Convergence across biomes to a common rain-use efficiency.

Abstract:

:Water availability limits plant growth and production in almost all terrestrial ecosystems. However, biomes differ substantially in sensitivity of aboveground net primary production (ANPP) to between-year variation in precipitation. Average rain-use efficiency (RUE; ANPP/precipitation) also varies between biomes, supposedly because of differences in vegetation structure and/or biogeochemical constraints. Here we show that RUE decreases across biomes as mean annual precipitation increases. However, during the driest years at each site, there is convergence to a common maximum RUE (RUE(max)) that is typical of arid ecosystems. RUE(max) was also identified by experimentally altering the degree of limitation by water and other resources. Thus, in years when water is most limiting, deserts, grasslands and forests all exhibit the same rate of biomass production per unit rainfall, despite differences in physiognomy and site-level RUE. Global climate models predict increased between-year variability in precipitation, more frequent extreme drought events, and changes in temperature. Forecasts of future ecosystem behaviour should take into account this convergent feature of terrestrial biomes.

journal_name

Nature

journal_title

Nature

authors

Huxman TE,Smith MD,Fay PA,Knapp AK,Shaw MR,Loik ME,Smith SD,Tissue DT,Zak JC,Weltzin JF,Pockman WT,Sala OE,Haddad BM,Harte J,Koch GW,Schwinning S,Small EE,Williams DG

doi

10.1038/nature02561

keywords:

subject

Has Abstract

pub_date

2004-06-10 00:00:00

pages

651-4

issue

6992

eissn

0028-0836

issn

1476-4687

pii

nature02561

journal_volume

429

pub_type

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