Unveiling past tipping points is a prerequisite for a better understanding of how individual species and entire ecosystems will respond to future climate change. Such knowledge is key for the implementation of biodiversity conservation. We identify the relationships between peatland vegetation and hydrological conditions over the past 2000 years using macrofossils, testate amoebae-based quantitative hydrological reconstructions, and Sphagnum-moss functional traits from seven Polish peatland records. Using threshold indicator taxa analysis (TITAN), we discovered that plant community composition strongly converged at a water level of c. 11.7 cm, indicating a community-level tipping-point. We identified 45 plant taxa that showed either an incr...
1. Peatland rewetting aims to restore biomass accumulation from peat-forming plants for climate chan...
Drier conditions caused by drainage for infrastructure development, or associated with global climat...
Strong climate warming is predicted at higher latitudes this century, with potentially major consequ...
Unveiling past tipping points is a prerequisite for a better understanding of how individual species...
In peatland ecosystems, plant communities mediate a globally significant carbon store. The effects o...
Peatlands play a crucial role in the global carbon cycle. Sphagnum mosses (peat mosses) are consider...
Due to their unique flora, hydrology and environmental characteristics, peatlands are precious and s...
Peatlands are peat forming ecosystems in which not fully decomposed plant material builds up the soi...
1. Many peatland ecosystems in Europe have become degraded in the last century owing to the effects ...
Peat mosses (Sphagnum) largely govern carbon sequestration in Northern Hemisphere peatlands. We inve...
Item does not contain fulltextThe relative importance of global versus local environmental factors f...
Northern peatlands represent a large global carbon store that potentially can be destabilised by sum...
Abstract 1. Most of the carbon accumulated into peatlands is derived from Sphagnum mosses. During p...
1. Peatland rewetting aims to restore biomass accumulation from peat-forming plants for climate chan...
Drier conditions caused by drainage for infrastructure development, or associated with global climat...
Strong climate warming is predicted at higher latitudes this century, with potentially major consequ...
Unveiling past tipping points is a prerequisite for a better understanding of how individual species...
In peatland ecosystems, plant communities mediate a globally significant carbon store. The effects o...
Peatlands play a crucial role in the global carbon cycle. Sphagnum mosses (peat mosses) are consider...
Due to their unique flora, hydrology and environmental characteristics, peatlands are precious and s...
Peatlands are peat forming ecosystems in which not fully decomposed plant material builds up the soi...
1. Many peatland ecosystems in Europe have become degraded in the last century owing to the effects ...
Peat mosses (Sphagnum) largely govern carbon sequestration in Northern Hemisphere peatlands. We inve...
Item does not contain fulltextThe relative importance of global versus local environmental factors f...
Northern peatlands represent a large global carbon store that potentially can be destabilised by sum...
Abstract 1. Most of the carbon accumulated into peatlands is derived from Sphagnum mosses. During p...
1. Peatland rewetting aims to restore biomass accumulation from peat-forming plants for climate chan...
Drier conditions caused by drainage for infrastructure development, or associated with global climat...
Strong climate warming is predicted at higher latitudes this century, with potentially major consequ...