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Response to comments on “Uncertainty principle in niche assessment: A solution to the dilemma redundancy vs. competitive exclusion, and some analytical consequences”

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  • Rodríguez, Ricardo A.
  • Herrera, Ada M.
  • Duncan, Janelle
  • Riera, Rodrigo
  • Quirós, Ángel
  • Perdomo, María E.
  • Jiménez-Rodríguez, Antonia
  • Fernández-Palacios, José María
  • Vanni, Michael J.
  • Otto, Rüdiger
  • Escudero, Carlos G.
  • Camarena, Tomás
  • Navarro-Cerrillo, Rafael M.
  • Delgado, Juan D.
  • González, María J.

Abstract

The influence of quantum ecological uncertainty (QEU: a discrete statistical trade-off between the standard deviations of species diversity and energy, two indicators that are essential to define the ecological niche of every species), has been proposed as a plausible explanation to the debate between the competitive exclusion principle (CEP) and the hypothesis of functional redundancy (HFR). The debate CEP↔HFR is a manifestation of the wide spectrum of issues connected with a very important problem in ecology: the so-called “biodiversity paradox” (i.e.: How is it possible that so many species can coexist despite the underlying influence of interspecific competition?). Any testable theoretical alternative to explain species coexistence depends on an accurate assessment of the ecological niche in practice. However, under QEU, the assessment of ecological niche cannot be as accurate as we want due to an objective limitation of nature: the above-mentioned trade-off. Consequently, it is nonsense following the debate about this topic in the conventional way; it is necessary to change our traditional point of view about this issue in order to develop a non-conventional interpretation of ecosystem functioning. However, QEU has been strongly criticized in a recently published article. This article is devoted to clarify certain misunderstandings whose nature is evident by reading the above-mentioned criticism and its precursory publications in comparison with the spectrum of articles that supports QEU. The general fulfillment of QEU has also been questioned by the above-mentioned criticism, so it is additionally supported in this article by a noticeably abbreviated inclusion of results from field data, surveyed under different circumstances in comparison with previous data, from two inland water taxocenes (zooplankton rotifers and crustaceans, Acton Lake, Ohio, U.S.A.) to which this model has not been applied so far. Our general conclusion is that the criticism to QEU has been groundlessly proposed due to epistemological inaccuracies; fragmentary understanding about the principles connected with QEU; as well as an incomplete literature review.

Suggested Citation

  • Rodríguez, Ricardo A. & Herrera, Ada M. & Duncan, Janelle & Riera, Rodrigo & Quirós, Ángel & Perdomo, María E. & Jiménez-Rodríguez, Antonia & Fernández-Palacios, José María & Vanni, Michael J. & Otto,, 2016. "Response to comments on “Uncertainty principle in niche assessment: A solution to the dilemma redundancy vs. competitive exclusion, and some analytical consequences”," Ecological Modelling, Elsevier, vol. 341(C), pages 1-4.
  • Handle: RePEc:eee:ecomod:v:341:y:2016:i:c:p:1-4
    DOI: 10.1016/j.ecolmodel.2016.09.014
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    References listed on IDEAS

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    1. Rodríguez, Ricardo A. & Herrera, Ada M. & Otto, Rüdiger & Delgado, Juan D. & Fernández-Palacios, José M. & Arévalo, José R., 2012. "Ecological state equation," Ecological Modelling, Elsevier, vol. 224(1), pages 18-24.
    2. Kalmykov, Lev V. & Kalmykov, Vyacheslav L., 2013. "Verification and reformulation of the competitive exclusion principle," Chaos, Solitons & Fractals, Elsevier, vol. 56(C), pages 124-131.
    3. Rodríguez, Ricardo A. & Herrera, Ada Mª & Delgado, Juan D. & Otto, Rüdiger & Quirós, Ángel & Santander, Jacobo & Miranda, Jezahel V. & Fernández, María J. & Jiménez-Rodríguez, Antonia & Riera, Rodrigo, 2013. "Biomass-dispersal trade-off and the functional meaning of species diversity," Ecological Modelling, Elsevier, vol. 261, pages 8-18.
    4. Schramski, J.R. & Gattie, D.K. & Patten, B.C. & Borrett, S.R. & Fath, B.D. & Whipple, S.J., 2007. "Indirect effects and distributed control in ecosystems: Distributed control in the environ networks of a seven-compartment model of nitrogen flow in the Neuse River Estuary, USA—Time series analysis," Ecological Modelling, Elsevier, vol. 206(1), pages 18-30.
    5. Rodríguez, Ricardo A. & Herrera, Ada M. & Riera, Rodrigo & Santander, Jacobo & Miranda, Jezahel V. & Quirós, Ángel & Fernández-Rodríguez, María J. & Fernández-Palacios, José M. & Otto, Rüdiger & Escud, 2015. "Distribution of species diversity values: A link between classical and quantum mechanics in ecology," Ecological Modelling, Elsevier, vol. 313(C), pages 162-180.
    6. Rodríguez, Ricardo A. & Herrera, Ada Ma. & Santander, Jacobo & Miranda, Jezahel V. & Fernández-Rodríguez, María J. & Quirós, Ángel & Riera, Rodrigo & Fernández-Palacios, José Mª. & Otto, Rüdiger & Esc, 2015. "Uncertainty principle in niche assessment: A solution to the dilemma redundancy vs. competitive exclusion, and some analytical consequences," Ecological Modelling, Elsevier, vol. 316(C), pages 87-110.
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    1. Rodríguez, Ricardo A. & Duncan, Janelle M. & Vanni, Michael J. & Melkikh, Alexey V. & Delgado, Juan D. & Riera, Rodrigo & Herrera, Ada M. & Camarena, Tomás & Quirós, Ángel & Fernández-Palacios, José M, 2017. "Exploring the analytical consequences of ecological subjects unwittingly neglected by the mainstream of evolutionary thought," Ecological Modelling, Elsevier, vol. 355(C), pages 70-83.
    2. Kalmykov, Lev V. & Kalmykov, Vyacheslav L., 2021. "A solution to the dilemma `limiting similarity vs. limiting dissimilarity' by a method of transparent artificial intelligence," Chaos, Solitons & Fractals, Elsevier, vol. 146(C).
    3. Rodríguez, Ricardo A. & Duncan, Janelle & Riera, Rodrigo & Delgado, Juan D. & Quirós, Angel & Vanni, Michael J. & Camarena, Tomás & Miranda, Jezahel V. & Perdomo, María E. & Herrera, Ada M. & González, 2017. "Thermostatistical distribution of a trophic energy proxy: Extension for modelling energy pyramids at the inter-taxocene scale and under non-stationary conditions," Ecological Modelling, Elsevier, vol. 361(C), pages 113-121.
    4. Rodríguez, Ricardo A. & Duncan, Janelle M. & Delgado, Juan D. & Vanni, Michael J. & Riera, Rodrigo & Herrera, Ada M. & González, María J., 2017. "Assessment of ecosystem trophodynamic power: A model based on the power equation for an oscillating string," Ecological Modelling, Elsevier, vol. 362(C), pages 80-86.

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