This dataset includes nitrogen (N) dynamics for 12 southern African
savanna tree species (six encroachers, six non-encroachers) under
manipulated atmospheric CO2 (~398 ppm ambient, ~545 ppm elevated) and soil
moisture (well-watered vs water-limited) in open-topped chambers. Measured
traits include nodule mass fraction, leaf and stem δ15N, and percentage of
N derived from N2-fixation (% Ndfa). The data capture both short- and
long-term N allocation strategies and enable exploration of how CO2 and
water treatments affect N dynamics across encroaching and non-encroaching
species. The dataset comprises 12 southern African savanna tree species
(nine Vachellia, three Senegalia), with six encroachers and six
non-encroachers. All species are facultative N2-fixers. Seeds were
obtained from SilverHill Seeds (Cape Town, South Africa), heat-treated at
80 °C for 10 minutes to break dormancy, germinated in November 2021, and
transplanted into individual cylindrical pots (20 cm diameter × 75 cm
height) containing sieved savanna soil from Fort Beaufort, Eastern Cape,
South Africa. Plants were grown in 16 open-top chambers
at Rhodes University Elevated CO2 Facility (Makhanda, South Africa) under
ambient (
398 ppm) or elevated (545 ppm) CO2~. Soil
moisture treatments included well-watered (daily irrigation to ~0.30
volumetric soil moisture) and water-limited (ambient rainfall, ~0.24 SMC).
Treatments were fully crossed with approximately five replicates per
species per treatment. Plants were destructively
harvested at 11 months. Above- and belowground biomass were separated,
oven-dried, and weighed. Nodules were collected, dried, and weighed. Leaf
and stem tissues were milled and analyzed for δ
15N
using isotope ratio mass spectrometry. Percent nitrogen derived from
fixation (% Ndfa) was calculated using shoot δ
15N
and reference non-nodulating plants. Soil δ
15N was
measured from 2 g topsoil samples collected from 30 pots.
N-dynamic traits in the dataset include nodule mass fraction
(NMF), leaf δ
15N, stem δ
15N,
and % Ndfa. Phylogenetic relationships among species were incorporated
using a time-calibrated tree based on plastid markers (trnL-F, matK,
trnH-psbA). Phylogenetic signal (Pagel’s λ) and bivariate trait
relationships are provided to account for shared evolutionary history
(file = dated.tree) # Data from: N₂-fixation is linked to the ability to encroach in African
savanna trees Dataset DOI:
[10.5061/dryad.gqnk98t2f](
doi.org) ##
Description of the data and file structure The dataset contains
measurements of nitrogen (N) dynamics for 12 southern African savanna tree
species (six encroachers, six non-encroachers) grown under ambient (\~398
ppm) and elevated (545 ppm) CO~2~, and well-watered or water-limited soil
conditions. Recorded traits include nodule mass fraction (NMF), leaf
δ^15^N, stem δ^15^N, and percent nitrogen derived from fixation (% Ndfa).
The dataset also includes metadata on species identity, encroacher status,
CO~2~ and soil moisture treatments, replicate identifiers, and
phylogenetic information. Soil δ^15^N measurements are provided for
reference. These data allow comparison of short- and long-term N
allocation strategies across species and treatments and can be used to
explore the role of N2-fixation in plant responses to elevated CO~2~ and
variable water availability. ### Files and variables #### File:
nodule_biomass_15N.xlsx **Description:** N-dynamic trait data #####
Variables * ID number — Unique plant identifier — Units: — * OTC —
Open-top chamber number — Units: Categorical (1-16) * Species — Species
name — Units: Categorical (*Vachellia_sieberiana_var_woodii;
Vachellia_robusta_subsp_clavigera; Vachellia_karroo; Vachellia_nilotica;
Vachellia_swazica; Vachellia_grandicornuta; Vachellia_exuvialis;
Vachellia_tortilis; Vachellia_erioloba*) * Encroacher status — Current
encroacher classification — Units: Categorical (Encroacher;
Non-encroacher) * CO2 treatment — CO~2~ treatment applied — Units:
Categorical (ambient; elevated) * Soil moisture treatment — Soil moisture
treatment applied — Units: Categorical (well-watered; water-limited) *
Leaf Total N % — Total nitrogen content in leaves — Units: % * Leaf Delta
15N vs Air — Leaf δ^15^N relative to atmospheric N — Units: ‰ * Stem Total
N % — Total nitrogen content in stem — Units: % * Stem Delta 15N vs Air —
Stem δ^15^N relative to atmospheric N — Units: ‰ * Stem Total C % — Total
carbon content in stem — Units: % * Total coarse root mass (g) — Mass of
coarse roots — Units: g * Total fine root mass (g) — Mass of fine roots —
Units: g * Total belowground biomass (g) — Total root biomass (coarse +
fine) — Units: g * Total nodule mass (g) — Mass of N2-fixing nodules —
Units: g * Total belowground mass (g) — Total belowground biomass
including nodules — Units: g * Nodule mass fraction (%) — Fraction of
total belowground biomass made up of nodules — Units: % * Total coarse
root mass (g) — Mass of coarse roots — Units: g * Total fine root mass (g)
— Mass of fine roots — Units: g * Total belowground biomass (g) — Total
root biomass (coarse + fine) — Units: g * Total nodule mass (g) — Mass of
N2-fixing nodules — Units: g * Total belowground mass (g) — Total
belowground biomass including nodules — Units: g * Nodule mass fraction
(%) — Fraction of total belowground biomass made up of nodules — Units: %
#### File: Dated.tree **Description:** Phlogenetic Tree data #####
Variables * ID number — Unique node/branch identifier — Units: — * Taxon —
Taxon name — Units: Categorical (Desmanthus_bicornutus; Senegalia_burkei;
Senegalia_caffra; Senegalia_nigrescens; Vachellia_erioloba;
Vachellia_exuvialis; Vachellia_grandicornuta; Vachellia_karroo;
Vachellia_nilotica; Vachellia_robusta_subsp_clavigera;
Vachellia_sieberiana_var_woodii; Vachellia_swazica; Vachellia_tortilis) *
Height — Node height — Units: substitutions per site (or millions of years
if scaled) * Height 95% HPD — 95% highest posterior density interval for
node height — Units: substitutions per site * Height median — Median node
height — Units: substitutions per site * Height range — Range of sampled
node heights — Units: substitutions per site * Branch length — Branch
length — Units: substitutions per site * Branch length 95% HPD — 95%
highest posterior density interval for branch length — Units:
substitutions per site * Branch length median — Median branch length —
Units: substitutions per site * Branch length range — Range of sampled
branch lengths — Units: substitutions per site * Rate — Substitution rate
along branch — Units: substitutions per site per unit time * Rate 95% HPD
— 95% highest posterior density interval for substitution rate — Units:
substitutions per site per unit time * Rate median — Median substitution
rate — Units: substitutions per site per unit time * Rate range — Range of
sampled substitution rates — Units: substitutions per site per unit time *
Posterior probability — Posterior probability of node support — Units: —
## Code/software The dataset includes **Excel (.xlsx)** files and a
**phylogenetic tree (.tree)** file. All files are provided in open or
widely supported formats, and no proprietary software is required. ####
**Excel files (.xlsx)** These can be opened using any of the following
free or open-source programs: * **LibreOffice Calc** (free, open source) *
**Google Sheets** (free, web-based) * **R** (with the `readxl` package) —
free and open source * **Python** (with `pandas` and `openpyxl`) — free
and open source They are also compatible with Microsoft Excel, though not
required. #### **Phylogenetic tree file (.tree)** The `.tree` file is in
standard **Newick** format and can be opened or analysed with: * **R**
(packages: `ape`, `phytools`) * **FigTree** (free tree viewer) * **iTOL**
(Interactive Tree of Life; free for non-commercial use) * Any
Newick-compatible tree viewer or text editor