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Landscape‐scale density‐dependent recruitment of oaks in planted forests: More is not always better
Author(s) -
Sheffer Efrat,
Canham Charles D.,
Kigel Jaime,
Perevolotsky Avi
Publication year - 2013
Publication title -
ecology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.144
H-Index - 294
eISSN - 1939-9170
pISSN - 0012-9658
DOI - 10.1890/12-2121.1
Subject(s) - colonization , seedling , range (aeronautics) , ecology , abundance (ecology) , density dependence , biology , scale (ratio) , geography , botany , demography , population , materials science , cartography , sociology , composite material
Plant colonization studies usually address density‐dependent processes in the narrow sense of recruitment constraints due to negative density‐dependent seed and seedling mortality. However, complex density‐dependent effects may be involved in additional stages of the recruitment process. We hypothesized that seed arrival and seedling establishment are influenced by density dependence acting at small scales at the site of colonization, and at larger scales as a function of the colonizing species' landscape abundance. These hypotheses were tested in a study of colonization of pine forests by oaks in a heterogeneous Mediterranean landscape. Maximum‐likelihood models show that density effects switch from positive to negative along the range of landscape‐scale oak seed source abundance. Contrary to expectations, high seed source densities limited oak recruitment, suggesting a landscape‐scale Janzen‐Connell effect. We propose a range of mechanisms that generate positive or negative density dependence during colonization, resulting in nonlinear density‐dependent feedbacks that can generate unexpected colonization patterns.

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