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Vogel, Anja; Weigelt, Alexandra; Scherer-Lorenzen, Michael (2018): Carbon and nitrogen concentrations in plants of the drought experiment (Main Experiment, Drought experiment, year 2009) [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.887333

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Abstract:
This data set contains measurements of carbon and nitrogen concentrations in aboveground plant biomass of the subplots of the drought experiment. Data presented here is from the Main Experiment plots of a large grassland biodiversity experiment (the Jena Experiment; see further details below). In the main experiment, 82 grassland plots of 20 x 20 m were established from a pool of 60 species belonging to four functional groups (grasses, legumes, tall and small herbs). In May 2002, varying numbers of plant species from this species pool were sown into the plots to create a gradient of plant species richness (1, 2, 4, 8, 16 and 60 species) and functional richness (1, 2, 3, 4 functional groups). Plots were maintained in general by bi-annual weeding and mowing. Since 2010, plot size was reduced to 5 x 6 m and plots were weeded three times per year.
In 2006, a gradient in management intensity was established with five subplots on 80 plots of the main experiment. Management varied in mowing regime and the amount of NPK fertilizer application (more details please see the treatment description file). In 2008 and 2009, drought was induced using transparent rain shelters during six weeks in summer previous to the last annual cut. Control subplots remained unsheltered and received ambient precipitation. One sheltered and one unsheltered subplot of 1.6 m x 2 m size was established for each management treatment in each of the 80 plots. In 2009 an additional roof control was established in all plots, e.g. a sheltered subplot where collected rain water was added.
In 2009, C and N concentrations of aboveground biomass samples were measured on three management subplots (no island) as well as the core area and the roof control. Drought was induced from 2009-07-16 to 2009-09-01. Aboveground plant biomass was harvested before mowing in August. Two samples per management and core area subplot were taken, one from the roofed area and one from the control area without roof. Plants were harvested in rectangles of 20 x 50 cm size. Samples were sorted into target species (pool), weeds and dead material and dried at 70 °C for 48 h. C and N concentrations were measured only from the sample with target species. It was homogenized and grounded to powder and then analyzed with an elemental analyzer (Vario El, Elementar Analysesysteme GmbH, Hanau).
Related to:
Abbas, Maike; Ebeling, Anne; Oelmann, Yvonne; Ptacnik, Robert; Roscher, Christiane; Weigelt, Alexandra; Weisser, Wolfgang W; Wilcke, Wolfgang; Hillebrand, Helmut (2013): Biodiversity Effects on Plant Stoichiometry. PLoS ONE, 8(3), e58179, https://doi.org/10.1371/journal.pone.0058179
Allan, Erik; Weisser, Wolfgang W; Fischer, Markus; Schulze, Ernst-Detlef; Weigelt, Alexandra; Roscher, Christiane; Baade, Jussi; Barnard, Romain L; Bessler, Holger; Buchmann, Nina; Ebeling, Anne; Eisenhauer, Nico; Engels, Christof; Fergus, Alexander J F; Gleixner, Gerd; Gubsch, Marlén; Halle, Stefan; Klein, Alexandra-Maria; Kertscher, Ilona; Kuu, Annely; Lange, Markus; Le Roux, Xavier; Meyer, Sebastian Tobias; Migunova, Varvara D; Milcu, Alexandru; Niklaus, Pascal A; Oelmann, Yvonne; Pasalic, Esther; Petermann, Jana S; Poly, Franck; Rottstock, Tanja; Sabais, Alexander C W; Scherber, Christoph; Scherer-Lorenzen, Michael; Scheu, Stefan; Steinbeiss, Sibylle; Schwichtenberg, Guido; Temperton, Vicky; Tscharntke, Teja; Voigt, Winfried; Wilcke, Wolfgang; Wirth, Christian; Schmid, Bernhard (2013): A comparison of the strength of biodiversity effects across multiple functions. Oecologia, 173(1), 223-237, https://doi.org/10.1007/s00442-012-2589-0
Oelmann, Yvonne; Vogel, Anja; Wegener, Florian; Weigelt, Alexandra; Scherer-Lorenzen, Michael (2015): Management Intensity Modifies Plant Diversity Effects on N Yield and Mineral N in Soil. Soil Science Society of America Journal, 79(2), 559, https://doi.org/10.2136/sssaj2014.05.0191
Vogel, Anja; Eisenhauer, Nico; Weigelt, Alexandra; Scherer-Lorenzen, Michael (2013): Plant diversity does not buffer drought effects on early-stage litter mass loss rates and microbial properties. Global Change Biology, 19(9), 2795-2803, https://doi.org/10.1111/gcb.12225
Vogel, Anja; Fester, Thoman; Eisenhauer, Nico; Scherer-Lorenzen, Michael; Schmid, Bernhard; Weisser, Wolfgang W; Weigelt, Alexandra (2013): Separating Drought Effects from Roof Artifacts on Ecosystem Processes in a Grassland Drought Experiment. PLoS ONE, 8(8), e70997, https://doi.org/10.1371/journal.pone.0070997
Vogel, Anja; Scherer-Lorenzen, Michael; Weigelt, Alexandra (2012): Grassland Resistance and Resilience after Drought Depends on Management Intensity and Species Richness. PLoS ONE, 7(5), e36992, https://doi.org/10.1371/journal.pone.0036992
Further details:
Roscher, Christiane; Schumacher, Jens; Baade, Jussi; Wilcken, Sara; Gleixner, Gerd; Weisser, Wolfgang W; Schmid, Bernhard; Schulze, Ernst-Detlef (2004): The role of biodiversity for element cycling and trophic interactions: an experimental approach in a grassland community. Basic and Applied Ecology, 5(2), 107-121, https://doi.org/10.1078/1439-1791-00216
Weisser, Wolfgang W; Roscher, Christiane; Meyer, Sebastian Tobias; Ebeling, Anne; Luo, Guangjuan; Allan, Erik; Bessler, Holger; Barnard, Romain L; Buchmann, Nina; Buscot, Francois; Engels, Christof; Fischer, Christine; Fischer, Markus; Gessler, Arthur; Gleixner, Gerd; Halle, Stefan; Hildebrandt, Anke; Hillebrand, Helmut; de Kroon, Hans; Lange, Markus; Leimer, Sophia; Le Roux, Xavier; Milcu, Alexandru; Mommer, Liesje; Niklaus, Pascal A; Oelmann, Yvonne; Proulx, J F; Roy, Jacques; Scherber, Christoph; Scherer-Lorenzen, Michael; Scheu, Stefan; Tscharntke, Teja; Wachendorf, Michael; Wagg, Cameron; Weigelt, Alexandra; Wilcke, Wolfgang; Wirth, Christian; Schulze, Ernst-Detlef; Schmid, Bernhard; Eisenhauer, Nico (2017): Biodiversity effects on ecosystem functioning in a 15-year grassland experiment: Patterns, mechanisms, and open questions. Basic and Applied Ecology, 23, 1-73, https://doi.org/10.1016/j.baae.2017.06.002
Project(s):
Coverage:
Latitude: 50.946100 * Longitude: 11.611300
Date/Time Start: 2009-01-01T00:00:00 * Date/Time End: 2009-12-31T00:00:00
Minimum HEIGHT above ground: 0.5 m * Maximum HEIGHT above ground: 0.5 m
Event(s):
JenExp_2009 (Jena Experiment 2009) * Latitude: 50.946100 * Longitude: 11.611300 * Date/Time Start: 2009-01-01T00:00:00 * Date/Time End: 2009-12-31T00:00:00 * Location: Thuringia, Germany * Method/Device: Experiment (EXP)
Comment:
The main experiment on the field site of the Jena Experiment comprises a split-plot design in which additional treatments (e.g. no weeding allowing for invasion of other species, or application of fertilizer) have been applied to subplots along the outer margin of the plots (see Treatment description in the section "further details"). While in this dataset only data from the core area (mown and weeding of all none-sown species twice a year, no additional treatments) is reported, all potential treatments are listed as the first parameters in the data file to guarantee compatibility with other datasets that include different treatments.
There are two types of missing values contained in the dataset. Empty cells represent missing values that result from the design of the experiment when the respective value does not occur and could thus not be measured. For example, in the columns of species-specific biomass cells are left blank, when the species was not sown into the respective plot. Missing values that resulted from methodological problems, sampling errors, or lost samples/data are marked with "-9999".
This dataset is part of a collection of element concentrations in plants in the Jena Experiment. Similar data from other experiments (e.g. Main Experiment, Dominance Experiment; see details above), other years, or other methods quantifying related data might be available (https://doi.pangaea.de/10.1594/PANGAEA.887388).
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
1Experimental plotExperimental plotDetailed explanations of plots and the plant diversity gradient are provided in the section "further details".
2Height aboveground, minimumHeight abovegr minmSoil surface
3Height aboveground, maximumHeight abovegr maxmrough approximation of maximum vegetation height
4HEIGHT above groundHeightmGeocode – Average of min and max value
5Date/time endDate/time endof sampling campaign
6Date/time startDate/time startof sampling campaign
7Treatment: mowingT:mowDetailed explanations of treatments are provided in the section "further details".
8Treatment: weedingT:weedDetailed explanations of treatments are provided in the section "further details".
9Treatment: weeding historyT:weed histDetailed explanations of treatments are provided in the section "further details".
10Treatment: seed additionT:seed addDetailed explanations of treatments are provided in the section "further details".
11Treatment: fertilizingT:fertDetailed explanations of treatments are provided in the section "further details".
12Treatment: droughtT:droughtDetailed explanations of treatments are provided in the section "further details".
13Treatment: aboveground: pesticideT:abovegr pestDetailed explanations of treatments are provided in the section "further details".
14Treatment: below pesticideT:below pestDetailed explanations of treatments are provided in the section "further details".
15Treatment: molluscideT:mollusDetailed explanations of treatments are provided in the section "further details".
16Treatment: nematicideT:nemaDetailed explanations of treatments are provided in the section "further details".
17Treatment: eartworm exclosureT:eartworm exclDetailed explanations of treatments are provided in the section "further details".
18Treatment: phytometersT:phytoDetailed explanations of treatments are provided in the section "further details".
19Treatment: specialT:specialDetailed explanations of treatments are provided in the section "further details".
20CarbonC%
21Nitrogen, totalTN%
Size:
14400 data points

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