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连续培养作为评估光合生物最大比生长速率的一种方法。

Continuous Cultivation as a Method to Assess the Maximum Specific Growth Rate of Photosynthetic Organisms.

作者信息

Barbera Elena, Grandi Alessia, Borella Lisa, Bertucco Alberto, Sforza Eleonora

机构信息

Interdepartmental Center Giorgio Levi Cases, University of Padova, Padova, Italy.

Department of Industrial Engineering DII, University of Padova, Padova, Italy.

出版信息

Front Bioeng Biotechnol. 2019 Oct 17;7:274. doi: 10.3389/fbioe.2019.00274. eCollection 2019.

Abstract

Modeling the growth of photosynthetic organisms is challenging, due to the complex role of light, which can be limiting because of self-shading, or photoinhibiting in the case of high intensities. A case of particular interest is represented by nitrogen-fixing cyanobacteria, whose growth is controlled not only by the light intensity, but also by the availability of atmospheric nitrogen in the liquid medium. The determination of the maximum specific growth rate is often affected by many variables that, in batch growth systems, may change significantly. On the other hand, in a continuous system, once the steady state is reached the values of all the process variables remain constant, including the biomass concentration and the specific light supply rate. In this work, the diazotrophic cyanobacterium PCC 7122 was cultivated in continuous photobioreactors, to investigate the role of nitrogen, light and residence time on growth kinetics, and to retrieve the value of the maximum specific growth rate of this organism. In addition, the kinetic parameters for temperature and the half saturation constant for nitrogen (3 mg L) were measured by respirometric tests. Based on the results of continuous experiments, the specific maintenance rate was found to depend on the light intensity supplied to the reactor, ranging between 0.5 and 0.8 d. All these parameters were used to develop a kinetic model able to describe the biomass growth in autotrophic conditions. The maximum specific growth rate could hence be determined by applying the kinetic model in the material balances of the continuous photobioreactor, and resulted equal to 8.22 ± 0.69 d.

摘要

对光合生物的生长进行建模具有挑战性,这是由于光的复杂作用,光可能因自我遮蔽而成为限制因素,或者在高强度情况下产生光抑制作用。一个特别受关注的例子是固氮蓝藻,其生长不仅受光强度控制,还受液体培养基中大气氮的可用性影响。最大比生长速率的测定常常受到许多变量的影响,在分批生长系统中,这些变量可能会发生显著变化。另一方面,在连续系统中,一旦达到稳态,所有过程变量的值都将保持恒定,包括生物量浓度和比光供应速率。在这项工作中,将固氮蓝藻PCC 7122培养在连续光生物反应器中,以研究氮、光和停留时间对生长动力学的作用,并获取该生物体最大比生长速率的值。此外,通过呼吸测定试验测量了温度的动力学参数和氮的半饱和常数(3毫克/升)。基于连续实验的结果,发现比维持速率取决于供应给反应器的光强度,范围在0.5至0.8天-1之间。所有这些参数都用于建立一个能够描述自养条件下生物量生长的动力学模型。因此,可以通过将动力学模型应用于连续光生物反应器的物料平衡来确定最大比生长速率,结果为8.22±0.69天-1。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17f0/6811504/f6d7ce182e2c/fbioe-07-00274-g0001.jpg

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