TY - JOUR
T1 - Interrelationships among life-history traits in three California oaks
AU - Barringer, Brian C.
AU - Koenig, Walter D.
AU - Knops, Johannes M.H.
N1 - Funding Information:
Acknowledgments The authors thank the reviewers for helpful comments on the manuscript and the many field assistants who sorted litter during the course of this project. Financial support for this work was provided by the University of California’s Integrated Hardwood Range Management Program and NSF grant DEB-0816691.
PY - 2013/1
Y1 - 2013/1
N2 - Life-history traits interact in important ways. Relatively few studies, however, have explored the relationships between life-history traits in long-lived taxa such as trees. We examined patterns of energy allocation to components of reproduction and growth in three species of California oaks (Quercus spp.) using a combination of annual acorn censuses, dendrometer bands to measure radial increment, and litterfall traps. Our results are generally consistent with the hypothesis that energy invested in reproduction detracts from the amount of energy available for growth in these long-lived taxa; i. e., there are trade-offs between these traits. The relationships between reproduction and growth varied substantially among specific trait combinations and tree species, however, and in some cases were in the direction opposite that expected based on the assumption of trade-offs between them. This latter finding appears to be a consequence of the pattern of resource use across years in these long-lived trees contrasting with the expected partitioning of resource use within years in short-lived taxa. Thus, the existence and magnitude of putative trade-offs varied depending on whether the time scale considered was within or across years. Collectively, our results indicate that negative relationships between fundamental life-history traits can be important at multiple levels of modular organization and that energy invested in reproduction can have measurable consequences in terms of the amount of energy available for future reproduction and both current and future growth.
AB - Life-history traits interact in important ways. Relatively few studies, however, have explored the relationships between life-history traits in long-lived taxa such as trees. We examined patterns of energy allocation to components of reproduction and growth in three species of California oaks (Quercus spp.) using a combination of annual acorn censuses, dendrometer bands to measure radial increment, and litterfall traps. Our results are generally consistent with the hypothesis that energy invested in reproduction detracts from the amount of energy available for growth in these long-lived taxa; i. e., there are trade-offs between these traits. The relationships between reproduction and growth varied substantially among specific trait combinations and tree species, however, and in some cases were in the direction opposite that expected based on the assumption of trade-offs between them. This latter finding appears to be a consequence of the pattern of resource use across years in these long-lived trees contrasting with the expected partitioning of resource use within years in short-lived taxa. Thus, the existence and magnitude of putative trade-offs varied depending on whether the time scale considered was within or across years. Collectively, our results indicate that negative relationships between fundamental life-history traits can be important at multiple levels of modular organization and that energy invested in reproduction can have measurable consequences in terms of the amount of energy available for future reproduction and both current and future growth.
KW - Autocorrelation
KW - Correlation
KW - Life-history
KW - Quercus
KW - Resource partitioning
UR - http://www.scopus.com/inward/record.url?scp=84872127132&partnerID=8YFLogxK
U2 - 10.1007/s00442-012-2386-9
DO - 10.1007/s00442-012-2386-9
M3 - Article
C2 - 22707038
AN - SCOPUS:84872127132
SN - 0029-8549
VL - 171
SP - 129
EP - 139
JO - Oecologia
JF - Oecologia
IS - 1
ER -