Department of Biology, University of Florida, Gainesville, FL 32611-8525, USA
Center for Environmental Science, University of Maryland, Solomons, MD 20688-0038, USA.
J R Soc Interface. 2018 Oct 10;15(147):20180367. doi: 10.1098/rsif.2018.0367.
The relationship between biodiversity and functional redundancy has remained ambiguous for over a half-century, likely due to an inability to distinguish between positivist and apophatic (that which is missing) properties of ecosystems. Apophases are best addressed by mathematics that is predicated upon absence, such as information theory. More than 40 years ago, the conditional entropy of a flow network was proposed as a formulaic way to quantify trophic functional redundancy, an advance that has remained relatively unappreciated. When applied to a collection of 25 fully quantified trophic networks, this authoritative index correlates only poorly and transitively with conventional Hill numbers used to represent biodiversity. Despite such a weak connection, the underlying biomass distribution remains useful in conjunction with the qualitative diets of system components for providing a quick and satisfactory emulation of a system's functional redundancy. Furthermore, an information-theoretic cognate of the Wigner Semicircle Rule can be formulated using network conditional entropy to provide clues to the relative stability of any ecosystem under study. The necessity for a balance between positivist and apophatic attributes pertains to the functioning of a host of other living ensemble systems.
生物多样性和功能冗余之间的关系在半个多世纪以来一直含糊不清,这可能是由于无法区分生态系统的实证主义和否定论(即缺失的属性)。否定论最好通过基于缺失的数学来解决,例如信息论。40 多年前,有人提出流网络的条件熵作为量化营养功能冗余的公式方法,这一进展一直未得到充分重视。当应用于一组 25 个完全量化的营养网络时,这个权威指标与用于表示生物多样性的传统希尔数相关性很差且具有传递性。尽管这种联系很弱,但基础生物量分布仍然与系统组件的定性饮食结合使用,以便快速和令人满意地模拟系统的功能冗余。此外,还可以使用网络条件熵来制定维格纳半圆法则的信息论同源物,为研究中任何生态系统的相对稳定性提供线索。实证主义和否定论属性之间的平衡对于许多其他生命集合系统的功能都是必要的。