Search PubMed⌕ Search

PubMed · 12458739

Defining 'life'.

Abstract

There is no broadly accepted definition of 'life.' Suggested definitions face problems, often in the form of robust counter-examples. Here we use insights from philosophical investigations into language to argue that defining 'life' currently poses a dilemma analogous to that faced by those hoping to define 'water' before the existence of molecular theory. In the absence of an analogous theory of the nature of living systems, interminable controversy over the definition of life is inescapable.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Carol E Cleland, Christopher F Chyba. 2002. Defining 'life'.. https://doi.org/10.1023/a%3A1020503324273

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

The fundamental nature of life as a chemical system: the part played by inorganic elements.

In this article we show why inorganic metal elements from the environment were an essential part of the origin of living aqueous systems of chemicals in flow. Unavoidably such systems have many closely fixed parameters, related to thermodynamic binding constants, for the interaction of the essential exchangeable inorganic metal elements with both inorganic and organic non-metal materials. The binding constants give rise to fixed free metal ion concentration profiles for different metal ions and ligands in the cytoplasm of all cells closely related to the Irving-Williams series. The amounts of bound elements depend on the organic molecules present as well as these free ion concentrations. This system must have predated coding which is probably only essential for reproductive life. Later evolution in changing chemical environments became based on the development of extra cytoplasmic compartments containing quite different energised free (and bound) element contents but in feed-back communication with the central primitive cytoplasm which changed little. Hence species multiplied late in evolution in large part due to the coupling with the altered inorganic environment.

Evolution, Chemical↗