Effects of landscape composition and configuration on pollination in a native herb: a field experiment

被引:17
作者
Ekroos, Johan [1 ]
Jakobsson, Anna [2 ]
Wideen, Joel [1 ]
Herbertsson, Lina [1 ]
Rundlof, Maj [3 ]
Smith, Henrik G. [1 ,3 ]
机构
[1] Lund Univ, Ctr Environm & Climate Res, Lund, Sweden
[2] Uppsala Univ, Dept Plant Ecol & Evolut, Uppsala, Sweden
[3] Lund Univ, Dept Biol, Lund, Sweden
关键词
Pollen limitation; Source habitats; Landscape heterogeneity; Seed set; Sexual reproduction; MASS-FLOWERING CROPS; POLLEN LIMITATION; HABITAT FRAGMENTATION; PLANT REPRODUCTION; VISCARIA-VULGARIS; DIVERSITY; SERVICES; SCALE; POPULATIONS; PERSISTENCE;
D O I
10.1007/s00442-015-3370-y
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
Bumble bee abundance in agricultural landscapes is known to decrease with increasing distance from seminatural grasslands, but whether the pollination of bumble-bee-pollinated wild plants shows a similar pattern is less well known. In addition, the relative effects of landscape composition (landscape heterogeneity) and landscape configuration (distance from seminatural grassland) on wild plant pollination, and the interaction between these landscape effects, have not been studied using landscape-level replication. We performed a field experiment to disentangle these landscape effects on the pollination of a native herb, the sticky catchfly (Lychnis viscaria), while accounting for the proportion of oilseed rape across landscapes and the local abundance of bee forage flowers. We measured pollen limitation (the degree to which seed set is pollen-limited), seed set, and seed set stability using potted plants placed in landscapes that differed in heterogeneity (composition) and distance from seminatural grassland (configuration). Pollen limitation and seed set in individual plants did not respond to landscape composition, landscape configuration, or proportion of oilseed rape. Instead, seed set increased with increasing local bee forage flower cover. However, we found within-plant variability in pollen limitation and seed set to increase with increasing distance from seminatural pasture. Our results suggest that average within-plant levels of pollen limitation and seed set respond less swiftly than the within-plant variability in pollen limitation and seed set to changes in landscape configuration. Although landscape effects on pollination were less important than predicted, we conclude that landscape configuration and local habitat characteristics play larger roles than landscape composition in the pollination of L. viscaria.
引用
收藏
页码:509 / 518
页数:10
相关论文
共 51 条
[1]   Plant reproductive susceptibility to habitat fragmentation: review and synthesis through a meta-analysis [J].
Aguilar, Ramiro ;
Ashworth, Lorena ;
Galetto, Leonardo ;
Aizen, Marcelo Adrian .
ECOLOGY LETTERS, 2006, 9 (08) :968-980
[2]  
[Anonymous], 2011, R: A Language and Environment for Statistical Computing
[3]   Pollen limitation of plant reproduction: Ecological and evolutionary causes and consequences [J].
Ashman, TL ;
Knight, TM ;
Steets, JA ;
Amarasekare, P ;
Burd, M ;
Campbell, DR ;
Dudash, MR ;
Johnston, MO ;
Mazer, SJ ;
Mitchell, RJ ;
Morgan, MT ;
Wilson, WG .
ECOLOGY, 2004, 85 (09) :2408-2421
[4]   Pollinator body size mediates the scale at which land use drives crop pollination services [J].
Benjamin, Faye E. ;
Reilly, James R. ;
Winfree, Rachael .
JOURNAL OF APPLIED ECOLOGY, 2014, 51 (02) :440-449
[5]  
Bjornstad O.N., 2009, NCF SPATIAL NONPARAM
[6]   Spillover of functionally important organisms between managed and natural habitats [J].
Blitzer, Eleanor J. ;
Dormann, Carsten F. ;
Holzschuh, Andrea ;
Klein, Alexandra-Maria ;
Rand, Tatyana A. ;
Tscharntke, Teja .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2012, 146 (01) :34-43
[7]   Reproductive constraints for the long-term persistence of fragmented Acacia dealbata (Mimosaceae) populations in southeast Australia [J].
Broadhurst, Linda M. ;
Young, Andrew G. .
BIOLOGICAL CONSERVATION, 2006, 133 (04) :512-526
[8]   The potential for indirect effects between co-flowering plants via shared pollinators depends on resource abundance, accessibility and relatedness [J].
Carvalheiro, Luisa Gigante ;
Biesmeijer, Jacobus Christiaan ;
Benadi, Gita ;
Fruend, Jochen ;
Stang, Martina ;
Bartomeus, Ignasi ;
Kaiser-Bunbury, Christopher N. ;
Baude, Mathilde ;
Gomes, Sofia I. F. ;
Merckx, Vincent ;
Baldock, Katherine C. R. ;
Bennett, Andrew T. D. ;
Boada, Ruth ;
Bommarco, Riccardo ;
Cartar, Ralph ;
Chacoff, Natacha ;
Danhardt, Juliana ;
Dicks, Lynn V. ;
Dormann, Carsten F. ;
Ekroos, Johan ;
Henson, Kate S. E. ;
Holzschuh, Andrea ;
Junker, Robert R. ;
Lopezaraiza-Mikel, Martha ;
Memmott, Jane ;
Montero-Castano, Ana ;
Nelson, Isabel L. ;
Petanidou, Theodora ;
Power, Eileen F. ;
Rundlof, Maj ;
Smith, Henrik G. ;
Stout, Jane C. ;
Temitope, Kehinde ;
Tscharntke, Teja ;
Tscheulin, Thomas ;
Vila, Montserrat ;
Kunin, William E. .
ECOLOGY LETTERS, 2014, 17 (11) :1389-1399
[9]   Density of insect-pollinated grassland plants decreases with increasing surrounding land-use intensity [J].
Clough, Yann ;
Ekroos, Johan ;
Baldi, Andras ;
Batary, Peter ;
Bommarco, Riccardo ;
Gross, Nicolas ;
Holzschuh, Andrea ;
Hopfenmueller, Sebastian ;
Knop, Eva ;
Kuussaari, Mikko ;
Lindborg, Regina ;
Marini, Lorenzo ;
Ockinger, Erik ;
Potts, Simon G. ;
Poyry, Juha ;
Roberts, Stuart P. M. ;
Steffan-Dewenter, Ingolf ;
Smith, Henrik G. .
ECOLOGY LETTERS, 2014, 17 (09) :1168-1177
[10]   Landscape structure influences pollinator movements and directly affects plant reproductive success [J].
Cranmer, Louise ;
McCollin, Duncan ;
Ollerton, Jeff .
OIKOS, 2012, 121 (04) :562-568