Last updated: 2021-04-09
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Knit directory: RainDrop_biodiversity/
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This research site is the accompaniment of analyses on the impact of drought on biodiversity in a temperate calcareous grassland. We report on findings of the RainDrop experiment in the Upper Seeds meadow of the Wytham site in Oxford, UK. In this introduction, we give a brief description of the site and the experimental design. Then, each additional page of the site walks through analyses on the following topics:
Session information, including packages and versions, can be found at the bottom of each page.
RainDrop is adjacent to the long term monitoring project at Wytham woods near Oxford, found at 51.771\(^\circ\) North and -1.332\(^\circ\) East (images from Google Earth).
The site was gifted to the University of Oxford in 1947, after which various experiments were run on the site. In the late 1970s, there was an attempt to cultivate cereals on the grassland, which was unsuccessful. In summer 1979 cultivation stopped and monitoring of the site began. The meadow is a calcareous grassland, and can be described as a recovering grassland after the cultivation. More specifically, the top of the hill has fossilised coral bedrock (RainDrop experiment), which then moves down in to a conventional grassland and then and floodplain meadow below. The site is home over 100 species, which are mostly grasses. Due to its recovery state it also has a lot of pioneer species. The site is managed through cutting twice a year in June/October, and biomass is removed after cutting.
The RainDrop experiment began in Summer 2016 and the key experiment described here is part of the Drought-Net global network, for which information can be found here. The aim of this coordinated network of experiments is to predict ecological responses to climate change, and specifically how different ecosystems will respond to drought.
The experimental design is a fully randomised block design. At RainDrop, there were 8 initial blocks, of which 5 were chosen for reduced topographical diversity.
Each block has 8 experimental plots of 5m x 5m, which have automated irrigation control systems (large rain shelters) for the purpose of this experiment. Below you can see the structure of the rainfall shelters.
There are four rainfall treatments that are randomly located in each block:
The experiments are turned on in the early spring, and run until the end of the growing season in October, after which all key electrical equipment is removed. The shelters remain year round, but remain in the same orientation as the procedural control.
Biodiversity is measured in two key ways at the peak of the growing season (June) and the end of the growing season (September), each occurring before the management cutting of the site:
sessionInfo()
R version 4.0.5 (2021-03-31)
Platform: x86_64-w64-mingw32/x64 (64-bit)
Running under: Windows 10 x64 (build 19042)
Matrix products: default
locale:
[1] LC_COLLATE=English_United Kingdom.1252
[2] LC_CTYPE=English_United Kingdom.1252
[3] LC_MONETARY=English_United Kingdom.1252
[4] LC_NUMERIC=C
[5] LC_TIME=English_United Kingdom.1252
attached base packages:
[1] stats graphics grDevices utils datasets methods base
other attached packages:
[1] workflowr_1.6.2
loaded via a namespace (and not attached):
[1] Rcpp_1.0.6 whisker_0.4 knitr_1.31 magrittr_2.0.1
[5] R6_2.5.0 rlang_0.4.10 fansi_0.4.2 highr_0.8
[9] stringr_1.4.0 tools_4.0.5 xfun_0.22 utf8_1.2.1
[13] git2r_0.28.0 jquerylib_0.1.3 htmltools_0.5.1.1 ellipsis_0.3.1
[17] rprojroot_2.0.2 yaml_2.2.1 digest_0.6.27 tibble_3.1.0
[21] lifecycle_1.0.0 crayon_1.4.1 later_1.1.0.1 sass_0.3.1
[25] vctrs_0.3.7 promises_1.2.0.1 fs_1.5.0 glue_1.4.2
[29] evaluate_0.14 rmarkdown_2.7 stringi_1.5.3 bslib_0.2.4
[33] compiler_4.0.5 pillar_1.5.1 jsonlite_1.7.2 httpuv_1.5.5
[37] pkgconfig_2.0.3