Journal Article
Expanding forests and changing growth forms of Siberian larch at the Polar Urals treeline during the 20th century
NADEZHDA DEVI; FRANK HAGEDORN; PAVEL MOISEEV; HARALD BUGMANN; STEPAN SHIYATOV; VALERIE MAZEPA; ANDREAS RIGLING
Global Change Biology · Vol. 14, Issue 7 · pp. 1581-1591 · 2008
Abstract
The ongoing climatic changes potentially affect plant growth and the functioning of temperature‐limited high‐altitude and high‐latitude ecosystems; the rate and magnitude of these biotic changes are, however, uncertain. The aim of this study was to reconstruct stand structure and growth forms of Larix sibirica (Ledeb.) in undisturbed forest–tundra ecotones of the remote Polar Urals on a centennial time scale. Comparisons of the current ecotone with historic photographs from the 1960s clearly document that forests have significantly expanded since then. Similarly, the analysis of forest age structure based on more than 300 trees sampled along three altitudinal gradients reaching from forests in the valleys to the tundra indicate that more than 70% of the currently upright‐growing trees are −1 and a carbon accumulation of approximately 20–40 g C m −2 yr −1 during the last century. The forest expansion and change in growth forms coincided with significant summer warming by 0.9 °C and a doubling of winter precipitation during the 20th century. In summary, our results indicate that the ongoing climatic changes are already leaving a fingerprint on the appearance, structure, and productivity of the treeline ecotone in the Polar Urals.