Mandli Aravinda R, Venkatesh Kareenhalli V, Modak Jayant M
Department of Chemical Engineering, Indian Institute of Science, Bangalore, India.
Department of Chemical Engineering, Indian Institute of Technology Bombay, Mumbai, India.
Biosystems. 2015 Nov;137:45-54. doi: 10.1016/j.biosystems.2015.09.001. Epub 2015 Sep 3.
The cybernetic modeling framework provides an interesting approach to model the regulatory phenomena occurring in microorganisms. In the present work, we adopt a constraints based approach to analyze the nonlinear behavior of the extended equations of the cybernetic model. We first show that the cybernetic model exhibits linear growth behavior under the constraint of no resource allocation for the induction of the key enzyme. We then quantify the maximum achievable specific growth rate of microorganisms on mixtures of substitutable substrates under various kinds of regulation and show its use in gaining an understanding of the regulatory strategies of microorganisms. Finally, we show that Saccharomyces cerevisiae exhibits suboptimal dynamic growth with a long diauxic lag phase when growing on a mixture of glucose and galactose and discuss on its potential to achieve optimal growth with a significantly reduced diauxic lag period. The analysis carried out in the present study illustrates the utility of adopting a constraints based approach to understand the dynamic growth strategies of microorganisms.
控制论建模框架为模拟微生物中发生的调节现象提供了一种有趣的方法。在本研究中,我们采用基于约束的方法来分析控制论模型扩展方程的非线性行为。我们首先表明,在不分配资源用于诱导关键酶的约束条件下,控制论模型呈现线性生长行为。然后,我们量化了在各种调节下微生物在可替代底物混合物上可实现的最大比生长速率,并展示了其在理解微生物调节策略方面的用途。最后,我们表明酿酒酵母在葡萄糖和半乳糖混合物上生长时表现出次优动态生长,具有较长的双相生长停滞期,并讨论了其显著缩短双相生长停滞期实现最优生长的潜力。本研究中进行的分析说明了采用基于约束的方法来理解微生物动态生长策略的实用性。