrient (SFN), readily utilizable nutrient (RUN) and non-readily utilizable nutrient (Non-RUN). After the exhaustion of ECN, microorganism switches to RUN followed by Non-RUN to continue its growth, which was experimentally validated by extracting intracellular nitrate and phosphate compounds. The model also incorporates variability in yield coefficients for nitrate and phosphate utilizations.
机译:微藻即使在耗尽一些关键营养素(例如氮和磷)的情况下也能够生长。在这里,我们报告了一种多营养素机制模型,可预测小球藻的异养生长。在连续两个发酵阶段中进行FC2 IITG:营养充足的条件至营养缺乏的条件。该模型假设微生物的生长是通过在养分充足的条件下依次利用细胞外养分(ECN)进行的,然后在有限养分耗尽的情况下通过细胞内存储的养分进行的。此外,假定细胞内养分具有三种不同形式:养分的结构形式(SFN),易利用的养分(RUN)和不易利用的养分(Non-RUN)。 ECN耗尽后,微生物会先转换为RUN,然后再转换为非RUN以继续生长,这通过提取细胞内硝酸盐和磷酸盐化合物进行了实验验证。该模型还结合了硝酸盐和磷酸盐利用的产量系数的可变性。

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