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Globally, tree fecundity exceeds productivity gradients.

Authors :
Journé V
Andrus R
Aravena MC
Ascoli D
Berretti R
Berveiller D
Bogdziewicz M
Boivin T
Bonal R
Caignard T
Calama R
Camarero JJ
Chang-Yang CH
Courbaud B
Courbet F
Curt T
Das AJ
Daskalakou E
Davi H
Delpierre N
Delzon S
Dietze M
Donoso Calderon S
Dormont L
Maria Espelta J
Fahey TJ
Farfan-Rios W
Gehring CA
Gilbert GS
Gratzer G
Greenberg CH
Guo Q
Hacket-Pain A
Hampe A
Han Q
Lambers JHR
Hoshizaki K
Ibanez I
Johnstone JF
Kabeya D
Kays R
Kitzberger T
Knops JMH
Kobe RK
Kunstler G
Lageard JGA
LaMontagne JM
Leininger T
Limousin JM
Lutz JA
Macias D
McIntire EJB
Moore CM
Moran E
Motta R
Myers JA
Nagel TA
Noguchi K
Ourcival JM
Parmenter R
Pearse IS
Perez-Ramos IM
Piechnik L
Poulsen J
Poulton-Kamakura R
Qiu T
Redmond MD
Reid CD
Rodman KC
Rodriguez-Sanchez F
Sanguinetti JD
Scher CL
Marle HSV
Seget B
Sharma S
Silman M
Steele MA
Stephenson NL
Straub JN
Swenson JJ
Swift M
Thomas PA
Uriarte M
Vacchiano G
Veblen TT
Whipple AV
Whitham TG
Wright B
Wright SJ
Zhu K
Zimmerman JK
Zlotin R
Zywiec M
Clark JS
Source :
Ecology letters [Ecol Lett] 2022 Jun; Vol. 25 (6), pp. 1471-1482. Date of Electronic Publication: 2022 Apr 23.
Publication Year :
2022

Abstract

Lack of tree fecundity data across climatic gradients precludes the analysis of how seed supply contributes to global variation in forest regeneration and biotic interactions responsible for biodiversity. A global synthesis of raw seedproduction data shows a 250-fold increase in seed abundance from cold-dry to warm-wet climates, driven primarily by a 100-fold increase in seed production for a given tree size. The modest (threefold) increase in forest productivity across the same climate gradient cannot explain the magnitudes of these trends. The increase in seeds per tree can arise from adaptive evolution driven by intense species interactions or from the direct effects of a warm, moist climate on tree fecundity. Either way, the massive differences in seed supply ramify through food webs potentially explaining a disproportionate role for species interactions in the wet tropics.<br /> (© 2022 John Wiley & Sons Ltd.)

Details

Language :
English
ISSN :
1461-0248
Volume :
25
Issue :
6
Database :
MEDLINE
Journal :
Ecology letters
Publication Type :
Editorial & Opinion
Accession number :
35460530
Full Text :
https://doi.org/10.1111/ele.14012