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The role of heterotrophic bacteria in assessing phosphorus stress to Synechocystis sp PCC6803

机译:异养细菌在评估磷胁迫对SyneChocystis SPCCC6803的作用

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Microalgae biofuel production, a possible source of carbon-neutral energy, requires phosphorus (P), a limited resource. This study investigates the relationship between specific growth rate of the cyanobacterium Synechocystis sp. PCC 6803 and P availability. It has been previously suggested, and we show here, that P-limited growth kinetics are well represented by a quota-type model with a single pool of intracellular P. We also demonstrate that the presence of heterotrophic bacteria plays a large role in understanding these kinetics, because the culture's intracellular P content depends on the level of heterotrophic bacteria. Using batch-growth experiments containing up to a 0.07 biovolume ratio of heterotrophic bacteria to Synechocystis, we found that Synechocystis could grow with intracellular P content down to approximately 0.5 mg P g(-1) dry weight biomass, while heterotrophic bacteria maintained roughly 20 mg P g(-1) dry weight. Thus, a small fraction of heterotrophic bacteria in a microalgal culture can dramatically increase the apparent content of P in the biomass, which affects how to assess P-stress to a P-limited culture.
机译:微藻生物燃料生产,一种可能的碳中性能源来源,需要磷(P),有限的资源。本研究研究了综合症综合症SP的特异性生长速率之间的关系。 PCC 6803和P可用性。我们之前已经建议,我们在这里展示,P限制生长动力学是由单一的细胞内P池的配额型模型所代表的。我们还证明了异养细菌的存在在理解这些方面发挥着重要作用动力学,因为文化的细胞内p含量取决于异养细菌的水平。使用含有高达0.07个生物弱细菌比率的批次生长实验对SneCeChocystis,我们发现综合细胞可以以细胞内P含量降至约0.5mg P g(-1)干重生物质,而异养细菌保持大约20毫克P g(-1)干重。因此,微藻培养中的小部分异养细菌可以显着增加生物量中P的表观含量,这会影响如何评估p限制培养物的p胁迫。

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