Woody species diversity influences productivity and soil nutrient availability in tropical plantations

被引:93
作者
Firn, Jennifer [1 ]
Erskine, Peter D.
Lamb, David
机构
[1] Univ Queensland, Sch Integrat Biol, Brisbane, Qld 4072, Australia
[2] Univ Queensland, Ctr Mined Land Rehabil, Brisbane, Qld 4072, Australia
关键词
biodiversity; forest restoration; species richness; ecosystem function;
D O I
10.1007/s00442-007-0850-8
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
We investigated the relationship between plant diversity and ecological function (production and nutrient cycling) in tropical tree plantations. Old plantations (65-72 years) of four different species, namely Araucaria cunninghamii, Agathis robusta, Toona ciliata and Flindersia brayleyana, as well as natural secondary forest were examined at Wongabel State Forest, in the wet tropics region of Queensland, Australia. Two young plantations (23 years) of Araucaria cunninghamii and Pinus caribaea were also examined. The close proximity of the older plantations and natural forests meant they had similar edaphic and climatic conditions. All plantations had been established as monocultures, but had been colonised by a range of native woody plants from the nearby rainforest. The extent to which this had occurred varied with the identity of the plantation species (from 2 to 17 species in 0.1 ha blocks). In many cases these additional species had grown up and joined the forest canopy. This study is one of the few to find a negative relationship between overstorey plant diversity and productivity. The conversion of natural forest with highly productive, low-diversity gymnosperm-dominated plantations (young and old Araucaria cunninghamii and Pinus caribaea) was found to be associated with lower soil nutrient availability (approximately five times less phosphorus and 2.5 times less nitrogen) and lower soil pH (mean = 6.28) compared to the other, less productive plantations. The dominant effects of two species, Araucaria cunninghamii and Hodgkinsonia frutescens, indicate that ecosystem functions such as production and nutrient availability are not determined solely by the number of species, but are more likely to be determined by the characteristics of the species present. This suggests that monoculture plantations can be used to successfully restore some functions (e.g. nutrient cycling and production), but that the level to which such functions can be restored will depend upon the species chosen and site conditions.
引用
收藏
页码:521 / 533
页数:13
相关论文
共 73 条
[41]   Disentangling biodiversity effects on ecosystem functioning: deriving solutions to a seemingly insurmountable problem [J].
Naeem, S ;
Wright, JP .
ECOLOGY LETTERS, 2003, 6 (06) :567-579
[42]   DECLINING BIODIVERSITY CAN ALTER THE PERFORMANCE OF ECOSYSTEMS [J].
NAEEM, S ;
THOMPSON, LJ ;
LAWLER, SP ;
LAWTON, JH ;
WOODFIN, RM .
NATURE, 1994, 368 (6473) :734-737
[43]   DETERMINATION OF LOW CONCENTRATIONS OF PHOSPHORUS IN SOIL EXTRACTS USING MALACHITE GREEN [J].
OHNO, T ;
ZIBILSKE, LM .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1991, 55 (03) :892-895
[44]   THE ROLE OF PLANTATION FORESTS IN REHABILITATING DEGRADED TROPICAL ECOSYSTEMS [J].
PARROTTA, JA .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 1992, 41 (02) :115-133
[45]   INFLUENCE OF OVERSTORY COMPOSITION ON UNDERSTORY COLONIZATION BY NATIVE SPECIES IN PLANTATIONS ON A DEGRADED TROPICAL SITE [J].
PARROTTA, JA .
JOURNAL OF VEGETATION SCIENCE, 1995, 6 (05) :627-636
[46]   Diversity-dependent production can decrease the stability of ecosystem functioning [J].
Pfisterer, AB ;
Schmid, B .
NATURE, 2002, 416 (6876) :84-86
[47]   The influence of the forest canopy on nutrient cycling [J].
Prescott, CE .
TREE PHYSIOLOGY, 2002, 22 (15-16) :1193-1200
[48]  
Pretzsch H, 2005, ECOL STUD-ANAL SYNTH, V176, P41
[49]   Linking litter calcium, earthworms and soil properties: a common garden test with 14 tree species [J].
Reich, PB ;
Oleksyn, J ;
Modrzynski, J ;
Mrozinski, P ;
Hobbie, SE ;
Eissenstat, DM ;
Chorover, J ;
Chadwick, OA ;
Hale, CM ;
Tjoelker, MG .
ECOLOGY LETTERS, 2005, 8 (08) :811-818
[50]   Plant diversity enhances ecosystem responses to elevated CO2 and nitrogen deposition [J].
Reich, PB ;
Knops, J ;
Tilman, D ;
Craine, J ;
Ellsworth, D ;
Tjoelker, M ;
Lee, T ;
Wedin, D ;
Naeem, S ;
Bahauddin, D ;
Hendrey, G ;
Jose, S ;
Wrage, K ;
Goth, J ;
Bengston, W .
NATURE, 2001, 410 (6830) :809-812