Data and analysis scripts for: Prolonged soybean absence in the field selects for rhizobia that accumulate more polyhydroxybutyrate during symbiosis
Resources
25 resources available
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README.md
MD -
analysisOfPHBacrossRotationTreatments.html
HTML -
appendix_nodcount.pdf
PDF -
appendix_chl.pdf
PDF -
appendix_nodmass.pdf
PDF -
appendix_plantMetricsByRotation.pdf
PDF -
appendix_shootmass.pdf
PDF -
Figure1_distributionOfPHB.pdf
PDF -
Figure3_hostpresResults.tiff
TIFF -
FigureS2_verifyingPHB.tiff
TIFF -
Figure2_hostabResults.tiff
TIFF -
plantgrowthAndPHB_appendix.pdf
PDF -
supplement_nodcountAndShootDWbygroupSROC.tiff
TIFF -
Supplement_ResultsForAllRotations.tiff
TIFF -
analysisOfPHBacrossRotationTreatments.R
R -
Figure1_distributionOfPHB.R
R -
Figures2and3effectsOfHostAbsenceAndPresence.R
R -
plantGrowthAndNodulation_Appendices.R
R -
setUpDataAndContrasts.R
R -
verifyingPHBWithSplitRootData.R
R -
editedPHBData_WREsplitroot1.RDATA
RDATA -
isolateCodesForFreezerWRE.csv
CSV -
phbplusplantdata_forDRUM.RDATA
RDATA -
modelOutputForPlots.RData
RDATA -
brmsMods20220313.RData
RDATA
Complete Metadata
| @type | dcat:Dataset |
|---|---|
| accessLevel | public |
| accrualPeriodicity | irregular |
| bureauCode |
[
"005:18"
]
|
| contactPoint |
{
"fn": "Muller, Katherine E.",
"hasEmail": "mailto:katherine.muller2010@gmail.com"
}
|
| description | <p dir="ltr">During symbiosis, C that rhizobia respire to power N fixation can be stored as polyhydroxybutyrate (PHB), shown to support rhizobia survival under laboratory starvation. We collected soil in 2015 from four replicate plots per treatment in two long-term experiments at Waseca, Minnesota. Treatments differed in the intervals between soybean (<i>Glycine max</i> (L.) Merr.) hosts. We measured PHB accumulation in eight nodules per plant from four soybean (cv. ‘MN0095’) trap plants per soil sample. Trap plants were arranged in a greenhouse, common-garden experiment, and PHB accumulation was measured using flow cytometry. Treatments sampled after long intervals without soybean (greater than two years) showed a greater relative abundance of high-PHB strains. Treatments sampled after the first year of soybean following five years of a non-host crop showed a decreased relative abundance of high-PHB strains, compared to treatments sampled after long intervals without soybean. The latter result is consistent with the hypothesis (not tested directly here) that some high-PHB strains were “sanctioned” by plants as less-beneficial. Our results suggest that rhizobia strains with the tendency to allocate more C to N fixation at the expense of PHB accumulation may be less likely to persist where soybean is grown infrequently or where soil conditions make PHB particularly valuable. However, with typical two-year rotations in Minnesota, differences in PHB storage are unlikely to have a major effect on the relative survival of strains.</p><p dir="ltr">See README.md for a detailed description of data files and scripts. </p> |
| distribution |
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|
| identifier | 10.15482/USDA.ADC/25521448.v1 |
| keyword |
[
"Long-Term Agroecosystem Research Network",
"Polyhydroxybutyrate (PHB)",
"soybean (Glycine max L. Merr.)",
"symbiotic nitrogen fixation (SNF)"
]
|
| license | https://creativecommons.org/licenses/by/4.0/ |
| modified | 2025-11-22 |
| programCode |
[
"005:040"
]
|
| publisher |
{
"name": "Agricultural Research Service",
"@type": "org:Organization"
}
|
| spatial |
"{"type": "Point", "coordinates": [-93.528657, 44.069167]}"
|
| temporal | 1982-05-01/2016-05-01 |
| title | Data and analysis scripts for: Prolonged soybean absence in the field selects for rhizobia that accumulate more polyhydroxybutyrate during symbiosis |