BIOME 6000: reconstructing global mid‐Holocene vegetation patterns from palaeoecological records
- 1 November 1998
- journal article
- research article
- Published by Wiley in Journal of Biogeography
- Vol. 25 (6) , 997-1005
- https://doi.org/10.1046/j.1365-2699.1998.00235.x
Abstract
Global change research needs data sets describing past states of the Earth system. Vegetation distributions for specified ‘time slices’ (with known forcings, such as changes in insolation patterns due to the Earth's orbital variations, changes in the extent of ice‐sheets, and changes in atmospheric trace‐gas composition) should provide a benchmark for coupled climate‐biosphere models. Pollen and macrofossil records from dated sediments give spatially extensive coverage of data on vegetation distribution changes. Applications of such data have been delayed by the lack of a global synthesis. The BIOME 6000 project of IGBP aims at a synthesis for 6000 years bp. Success depends on community‐wide participation for data compilation and quality assurance, and on a robust methodology for assigning palaeorecords to biomes. In the method summarized here, taxa are assigned to one or more plant functional types (PFTs) and biomes reconstructed using PFT‐based definitions. By involving regional experts in PFT assignments, one can combine data from different floras without compromising global consistency in biome assignments. This article introduces a series of articles that substantially extend the BIOME 6000 data set. The list of PFTs and the reconstruction procedure itself are evolving. Some compromises (for example, restricted taxon lists in some regions) limit the precision of biome assignments and will become obsolete as primary data are put into community data bases. This trend will facilitate biome mapping for other time slices. Co‐evolution of climate‐biosphere modelling and palaeodata synthesis and analysis will continue.Keywords
This publication has 28 references indexed in Scilit:
- Applying plant functional types to construct biome maps from eastern North American pollen dataQuaternary Science Reviews, 1998
- Mid‐Holocene land‐surface conditions in northern Africa and the Arabian Peninsula: A data set for the analysis of biogeophysical feedbacks in the climate systemGlobal Biogeochemical Cycles, 1998
- BIOME3: An equilibrium terrestrial biosphere model based on ecophysiological constraints, resource availability, and competition among plant functional typesGlobal Biogeochemical Cycles, 1996
- An integrated biosphere model of land surface processes, terrestrial carbon balance, and vegetation dynamicsGlobal Biogeochemical Cycles, 1996
- Potential role of vegetation feedback in the climate sensitivity of high‐latitude regions: A case study at 6000 years B.P.Global Biogeochemical Cycles, 1996
- Global vegetation models: incorporating transient changes to structure and compositionJournal of Vegetation Science, 1996
- Global vegetation cover changes from coarse resolution satellite dataJournal of Geophysical Research: Atmospheres, 1996
- Vegetation/Ecosystem Modeling and Analysis Project:Comparing biogeography and biogeochemistry models in a continental‐scale study of terrestrial ecosystem responses to climate change and CO2 doublingGlobal Biogeochemical Cycles, 1995
- The sensitivity of the terrestrial biosphere to climatic change: A simulation of the Middle HoloceneGlobal Biogeochemical Cycles, 1994
- A data-based re-appraisal of the terrestrial carbon budget at the last glacial maximumGlobal and Planetary Change, 1993