Non‐equilibrium succession dynamics indicate continued northern migration of lodgepole pine

JF Johnstone, FS Chapin - Global Change Biology, 2003 - Wiley Online Library
Because species affect ecosystem functioning, understanding migration processes is a key
component of predicting future ecosystem responses to climate change. This study provides …

[PDF][PDF] Non-equilibrium succession dynamics indicate continued northern migration of lodgepole pine

JF JOHNSTONE, FS CHAPIN - Global Change Biology, 2003 - landscapepartnership.org
Because species affect ecosystem functioning, understanding migration processes is a key
component of predicting future ecosystem responses to climate change. This study provides …

[PDF][PDF] Non-equilibrium succession dynamics indicate continued northern migration of lodgepole pine

JF JOHNSTONE, FS CHAPIN - Global Change Biology, 2003 - landscapepartnership.org
Because species affect ecosystem functioning, understanding migration processes is a key
component of predicting future ecosystem responses to climate change. This study provides …

[引用][C] Non-equilibrium succession dynamics indicate continued northern migration of lodgepole pine

JF Johnstone, FS Chapin - Global Change Biology, 2003 - ui.adsabs.harvard.edu
Non-equilibrium succession dynamics indicate continued northern migration of lodgepole pine
- NASA/ADS Now on home page ads icon ads Enable full ADS view NASA/ADS Non-equilibrium …

[PDF][PDF] Non-equilibrium succession dynamics indicate continued northern migration of lodgepole pine

JF JOHNSTONE, FS CHAPIN - Global Change Biology, 2003 - landscapepartnership.net
Because species affect ecosystem functioning, understanding migration processes is a key
component of predicting future ecosystem responses to climate change. This study provides …

[PDF][PDF] Non-equilibrium succession dynamics indicate continued northern migration of lodgepole pine

JF JOHNSTONE, FS CHAPIN - Global Change Biology, 2003 - Citeseer
Because species affect ecosystem functioning, understanding migration processes is a key
component of predicting future ecosystem responses to climate change. This study provides …

Non-equilibrium succession dynamics indicate continued northern migration of lodgepole pine

JF Johnstone, FS Chapin - Global Change Biology, 2003 - elibrary.ru
Because species affect ecosystem functioning, understanding migration processes is a key
component of predicting future ecosystem responses to climate change. This study provides …

Non-equilibrium succession dynamics indicate continued northern migration of lodgepole pine.

JF Johnstone, FS Chapin - Global Change Biology, 2003 - search.ebscohost.com
Because species affect ecosystem functioning, understanding migration processes is a key
component of predicting future ecosystem responses to climate change. This study provides …

Non-equilibrium succession dynamics indicate continued northern migration of lodgepole pine.

JF Johnstone, FS Chapin - 2003 - cabidigitallibrary.org
Because species affect ecosystem functioning, understanding migration processes is a key
component of predicting future ecosystem responses to climate change. This study provides …

[PDF][PDF] Non-equilibrium succession dynamics indicate continued northern migration of lodgepole pine

JF JOHNSTONE, FS CHAPIN - Global Change Biology, 2003 - academia.edu
Because species affect ecosystem functioning, understanding migration processes is a key
component of predicting future ecosystem responses to climate change. This study provides …