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Schlütz, F.

Publications and source records attributed to Schlütz, F..

2 recordsLinked to original sources

Stable isotope analysis (δ13C, δ15N, δ34S) reveal divers manuring practices of rye (Secale cereale) in northern Europe since 1500 years

First analysis of stable isotopes in rye from northern and eastern Germany provides insights into the early history of rye cultivation from the migration to the late medieval period. A comparison of the{delta} 15N with modern experiments reveals that already the early cultivation involved the practice of intensive manuring. The intensity of manuring does not demonstrate a discernible trend over time but high variability. In some instances, it is likely that rye was cultivated as part of a rotation cultivation system including manuring. Through its{delta} 34S values some rye turned out to be manured with marine peats. Rye, reputed to be a frugal crop, was cultivated on poor sandy soils to a limited extent only. Statistically significant correlation between the 13C content and yields demonstrates that the highest yield success on dwelling mounds was achieved, while the majority of fields on dry sandy soils yielded in relation only 40 to 70 %. Manured rye facilitated the emergence of multi-headed village communities and towns and stabilized the political power systems. The cultivation on mounds flooded by winter storm surges emphasises that summer rye was initially cultivated, before winter-rye became the dominating crop in Germany until the mid-20th century.

ecology↗

Sequencing of historical plastid genomes reveal exceptional genetic diversity in early domesticated rye plants

In medieval central Europe, rye was one of the most important agricultural crops. Its properties of frost resistance, general resilience and resistance to many pathogens made it invaluable for medieval farmers. Rye has a distinct domestication history compared to other cereal crops and was not domesticated directly from its wild ancestors, like barley and wheat. Rye is considered to be a "secondary domesticate", i.e. a crop with domestication traits that initially evolved as an arable weed but eventually was intentionally sown and propagated as a crop. To study the history of rye domestication, genetic sequences of present-day plant populations as well as material from historical samples can provide insights into the temporal and spatial signatures of domestication. In this study we combined archaeobotanical methods and ancient DNA sequencing of well-preserved, historical rye material to study patterns of genetic diversity across four centuries. We first applied archaeobotanical methods to characterize rye material acquired from construction material ranging from the 14th to 18th century from different locations in Germany. Next, we extracted DNA to sequence complete chloroplast genomes of six individual samples. We compared the 115,000 bp chloroplast genomes of historical rye samples to chloroplast genomes of other cereal crops and identified 217 single nucleotide variants exclusive to historical samples. By comparing the aDNA chloroplast samples with modern rye chloroplasts, we show that the genetic variation in ancient rye populations was exceptionally high compared to samples from contemporary rye cultivars. This confirms that late domestication and selective breeding have reduced genetic variation in this important crop species only in the last few centuries. HighlightsO_LIHistorical plant material covering four centuries was obtained from half-timbered houses from five locations in Germany C_LIO_LIIntegrative archaeobotanical analyses and ancient DNA sequencing provided insights into genetic diversity of rye plants from historical farmland fields. C_LIO_LISequence analyses of complete assembled chloroplast genomes reveal expectational diversity in rye populations. C_LIO_LILate domestication of rye preserved genetic diversity over centuries. The more recent intensification of rye breeding has however conferred a considerable loss of genetic diversity in this important crop. C_LI

evolutionary biology↗