Department of Biotechnology, Delft University of Technology, van der Maasweg 9, 2629 HZ, Delft, The Netherlands.
Amsterdam Institute for Molecules, Medicines and Systems, Vrije Universiteit Amsterdam, De Boelelaan 1108, 1081 HZ, Amsterdam, The Netherlands.
FEMS Microbiol Ecol. 2021 Feb 11;97(2). doi: 10.1093/femsec/fiab002.
Microbial community engineering aims for enrichment of a specific microbial trait by imposing specific cultivation conditions. This work demonstrates that things may be more complicated than typically presumed and that microbial competition can be affected by seemingly insignificant variables, like in this case the type of acid used for pH control. Aerobic bioreactors pulse fed with acetate operated with hydrochloric acid resulted in the enrichment of Plasticicumulans acidivorans, and changing the pH controlling agent to sulfuric acid shifted the community towards Zoogloea sp. Further research demonstrated that the change in community structure was not directly caused by the change in acid used for pH control, but resulted from the difference in corrosive strength of both acids and the related iron leaching from the bioreactor piping. Neither system was iron deficient, suggesting that the biological availability of iron is affected by the leaching process. Our results demonstrate that microbial competition and process development can be affected dramatically by secondary factors related to nutrient supply and bioavailability, and is way more complex than generally assumed in a single carbon substrate limited process.
微生物群落工程旨在通过施加特定的培养条件来富集特定的微生物特性。这项工作表明,事情可能比通常想象的要复杂,微生物竞争可能会受到看似微不足道的变量的影响,就像在这种情况下,用于 pH 控制的酸的类型。使用盐酸进行脉冲进料的好氧生物反应器中富集了嗜乙酸塑料杆菌,而将 pH 控制剂改为硫酸会使群落向 Zoogloea sp. 转移。进一步的研究表明,群落结构的变化不是直接由用于 pH 控制的酸的变化引起的,而是由于两种酸的腐蚀性强度的差异以及相关的铁从生物反应器管道浸出引起的。两个系统都不缺铁,这表明铁的生物利用度受到浸出过程的影响。我们的结果表明,微生物竞争和工艺开发可能会受到与养分供应和生物利用度相关的次要因素的显著影响,而且比在单一碳底物限制过程中通常假设的要复杂得多。