Rich Dynamics of a General Producer–Grazer Interaction Model under Shared Multiple Resource Limitations

Author:

Phan Tin1ORCID,Elser James J.2,Kuang Yang3ORCID

Affiliation:

1. Theoretical Biology and Biophysics, Los Alamos National Laboratory, Los Alamos, NM 87544, USA

2. Flathead Lake Biological Station, University of Montana, Polson, MT 59860, USA

3. School of Mathematical and Statistical Sciences, Arizona State University, Tempe, AZ 85281, USA

Abstract

Organism growth is often determined by multiple resources interdependently. However, growth models based on the Droop cell quota framework have historically been built using threshold formulations, which means they intrinsically involve single-resource limitations. In addition, it is a daunting task to study the global dynamics of these models mathematically, since they employ minimum functions that are non-smooth (not differentiable). To provide an approach to encompass interactions of multiple resources, we propose a multiple-resource limitation growth function based on the Droop cell quota concept and incorporate it into an existing producer–grazer model. The formulation of the producer’s growth rate is based on cell growth process time-tracking, while the grazer’s growth rate is constructed based on optimal limiting nutrient allocation in cell transcription and translation phases. We show that the proposed model captures a wide range of experimental observations, such as the paradox of enrichment, the paradox of energy enrichment, and the paradox of nutrient enrichment. Together, our proposed formulation and the existing threshold formulation provide bounds on the expected growth of an organism. Moreover, the proposed model is mathematically more tractable, since it does not use the minimum functions as in other stoichiometric models.

Funder

Los Alamos National Laboratory Director’s Postdoctoral Fellowship

US NSF Rules of Life

US NSF grant

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference80 articles.

1. Von Liebig, J. (1841). Die Organische Chemie in Ihrer Anwendung auf Agricultur und Physiologie, Taylor and Walton.

2. Law of the minimum paradoxes;Gorban;Bull. Math. Biol.,2011

3. Adaptation to a limiting element involves mitigation of multiple elemental imbalances;Jeyasingh;J. R. Soc. Interface,2023

4. Williams, R.J.P., and Da Silva, J.F. (2005). The Chemistry of Evolution: The Development of Our Ecosystem, Elsevier.

5. Some thoughts on the concept of colimitation: Three definitions and the importance of bioavailability;Saito;Limnol. Oceanogr.,2008

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