Well supplied in life, set aside in death: A multi-isotope study of Justinian plague victims from Saint-Doulchard (France, 7th-8th centuries AD)

. 2024 Sep ; 185 (1) : e25002. [epub] 20240721

Jazyk angličtina Země Spojené státy americké Médium print-electronic

Typ dokumentu časopisecké články, historické články

Perzistentní odkaz   https://www.medvik.cz/link/pmid39034501

Grantová podpora
PSCHEET project; ANR-19-CE27-0012 Agence Nationale de la Recherche
DKRVO 2019-2023/7.I.e 00023272 Ministerstvo Kultury
DKRVO 2024-2028/7.I.a 00023272 Ministerstvo Kultury

OBJECTIVES: Justinian plague and its subsequent outbreaks were major events influencing Early Medieval Europe. One of the affected communities was the population of Saint-Doulchard in France, where plague victim burials were concentrated in a cemetery enclosure ditch. This study aimed to obtain more information about their life-histories using the tools of isotope analysis. MATERIALS AND METHODS: Dietary analysis using carbon and nitrogen isotopes was conducted on 97 individuals buried at Le Pressoir in Saint-Doulchard, with 36 of those originating from the enclosure ditch. This sample set includes all individuals analyzed for plague DNA in a previous study. Mobility analysis using strontium isotope analysis supplements the dietary study, with 47 analyzed humans. The results are supported by a reference sample set of 31 animal specimens for dietary analysis and 9 for mobility analysis. RESULTS: The dietary analysis results showed significantly different dietary behavior in individuals from the ditch burials, with better access to higher quality foods richer in animal protein. 87Sr/86Sr ratios are similar for both studied groups and indicate a shared or similar area of origin. DISCUSSION: The results suggest that the ditch burials contain an urban population from the nearby city of Bourges, which overall had a better diet than the rural population from Saint-Doulchard. It is implied that city's population might have been subjected to high mortality rates during the plague outbreak(s), which led to their interment in nearby rural cemeteries.

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Aguraiuja‐Lätti, Ü., & Lõugas, L. (2019). Stable isotope evidence for medieval diet in urban and rural northern Estonia. Journal of Archaeological Science: Reports, 26, 101901. https://doi.org/10.1016/j.jasrep.2019.101901

Ambrose, S. H. (1990). Preparation and characterization of bone and tooth collagen for isotopic analysis. Journal of Archaeological Science, 17, 431–451. https://doi.org/10.1016/0305-4403(90)90007-R

Beaumont, J., Geber, J., Powers, N., Wilson, A., Lee‐Thorp, J., & Montgomery, J. (2013). Victims and survivors: Stable isotopes used to identify migrants from the great Irish famine to 19th century London. American Journal of Physical Anthropology, 150(1), 87–98. https://doi.org/10.1002/ajpa.24054

Beaumont, J., & Montgomery, J. (2016). The great Irish famine: Identifying starvation in the tissues of victims using stable isotope analysis of bone and incremental dentine collagen. PLoS One, 11(8), e0160065. https://doi.org/10.1371/journal.pone.0160065

Bentley, R. A. (2006). Strontium isotopes from the earth to the archaeological skeleton: A review. Journal of Archaeological Method and Theory, 13(3), 135–187. https://doi.org/10.1007/s10816-006-9009-x

Bentley, R. A., Price, T. D., & Stephan, E. (2004). Determining the ‘local’ 87Sr/86Sr range for archaeological skeletons: A case study from Neolithic Europe. Journal of Archaeological Science, 31(4), 365–375. https://doi.org/10.1016/j.jas.2003.09.003

Biraben, J. N., & Le Goff, J. (1969). La peste dans de Haut Moyen Âge. Annales, 24(6), 1484–1510.

Błaszczyk, D., Beaumont, J., Krzyszowski, A., Poliński, D., Drozd‐Lipińska, A., Wrzesińska, A., & Wrzesiński, J. (2021). Social status and diet. Reconstruction of diet of individuals buried in some early medieval chamber graves from Poland by carbon and nitrogen stable isotopes analysis. Journal of Archaeological Science: Reports, 38, 103103. https://doi.org/10.1016/j.jasrep.2021.103103

Bocherens, H. (1992). Biogéochimie isotopique (13C, 15N, 18O) et paléontologie des vertébrés: applications à l'étude des réseaux trophiques révolus et des paléoenvironnements. Doctoral dissertation. University of Paris 6.

Bocherens, H., & Drucker, D. (2003). Trophic level isotopic enrichment of carbon and nitrogen in bone collagen: Case studies from recent and ancient terrestrial ecosystems. International Journal of Osteoarchaeology, 13(1–2), 46–53. https://doi.org/10.1002/oa.662

Bogaard, A., Heaton, T. H., Poulton, P., & Merbach, I. (2007). The impact of manuring on nitrogen isotope ratios in cereals: Archaeological implications for reconstruction of diet and crop management practices. Journal of Archaeological Science, 34(3), 335–343. https://doi.org/10.1016/j.jas.2006.04.009

Brůžek, J. (2002). A method for visual determination of sex, using the human hip bone. American Journal of Physical Anthropology, 117(2), 157–168. https://doi.org/10.1002/ajpa.10012

Brůžek, J., Santos, F., Dutailly, B., Murail, P., & Cunha, E. (2017). Validation and reliability of the sex estimation of the human os coxae using freely available DSP2 software for bioarchaeology and forensic anthropology. American Journal of Physical Anthropology, 164(2), 440–449. https://doi.org/10.1002/ajpa.23282

Castex, D. (2008). Identification and interpretation of historical cemeteries linked to epidemics. In D. Raoult & M. Drancourt (Eds.), Paleomicrobiology: Past human infections (pp. 23–48). Springer.

Castex, D., & Kacki, S. (2016). Demographic patterns distinctive of epidemic cemeteries in archaeological samples. Microbiology Spectrum, 4, 1–9. https://doi.org/10.1128/microbiolspec.PoH-0015-2015

Castex, D., & Kacki, S. (2022). ‘Bring out your dead’: Funerary and public health practices in times of epidemic disease. In C. J. Knüsel & E. M. J. Schotsmans (Eds.), The Routledge handbook of archaeothanatology (pp. 331–352). Routledge.

Coqueugniot, H., Weaver, T. D., & Houët, F. (2010). Brief communication: A probabilistic approach to age estimation from infracranial sequences of maturation. American Journal of Physical Anthropology, 142(4), 655–664. https://doi.org/10.1002/ajpa.21312

Czermak, A., Ledderose, A., Strott, N., Meier, T., & Grupe, G. (2006). Social structures and social relations—An archaeological and anthropological examination of three early medieval separate burial sites in Bavaria. Anthropologischer Anzeiger, 64(3), 297–310. http://www.jstor.org/stable/29542751

DeWitte, S. N., & Wood, J. W. (2008). Selectivity of black death mortality with respect to preexisting health. Proceedings of the National Academy of Sciences, 105(5), 1436–1441. https://doi.org/10.1073/pnas.0705460105

EDGI. (2022). Surface lithology (INSPIRE). EGDI 1:1M‐scale surface geologic unit, age and lithology. https://www.europe-geology.eu/scientific-themes/onshore-geology/geological-map/

Fahy, G. E., Deter, C., Pitfield, R., Miszkiewicz, J. J., & Mahoney, P. (2017). Bone deep: Variation in stable isotope ratios and histomorphometric measurements of bone remodelling within adult humans. Journal of Archaeological Science, 87, 10–16. https://doi.org/10.1016/j.jas.2017.09.009

Feldman, M., Harbeck, M., Keller, M., Spyrou, M. A., Rott, A., Trautmann, B., Scholz, H. C., Päffgen, B., Peters, J., McCormick, M., Bos, K., Herbig, A., & Krause, J. (2016). A high‐coverage Yersinia pestis genome from a sixth‐century Justinianic plague victim. Molecular Biology and Evolution, 33(11), 2911–2923. https://doi.org/10.1093/molbev/msw170

Fraser, R. A., Bogaard, A., Heaton, T., Charles, M., Jones, G., Christensen, B. T., Halstead, P., Merbach, I., Poulton, P. R., Sparkes, D., & Styring, A. K. (2011). Manuring and stable nitrogen isotope ratios in cereals and pulses: Towards a new archaeobotanical approach to the inference of land use and dietary practices. Journal of Archaeological Science, 38(10), 2790–2804. https://doi.org/10.1016/j.jas.2011.06.024

Fuller, B. T., Müldner, G., Van Neer, W., Ervynck, A., & Richards, M. P. (2012). Carbon and nitrogen stable isotope ratio analysis of freshwater, brackish and marine fish from Belgian archaeological sites (1st and 2nd millennium AD). Journal of Analytical Atomic Spectrometry, 27(5), 807–820. https://doi.org/10.1039/C2JA10366D

Goude, G., & Fontugne, M. (2016). Carbon and nitrogen isotopic variability in bone collagen during the Neolithic period: Influence of environmental factors and diet. Journal of Archaeological Science, 70, 117–131. https://doi.org/10.1016/j.jas.2016.04.019

Gregory of Tours. (1963). Histoire des Francs. Translated from Latin by Latouche R. Les Belles Lettres ‐ Denoël.

Gutsmiedl‐Schümann, D., Päffgen, B., Schwarzberg, H., Keller, M., Rott, A., & Harbeck, M. (2018). Digging up the plague: A diachronic comparison of aDNA confirmed plague burials and associated burial customs in Germany. Praehistorische Zeitschrift, 92(2), 405–427. https://doi.org/10.1515/pz-2017-0018

Hakenbeck, S., McManus, E., Geisler, H., Grupe, G., & O'Connell, T. (2010). Diet and mobility in Early Medieval Bavaria: A study of carbon and nitrogen stable isotopes. American Journal of Physical Anthropology, 143(2), 235–249. https://doi.org/10.1002/ajpa.21309

Harbeck, M., Seifert, L., Hänsch, S., Wagner, D. M., Birdsell, D., Parise, K. L., Wiechmann, I., Grupe, G., Thomas, A., Keim, P., Zöller, L., Bramanti, B., Riehm, J. M., & Scholz, H. C. (2013). Yersinia pestis DNA from skeletal remains from the 6th century AD reveals insights into Justinianic plague. PLoS Pathogens, 9(5), e1003349. https://doi.org/10.1371/journal.ppat.1003349

Head, T. (1990). Hagiography and the cult of saints. The diocese of Orleans, 800–1200. Cambridge University Press.

Hedges, R. E., Clement, J. G., Thomas, C. D. L., & O'Connell, T. C. (2007). Collagen turnover in the adult femoral mid‐shaft: Modeled from anthropogenic radiocarbon tracer measurements. American Journal of Physical Anthropology, 133(2), 808–816. https://doi.org/10.1002/ajpa.20598

Hedges, R. E., & Reynard, L. M. (2007). Nitrogen isotopes and the trophic level of humans in archaeology. Journal of Archaeological Science, 34(8), 1240–1251. https://doi.org/10.1016/j.jas.2006.10.015

Helmuth, H., & Ankner, D. (1996). Das Reihengräberfeld von Altenerding in Oberbayern: Anthropologie. Damaszierung und Textilfunde.

Holleville, H., Castex, D., Deguilloux, M.‐F., & Kacki, S. (in press). Nouvelles données sur un assemblage ostéoarchéologique en lien avec la première pandémie de peste historique: la nécropole tardo‐antique du  “Clos des Cordeliers” à Sens (Yonne, France). Bulletins et Mémoires de la Société d'Anthropologie de Paris, 36(2).

Jarossay, E. (1902). Histoire de l'abbaye de Micy‐Saint‐Mesmin lez‐Orléans (502–1790): son influence religieuse et sociale, d'après les archives et les documents originaux, pièces justificatives et gravures, avec une lettre de Mgr Touchet. M. Marron. http://ark.bnf.fr/ark:/12148/cb341229087

Kacki, S., Tzortzis, S., Révaillas, H., Blanchard, P., Signoli, M., & Castex, D. (2022). Quels modes d'inhumation au temps des grandes mortalités médiévales et modernes? Essai de typo‐chronologie des structures d'enfouissement des victimes d'épidémies. In P. Blanchard, J.‐P. Chimier, M. Gaultier, & C. Verjux (Eds.), Rencontre autour des typo‐chronologies des tombes à inhumation (pp. 427–438). FERACF.

Katzenberg, M. A. (2008). Stable isotope analysis: A tool for studying past diet, demography, and life history. In M. A. Katzenberg & S. R. Saunders (Eds.), Biological anthropology of the human skeleton (pp. 413–441). John Wiley and Sons. https://doi.org/10.1002/9781119151647.ch14

Kaupová, S., Velemínský, P., Herrscher, E., Sládek, V., Macháček, J., Poláček, L., & Brůžek, J. (2018). Diet in transitory society: Isotopic analysis of medieval population of Central Europe (ninth–eleventh century AD, Czech Republic). Archaeological and Anthropological Sciences, 10, 923–942. https://doi.org/10.1007/s12520-016-0427-8

Kaupová, S., Velemínský, P., Stránská, P., Bravermanová, M., Frolíková, D., Tomková, K., & Frolík, J. (2019). Dukes, elites, and commoners: Dietary reconstruction of the early medieval population of Bohemia (9th–11th century AD, Czech Republic). Archaeological and Anthropological Sciences, 11, 1887–1909. https://doi.org/10.1007/s12520-018-0640-8

Keller, M., Spyrou, M. A., Scheib, C. L., Neumann, G. U., Kröpelin, A., Haas‐Gebhard, B., Päffgen, B., Haberstroh, J., Ribera, I., Lacomba, A., Raynaud, C., Cessford, C., Durand, R., Stadler, P., Nägele, K., Bates, J. S., Trautmann, B., Inskip, S. A., Peters, J., … Krause, J. (2019). Ancient Yersinia pestis genomes from across Western Europe reveal early diversification during the first pandemic (541–750). Proceedings of the National Academy of Sciences, 116(25), 12363–12372. https://doi.org/10.1073/pnas.1820447116

Knipper, C., Held, P., Fecher, M., Nicklisch, N., Meyer, C., Schreiber, H., Zich, B., Metzner‐Nebelsick, C., Hubensack, V., Hansen, L., Nieveler, E., & Alt, K. W. (2015). Superior in life—Superior in death: Dietary distinction of central European prehistoric and medieval elites. Current Anthropology, 56(4), 579–589. https://doi.org/10.1086/682083

Lee‐Thorp, J. A. (2008). On isotopes and old bones. Archaeometry, 50(6), 925–950. https://doi.org/10.1111/j.1475-4754.2008.00441.x

Linderholm, A., & Kjellström, A. (2011). Stable isotope analysis of a medieval skeletal sample indicative of systemic disease from Sigtuna Sweden. Journal of Archaeological Science, 38(4), 925–933. https://doi.org/10.1016/j.jas.2010.11.022

Longin, R. (1971). New method of collagen extraction for radiocarbon dating. Nature, 230, 241–242.

McCormick, M. (2015). Tracking mass death during the fall of Rome's empire (I). Journal of Roman Archaeology, 28, 325–357. https://doi.org/10.1017/S1047759415002512

Mion, L., Herrscher, E., André, G., Hernandez, J., Donat, R., Fabre, M., Forest, V., & Salazar‐García, D. C. (2019). The influence of religious identity and socio‐economic status on diet over time, an example from medieval France. Archaeological and Anthropological Sciences, 11, 3309–3327. https://doi.org/10.1007/s12520-018-0754-z

Mion, L., Herrscher, E., Blondiaux, J., Binet, E., & Andre, G. (2016). C (iiie–ve siècles apr. J.‐C.) à Amiens. Bulletins et Mémoires de la Société d'Anthropologie de Paris, 28(3–4), 155–175.

Montgomery, J. (2010). Passports from the past: Investigating human dispersals using strontium isotope analysis of tooth enamel. Annals of Human Biology, 37(3), 325–346. https://doi.org/10.3109/03014461003649297

Moorrees, C. F., Fanning, E. A., & Hunt, E. E., Jr. (1963). Age variation of formation stages for ten permanent teeth. Journal of Dental Research, 42(6), 1490–1502. https://doi.org/10.1177/00220345630420062701

Mordechai, L., Eisenberg, M., Newfield, T. P., Izdebski, A., Kay, J. E., & Poinar, H. (2019). The Justinianic plague: An inconsequential pandemic? Proceedings of the National Academy of Sciences, 116(51), 25546–25554. https://doi.org/10.1073/pnas.1903797116

Naumann, E., Price, T. D., & Richards, M. P. (2014). Changes in dietary practices and social organization during the pivotal late iron age period in Norway (AD 550–1030): Isotope analyses of Merovingian and Viking Age human remains. American Journal of Physical Anthropology, 155(3), 322–331. https://doi.org/10.1002/ajpa.22551

Nehlich, O., Borić, D., Stefanović, S., & Richards, M. P. (2010). Sulphur isotope evidence for freshwater fish consumption: A case study from the Danube Gorges, SE Europe. Journal of Archaeological Science, 37(5), 1131–1139. https://doi.org/10.1016/j.jas.2009.12.013

Neuberger, F. M., Jopp, E., Graw, M., Püschel, K., & Grupe, G. (2013). Signs of malnutrition and starvation—Reconstruction of nutritional life histories by serial isotopic analyses of hair. Forensic Science International, 226(1–3), 22–32. https://doi.org/10.1016/j.forsciint.2012.10.037

Owings Webb, P. A., & Suchey, J. M. (1985). Epiphyseal union of the anterior iliac crest and medial clavicle in a modern multiracial sample of American males and females. American Journal of Physical Anthropology, 68(4), 457–466. https://doi.org/10.1002/ajpa.1330680402

Pérez‐Ramallo, P., Lorenzo‐Lizalde, J. I., Staniewska, A., Lopez, B., Alexander, M., Marzo, S., Lucas, M., Ilgner, J., Chivall, D., Grandal‐Anglade, A., & Roberts, P. (2022). Stable isotope analysis and differences in diet and social status in northern Medieval Christian Spain (9th–13th centuries CE). Journal of Archaeological Science: Reports, 41, 103325. https://doi.org/10.1016/j.jasrep.2021.103325

Peterson, B. J., & Fry, B. (1987). Stable isotopes in ecosystem studies. Annual Review of Ecology and Systematics, 18(1), 293–320. https://doi.org/10.1146/annurev.es.18.110187.001453

Pin, C., Gannoun, A., & Dupont, A. (2014). Rapid, simultaneous separation of Sr, Pb, and Nd by extraction chromatography prior to isotope ratios determination by TIMS and MC‐ICP‐MS. Journal of Analytical Atomic Spectrometry, 29, 1858–1870. https://doi.org/10.1039/C4JA00169A

Reitsema, L. J. (2013). Beyond diet reconstruction: Stable isotope applications to human physiology, health, and nutrition. American Journal of Human Biology, 25(4), 445–456. https://doi.org/10.1002/ajhb.22398

Retief, F. P., & Cilliers, L. (2006). The epidemic of Justinian (AD 542): A prelude to the middle ages. Acta Theologica, 26(2), 115–127. https://doi.org/10.4314/actat.v26i2.52567

Sarris, P. (2022). Viewpoint new approaches to the ‘Plague of Justinian’. Past & Present, 254(1), 315–346. https://doi.org/10.1093/pastj/gtab024

Scaffidi, B. K., & Knudson, K. J. (2020). An archaeological strontium isoscape for the prehistoric Andes: Understanding population mobility through a geostatistical meta‐analysis of archaeological 87Sr/86Sr values from humans, animals, and artifacts. Journal of Archaeological Science, 117, 105121. https://doi.org/10.1016/j.jas.2020.105121

Schamiloglu, U. (2016). The plague in the time of justinian and central Eurasian history: An agenda for research. In I. Zimonyi & O. Karatay (Eds.), Central Eurasia in the middle ages. Studies in honour of Peter B. Golden (pp. 293–311). Harrasowitz Verlag.

Schats, R., van Hattum, I., Kootker, L. M., Hoogland, M. L., & Waters‐Rist, A. L. (2022). Diet and urbanisation in medieval Holland. Studying dietary change through carious lesions and stable isotope analysis. International Journal of Osteoarchaeology, 32(1), 142–155. https://doi.org/10.1002/oa.3051

Schmitt, A. (2005). Une nouvelle méthode pour estimer l'âge au décès des adultes à partir de la surface sacro‐pelvienne iliaque. Bulletins et Mémoires de la Société d'Anthropologie de Paris, 17, 89–101.

Schmitt, A. (2008). Une nouvelle méthode pour discriminer les individus décédés avant ou après 40 ans à partir de la symphyse pubienne. Journal de Médecine Légale, 51(1), 15.

Schwarcz, H. P., & Schoeninger, M. J. (1991). Stable isotope analyses in human nutritional ecology. American Journal of Physical Anthropology, 34(S13), 283–321. https://doi.org/10.1002/ajpa.1330340613

Smith, B. N., & Epstein, S. (1971). Two categories of 13C/12C ratios for higher plants. Plant Physiology, 47(3), 380–384. https://doi.org/10.1104/pp.47.3.380

Spros, R., Pellegrini, M., Ervynck, A., James, H. F., Claeys, P., Lambert, B., & Snoeck, C. (2022). Diet and mobility in early medieval coastal Belgium: Challenges of interpreting multi‐isotopic data. Journal of Archaeological Science: Reports, 46, 103680. https://doi.org/10.1016/j.jasrep.2022.103680

Staskiewicz, A. (2007). The early medieval cemetery at Aschheim‐Bajuware. In G. Grupe & J. Peters (Eds.), Skeletal series and their socioeconomic context (pp. 35–56). Verlag Marie Leidorf.

Stathakopoulos, D. C. (2004). Famine and pestilence in the Late Roman and Early byzantine empire: Catalogue of epidemics and famines from 284 to 750 AD. Routledge.

van Klinken, G. J. (1999). Bone collagen quality indicators for palaeodietary and radiocarbon measurements. Journal of Archaeological Science, 26, 687–695. https://doi.org/10.1006/jasc.1998.0385

Vytlačil, Z., Kaupová, S., Lefebvre, A., Velemínský, P., & Brůžek, J. (2018). A time of change: Dietary reconstruction of the Merovingian Cemetery of Norroy‐le‐Veneur, France. Anthropologischer Anzeiger, 75(4), 325–338. https://doi.org/10.1127/anthranz/2018/0834

Wagner, D. M., Klunk, J., Harbeck, M., Devault, A., Waglechner, N., Sahl, J. W., Enk, J., Birdsell, M. K., Lumibao, C., Poinar, D., Pearson, T., Fourment, M., Golding, B., Riehm, J. M., Earn, D. J. D., DeWitte, S., Rouillard, J.‐M., Grupe, G., Wiechmann, I., … Poinar, H. (2014). Yersinia pestis and the plague of Justinian 541–543 AD: A genomic analysis. The Lancet Infectious Diseases, 14(4), 319–326. https://doi.org/10.1016/S1473-3099(13)70323-2

Walter, B. S., DeWitte, S. N., Dupras, T., & Beaumont, J. (2020). Assessment of nutritional stress in famine burials using stable isotope analysis. American Journal of Physical Anthropology, 172(2), 214–226. https://doi.org/10.1002/ajpa.24054

Willmes, M., Bataille, C. P., James, H. F., Moffat, I., McMorrow, L., Kinsley, L., Armstrong, R. A., Eggins, S., & Grün, R. (2018). Mapping of bioavailable strontium isotope ratios in France for archaeological provenance studies. Applied Geochemistry, 90, 75–86. https://doi.org/10.1016/j.apgeochem.2017.12.025

Yoder, C. (2012). Let them eat cake? Status‐based differences in diet in medieval Denmark. Journal of Archaeological Science, 39(4), 1183–1193. https://doi.org/10.1016/j.jas.2011.12.029

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