Data from: Temporal scale-dependence of plant-pollinator networks
Data files
May 09, 2021 version files 19.74 MB
-
OIK-07303_betalinkr.R
12.75 KB
-
OIK-07303_database.csv
18.99 MB
-
OIK-07303_functions.R
33.13 KB
-
OIK-07303_network_aggregation.R
5.39 KB
-
OIK-07303_original_studies.xlsx
15.05 KB
-
OIK-07303_results.csv
570.53 KB
-
README.pdf
112.48 KB
May 09, 2021 version files 19.74 MB
-
OIK-07303_betalinkr.R
12.75 KB
-
OIK-07303_database.csv
18.99 MB
-
OIK-07303_functions.R
33.13 KB
-
OIK-07303_network_aggregation.R
5.39 KB
-
OIK-07303_original_studies.xlsx
15.04 KB
-
OIK-07303_results.csv
570.53 KB
-
README.pdf
112.48 KB
Abstract
Note that plant-pollinator interaction data within this database were not sampled in the frame of this study but were derived from 30 individual data sets of plant-pollinator interaction networks from published or unpublished studies. These studies were conducted across several sites in 9 countries, ranging from tropical to arctic regions but with the majority of sites being located in temperate regions. In all data sets, species correspond to either taxonomic species or morphospecies, and each recorded interaction corresponds to an observation of an animal visiting a flower. We usually used the same sites that were described by the original studies except when the original sites represented relatively small observational plots or were observed for only part of a day. Specifically, we pooled the original sites if they were less than ~6 km apart from each other, harbored similar plant communities, and if a reasonably large proportion of them were sampled on each sampling day. We also standardized southern hemisphere dates by adding 182 days to each sampling date for each site in the southern hemisphere (affecting studies Chacoff2018, Kaiser-Bunbury2017, and Vazquez2003) to assure that the whole flowering season takes place within one single calendar year. Thus, this database may partly differ from the original data sets in terms of site classification and sampling date.
For usage of the data we recommend to refer to the related studies and, wherever possible, to use the originally published data, which may provide more metadata and relevant information. In any case, if you make use of this database or part of it, please cite the related studies and data publications (listed in file OIK-07303_original_studies.xlsx).
OIK-07303_database.csv – data set containing plant-pollinator interaction data from 30 studies. For some studies code identifiers instead of species names are used for plant (column lower) and pollinator (column higher) species.
OIK-07303_original_studies.xlsx – table containing references (DOI or URL) to articles and data publications related to the data compiled in OIK-07303_database.csv.
OIK-07303_results.csv – data frame that was finally used for statistical analyses. For each aggregated network (rows) various network indices and co-variables (columns) are given.
OIK-07303_functions.R – R script containing functions that allow aggregating interaction data into networks at different temporal scales and calculating network indices and various co-variables.
OIK-07303_betalinkr.R – R script containing function betalinkr to assess species turnover and link rewiring.
OIK-07303_network_aggregation.R – R script to prepare the data from OIK-07303_database.csv for aggregating networks and to calculate network indices and co-variables, which results in a data frame identical to OIK-07303_results.csv.
- Benadi, Gita; Hovestadt, Thomas; Poethke, Hans-Joachim; Blüthgen, Nico (2014), Data from: Specialization and phenological synchrony of plant–pollinator interactions along an altitudinal gradient, , Dataset, https://doi.org/10.5061/dryad.8mn44
- CaraDonna, Paul J (2020), Temporal variation in plant-pollinator interactions, Rocky Mountain Biological Laboratory, CO, USA, 2013 - 2015, , Dataset, https://doi.org/10.6073/pasta/27dc02fe1655e3896f20326fed5cb95f
- Chacoff, Natacha P.; Vázquez, Diego P.; Lomáscolo, Silvia B. (2020), Data from: Trait matching and phenological overlap increase the spatio-temporal stability and functionality of plant-pollinator interactions, , Dataset, https://doi.org/10.5061/dryad.8cz8w9gm1
- Lara-Romero, Carlos; García, Crisitna; Morente-López, Javier; Iriondo, José M. (2016), Data from: Direct and indirect effects of shrub encroachment on alpine grasslands mediated by plant-flower visitor interactions, , Dataset, https://doi.org/10.5061/dryad.p869n
- MacLeod, Molly et al. (2019), How much do rare and crop-pollinating bees overlap in identity and flower preferences?, , Dataset, https://doi.org/10.5061/dryad.gf1vhhmjv
- Roswell, Michael; Dushoff, Jonathan; Winfree, Rachael (2019), Data from: Male and female bees show large differences in floral preference, , Dataset, https://doi.org/10.5061/dryad.c3rr6q1
- Schwarz, Benjamin et al. (2020), Temporal scale‐dependence of plant–pollinator networks, Oikos, Article-journal, https://doi.org/10.1111/oik.07303
- Smith, Colleen; Weinman, Lucia; Gibbs, Jason; Winfree, Rachael (2019), Data from: Specialist foragers in forest bee communities are small, social or emerge early, , Dataset, https://doi.org/10.5061/dryad.2bm34c2
- Alarcón, Ruben; Waser, Nickolas M.; Ollerton, Jeff (2008), Year-to-year variation in the topology of a plant-pollinator interaction network, Oikos, Journal-article, https://doi.org/10.1111/j.0030-1299.2008.16987.x
- Burkle, Laura A.; Knight, Tiffany M. (2012), Shifts in pollinator composition and behavior cause slow interaction accumulation with area in plant–pollinator networks, Ecology, Journal-article, https://doi.org/10.1890/12-0367.1
- Chacoff, Natacha P. et al. (2011), Evaluating sampling completeness in a desert plant-pollinator network, Journal of Animal Ecology, Journal-article, https://doi.org/10.1111/j.1365-2656.2011.01883.x
- Fründ, Jochen; Linsenmair, Karl Eduard; Blüthgen, Nico (2010), Pollinator diversity and specialization in relation to flower diversity, Oikos, Journal-article, https://doi.org/10.1111/j.1600-0706.2010.18450.x
- Fründ, Jochen; Dormann, Carsten F.; Tscharntke, Teja (2011), Linné’s floral clock is slow without pollinators - flower closure and plant-pollinator interaction webs, Ecology Letters, Journal-article, https://doi.org/10.1111/j.1461-0248.2011.01654.x
- Heil, Laura J.; Burkle, Laura A. (2018), Recent post-wildfire salvage logging benefits local and landscape floral and bee communities, Forest Ecology and Management, Journal-article, https://doi.org/10.1016/j.foreco.2018.05.009
- Kaiser-Bunbury, Christopher N. et al. (2017), Ecosystem restoration strengthens pollination network resilience and function, Nature, Journal-article, https://doi.org/10.1038/nature21071
- MacLeod, Molly; Genung, Mark A.; Ascher, John S.; Winfree, Rachael (2016), Measuring partner choice in plant-pollinator networks: using null models to separate rewiring and fidelity from chance, Ecology, Journal-article, https://doi.org/10.1002/ecy.1574
- ΠΕΤΑΝΙΔΟΥ, ΘΕΟΔΩΡΑ (), Η ΕΠΙΚΟΝΙΑΣΗ ΣΤΑ ΦΡΥΓΑΝΙΚΑ ΟΙΚΟΣΥΣΤΗΜΑΤΑ, [], Dissertation, https://doi.org/10.12681/eadd/10184
- Petanidou, Theodora et al. (2008), Long-term observation of a pollination network: fluctuation in species and interactions, relative invariance of network structure and implications for estimates of specialization, Ecology Letters, Journal-article, https://doi.org/10.1111/j.1461-0248.2008.01170.x
- Petanidou, Theodora et al. (2014), Variable flowering phenology and pollinator use in a community suggest future phenological mismatch, Acta Oecologica, Journal-article, https://doi.org/10.1016/j.actao.2014.06.001
- FANG, Qiang; HUANG, Shuangquan (2016), Plant-pollinator interactions in a biodiverse meadow are rather stable and tight for 3 consecutive years, Integrative Zoology, Journal-article, https://doi.org/10.1111/1749-4877.12190
- Rasmussen, Claus et al. (2013), Strong Impact of Temporal Resolution on the Structure of an Ecological Network, PLoS ONE, Journal-article, https://doi.org/10.1371/journal.pone.0081694
- Simanonok, Michael P.; Burkle, Laura A. (2014), Partitioning interaction turnover among alpine pollination networks: spatial, temporal, and environmental patterns, Ecosphere, Journal-article, https://doi.org/10.1890/es14-00323.1
- Thompson, Amibeth H.; Knight, Tiffany M. (2018), Exotic plant species receive adequate pollinator service despite variable integration into plant–pollinator networks, Oecologia, Journal-article, https://doi.org/10.1007/s00442-018-4096-4
- Vázquez, Diego P.; Simberloff, Daniel (2003), Changes in interaction biodiversity induced by an introduced ungulate, Ecology Letters, Journal-article, https://doi.org/10.1046/j.1461-0248.2003.00534.x
- Weiner, Christiane Natalie; Werner, Michael; Linsenmair, Karl Eduard; Blüthgen, Nico (2014), Land-use impacts on plant–pollinator networks: interaction strength and specialization predict pollinator declines, Ecology, Journal-article, https://doi.org/10.1890/13-0436.1
- Kühsel, Sara; Blüthgen, Nico (2015), High diversity stabilizes the thermal resilience of pollinator communities in intensively managed grasslands, Nature Communications, Journal-article, https://doi.org/10.1038/ncomms8989
- MacLeod, Molly et al. (2020), How much do rare and crop‐pollinating bees overlap in identity and flower preferences?, Journal of Applied Ecology, Journal-article, https://doi.org/10.1111/1365-2664.13543
- Burkle, Laura A.; Heil, Laura J.; Belote, R. Travis (2021), Salvage logging management affects species' roles in connecting plant–pollinator interaction networks across post‐wildfire landscapes, Journal of Applied Ecology, Journal-article, https://doi.org/10.1111/1365-2664.13928
