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The effect of seaweed fertilisation on sulfur isotope ratios (δ34S) and grain size in barley

Implications for agronomy and archaeological research

Bibliographic Data

ID21263647
AuthorsMagdalena Blanz (0000-0003-0195-6744, University of Vienna, corresponding author), D R Gröcke (0000-0003-2296-7530, Durham University, corresponding author), Peter Martin (0000-0003-4638-0638, University of the Highlands and Islands), Mike J Church (0000-0001-7908-7812, Durham University)
Year2024
Volume3
Publication date2024-11-25
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueFrontiers in Environmental Archaeology (JOURNAL)
Journal identifiersISSN: 2813-432X • E-ISSN: 2813-432X
PublisherFrontiers Media SA (PUBLISHER • CH)
DOI10.3389/fearc.2024.1465082
OpenAlexW4404670731
LanguageEN
Citations received3
References cited50

Introduction Stable sulfur isotope ratios (δ 34 S) in bone collagen are often employed to study the consumption of marine and freshwater fish, wetland grazing, marine foraging patterns, and the possible geographic origins of food sources. However, a recent small-scale crop experiment showed that biofertilisation with seaweed can elevate δ 34 S in Celtic beans by ca. 10 ‰. Consumption of this food could erroneously suggest a marine diet and therefore has important implications for the reconstruction of past diets and dietary origins. However, limited research has so far been undertaken on cereals. Methods To address this issue, a large-scale field trial was undertaken on the Orkney Islands, whereby bere barley (a Scottish landrace, Hordeum vulgare L.) was biofertilised with seaweed at different dosages (25 t/ha, 50 t/ha), with a mineral NPK fertiliser, and left unfertilised as a control. Results The total barley biomass yield was higher and barley grains were enlarged following all fertilisation treatments compared to the control barley. Barley grain and straw from seaweed-fertilised crops had more elevated δ 34 S values by around 2–3 ‰ compared to unfertilised plants, while the NPK-fertilised grains and plants had δ 34 S values 1 ‰ lower. Discussion These results confirm previous hypotheses that seaweed fertilisation can elevate cereal δ 34 S values. The comparatively small δ 34 S difference between control and seaweed fertilised crops in this field trial is likely due to background elevated δ 34 S values in the soil (+12.7 ‰), which in turn may be due to long-term exposure to oceanic-influenced rain and sea spray and/or possible historical application of seaweed, or the underlying bedrock composition. The results of this study show that seaweed fertilisation can increase barley grain sizes and δ 34 S values, and thus should be considered when reconstructing land management and dietary practices in the archaeological record

Agronomy · Biology · Fertilisation · Fishery · Metallurgy · Quartz · Sulfur · δ34S · Archaeology and ancient environmental studies · Environmental Science · Geology and Paleoclimatology Research · Isotope Analysis in Ecology · Materials Science

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Unique citing works3
Citations per year3
Citation span2025 - 2026 (2)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 3
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