Challenges in the early ontogeny of a mutualistic plant: Resource availability and plant defense in juvenile Cecropia ant-plants
Data files
Feb 20, 2025 version files 56.60 KB
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Biomass_greenhouse_Jan2023.csv
8.79 KB
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README.md
6.42 KB
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SeasonSums_21jun24.csv
41.39 KB
Abstract
Mutualistic species often must survive periods of their development without their mutualist partner, but we lack a clear understanding of the ecological mechanisms that maintain mutualisms despite these gaps in partnership. In ant-plant protection mutualisms, plants house ant colonies that deter herbivores. Yet juvenile ant-plants often lack symbiotic ant colonies and must withstand herbivory pressure until they are colonized by ants. A sapling's ability to host ants or to employ alternative direct defenses, such as leaf secondary metabolites, may depend on access to key resources, like light, soil nutrients, and water. Alternatively, juvenile ant-plants may receive biotic protection at little resource cost from generalist predators, such as spiders. We examined whether juvenile Cecropia trees maintained leaf defenses, and whether sapling ant and chemical defenses were associated with the sapling's access to resources. We surveyed three species of naturally occurring juvenile Cecropia trees across a rainfall gradient in northwest Costa Rica. We found that both ant defense and chemical defense were regulated by the availability of light, soil fertility, and water in Cecropia saplings. Rather than trade-off, larger saplings and saplings with more resources were more likely to invest in both defense strategies, whereas smaller saplings and saplings with less resources appeared to have little leaf defense. We also found that although spiders were common on such resource-poor, undefended saplings, spiders did not reduce herbivory. This study highlights the importance of resource availability in determining the performance of ant-plants during early ontogenetic stages.
This README file was generated on 2025-02-19 by Stephanie Coronado.
GENERAL INFORMATION
Title of Dataset: Challenges in the early ontogeny of a mutualistic plant: resource availability and plant defense in juvenile Cecropia ant-plants
Author Information:
A. Principal Investigator Contact Information
Name: EG Pringle
Institution: University of Nevada, Reno
Address: 1664 N Virginia St, Reno, NV 89557
Email: epringle@unr.edu
B. Associate or Co-investigator Contact Information
Name: SM Coronado
Institution: University of Nevada, Reno
Address: 1664 N Virginia St, Reno, NV 89557
Email: steph.m.coronado@gmail.com
Year (MM/YYYY) and geographic location of data collection: 06/2019 - 08/2019 and 06/2022 - 01/2023 in Guanacaste, Costa Rica
Funding sources that supported the collection of the data:
University of Nevada, Reno
Fulbright US Student Program
SHARING/ACCESS INFORMATION
Licenses/restrictions placed on the data: None
Annual climatic water deficit data was derived from:
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Northwest Knowledge Network. (2017). TerraClimate database.
Available online at https://www.climatologylab.org/terraclimate.htmlRecommended citation for this dataset:
Abatzoglou, J.T., S.Z. Dobrowski, S. A. Parks, and K. C. Hegewisch. 2018. TerraClimate, a high-resolution global dataset of
Monthly climate and climatic water balance from 1958-2015. Sci Data 5: 170191.
DATA & FILE OVERVIEW
File List:
- SeasonSums_21jun24.csv has:
- Caterpillar, ant and spider abundances observed per tree, over the course of the survey
- Cecropia species, site location, height, canopy area estimates, light availability, and herbivory estimates
- Leaf traits, including total phenolics
- Climatic water deficit and soil fertility index at the site level
- Biomass_ greenhouse _Jan2023.csv has:
- Data from the phytometer soil fertility experiment, including-
- Sapling height, and dry leaf, stem and root weight
DATA-SPECIFIC INFORMATION FOR:
SeasonSums_21jun24.csv
- Number of variables: 48
- Number of cases/rows: 246
- Variable list:
- Tree_code = categorical, unique identified for each tree
- Site = categorical, one of six sites in Guanacaste, Costa Rica.
- San Gerardo: 10.876, -85.390
- La Perla: 10.764, -85.384
- Pitilla: 10.986, -85.420
- Caribe: 10.899, -85.274
- Maritza: 10.967, -85.607
- Santa Rosa: 10.833, -85.612
- Species = categorical, one of three Cecropia tree species
- C. peltata
- C. obtusifolia
- C. insignis
- Ants = categorical, yes or no,
- Y: colonized by Azteca
- N: uncolonized
- Lep_total = total caterpillar count per tree
- Spiders= total spider count per tree
- Columns [7]-[16] = individual caterpillar species counts. Column name is species identity, when known
- Mean_activty = mean number of ants counted patrolling/min per tree
- Height = tree height, cm
- BD = tree basal diameter, cm
- Leaves = leaf count per tree
- CanopyEst = [Leaves] * [BD], cm^2
- Lep_density = [ Lep _total ] / [BD]
- Spid_density = [Spiders] / [BD]
- Perc_Herbiv = percent estimated herbivory loss per tree
- TotPhen = total leaf phenolics, in total peak absorbance units
- Light = discrete ordinal, canopy cover index 1-5
- SoilFertIndex = mean dried total plant biomass grown with site soil composites, in grams
- SiteCWD = mean yearly climatic water deficit per site, using data from years 2009-2019, in mm
- Columns [28]-[45] = individual spider counts at the family level. Column name is spider family identity, when known
- Trichomes = stelae trichome abundance/ 0.79 cm^2
- SLA = specific leaf area per tree
- Leaf_force = leaf toughness per tree, kN
- Missing data codes = NA
DATA-SPECIFIC INFORMATION FOR:
Biomass_ greenhouse_Jan2023.csv
- Number of variables: 14
- Number of cases/rows: 110
- Variable list:
- Date = date seedling was transplanted into soil treatment
- PlantID = categorical, unique number assigned to each seedling
- Species = categorical, either C. obtusifolia or C. peltata
- SoilSource = categorical, one of six sites from which the seedling's soil was collected.
- GR: San Gerardo (10.876,-85.390)
- PR: La Perla (10.764, -85.384)
- PT: Pitilla (10.986, -85.420)
- CB: Caribe (10.899, -85.274)
- MR: Maritza (10.967, -85.607)
- SR: Santa Rosa (10.833, -85.612)
- Height_cm = final sapling height, measured from just above the soil to the top apical meristem
- Leaf_area = Estimated total leaf area. Total leaf number multiplied by the average length * width of three randomly chosen leaves, in cm^2
- Leaf_wt = total dry weight of leaf tissue, in grams
- Stem_wt = total dry weight of stem tissue, in g
- Root_wt = total dry weight of root tissue, in g
- RootShoot = Root-to-shoot ratio. [[Root _wt] / ([Leaf _wt] + [ Stem _ wt])
- LWR = Leaf-weight ratio. [Leaf _wt] / ([Root _wt] + [Leaf _wt] + [ Stem _ wt])
- SWR = Stem-weight ratio. [Stem _wt] / ([Root _wt] + [Leaf _wt] + [ Stem _ wt])
- SLA = Specific leaf area. Average leaf area / dry leaf mass, in cm^2/g
- TotBiomass = [Root _wt] + [Leaf _wt] + [ Stem _ wt]
- Missing data codes= NA
SUPPORTING SOFTWARE
File name: "Biotropica24_code.R"
File description: R-code from which the statistics and figures included in the manuscript and supplementary materials can be derived.
Data files utilized: "SeasonSums_21jun24.csv", "Biomass_ greenhouse_Jan2023.csv"
Outline of contents:
- Path model (Figure 1)
- Characterizing environmental variables (Table S1)
- Total phenolics glm (Table S2)
- Phenolics x light x soil fertility partial plot (Figure 2)
- Phenolics x cwd partial plot (Figure S3)
- Phenolics x species partial plot (Figure S6)
- Ant patrol activity glm (Table S2)
- Ant activity x tree size x light partial plot (Figure 2)
- Ant activity x cwd partial plot (Figure S4)
- Ant activity x soil fertility partial plot (Figure S4)
- Caterpillar density glm (Table S3)
- Herbivory glm (Table S3)
- Leaf traits and herbivory (Figure S7)
- Spider density glm (Table S3)
- Spider denisty, ant activity and herbivory (Figure 3)
Required R packages:
- tidyverse
- glmmTMB
- car
- DHARMa
- lmtest
- mgcv
- MuMIn
- visreg
- lme4
- lavaan
- ggstatsplot
- lattice
- equatiomatic
