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Overview

Manuel Spannagl is affiliated with Helmholtz Zentrum München in Germany, focusing primarily on Agricultural and Biological Sciences. Their research concentrates on Plant Science, with additional work in Molecular Biology, Genetics, Hematology, and Agronomy and Crop Science.

The scientist's work covers several main topics, including:

  • Wheat and Barley Genetics and Pathology
  • Plant Disease Resistance and Genetics
  • Chromosomal and Genetic Variations
  • Genetic Mapping and Diversity in Plants and Animals
  • Genetics and Plant Breeding
  • Plant Virus Research Studies
  • Genomics and Phylogenetic Studies

Publications by Manuel Spannagl have appeared frequently in:

  • Nature
  • bioRxiv (Cold Spring Harbor Laboratory)
  • Nature Genetics
  • G3 Genes Genomes Genetics
  • Hämostaseologie

Recent papers associated with their research include:

  • Multiple wheat genomes reveal global variation in modern breeding, 2020, Nature
  • The barley pan-genome reveals the hidden legacy of mutation breeding, 2020, Nature
  • Long-read sequence assembly: a technical evaluation in barley, 2021, The Plant Cell
  • Chromosome-scale genome assembly provides insights into rye biology, evolution and agronomic potential, 2021, Nature Genetics
  • The mosaic oat genome gives insights into a uniquely healthy cereal crop, 2022, Nature

Manuel Spannagl has collaborated extensively with several researchers, the most frequent co-authors being:

  • Martin Mascher
  • Klaus Mayer
  • Nils Stein
  • Heidrun Gundlach
  • Thomas Lux

Best Publications

  • The Sorghum bicolor genome and the diversification of grasses

    Andrew H. Paterson;John E. Bowers;Rémy Bruggmann;Inna Dubchak

  • The tomato genome sequence provides insights into fleshy fruit evolution

    Shusei Sato;Satoshi Tabata;Hideki Hirakawa;Erika Asamizu

  • Shifting the limits in wheat research and breeding using a fully annotated reference genome

    Rudi Appels;Rudi Appels;Kellye Eversole;Nils Stein;Nils Stein

  • A chromosome-based draft sequence of the hexaploid bread wheat (Triticum aestivum) genome

    Klaus F. X. Mayer;Jane Rogers;Jaroslav Doležel

  • Genome sequencing and analysis of the model grass Brachypodium distachyon

    John P. Vogel;David F. Garvin;Todd C. Mockler;Jeremy Schmutz

  • A physical, genetic and functional sequence assembly of the barley genome

    Klaus F.X. Mayer;Robbie Waugh;Peter Langridge;Timothy J. Close

  • A chromosome conformation capture ordered sequence of the barley genome

    Martin Mascher;Heidrun Gundlach;Axel Himmelbach;Sebastian Beier

  • The Medicago genome provides insight into the evolution of rhizobial symbioses

    Nevin D Young;Frédéric Debellé;Frédéric Debellé;Giles E D Oldroyd;Rene Geurts

  • Analysis of the bread wheat genome using whole-genome shotgun sequencing

    Rachel Brenchley;Manuel Spannagl;Matthias Pfeifer;Gary L. A. Barker

  • The Arabidopsis lyrata genome sequence and the basis of rapid genome size change

    Tina T. Hu;Pedro Pattyn;Erica G. Bakker;Jun Cao

  • The transcriptional landscape of polyploid wheat

    R. H. Ramírez-González;P. Borrill;D. Lang;S. A. Harrington

  • Multiple wheat genomes reveal global variation in modern breeding.

    Sean Walkowiak;Sean Walkowiak;Liangliang Gao;Cecile Monat;Georg Haberer

  • Aegilops tauschii draft genome sequence reveals a gene repertoire for wheat adaptation

    Jizeng Jia;Shancen Zhao;Xiuying Kong;Yingrui Li

  • Wild emmer genome architecture and diversity elucidate wheat evolution and domestication

    Raz Avni;Moran Nave;Omer Barad;Kobi Baruch

  • Ancient hybridizations among the ancestral genomes of bread wheat

    Thomas Marcussen;Simen R Sandve;Lise Heier;Manuel Spannagl

  • Durum wheat genome highlights past domestication signatures and future improvement targets

    Marco Maccaferri;Marco Maccaferri;Neil S. Harris;Sven O. Twardziok;Raj K. Pasam

  • Genome sequence of the progenitor of the wheat D genome Aegilops tauschii

    Ming-Cheng Luo;Yong Q Gu;Daniela Puiu;Hao Wang

  • The barley pan-genome reveals the hidden legacy of mutation breeding.

    Murukarthick Jayakodi;Sudharsan Padmarasu;Georg Haberer;Venkata Suresh Bonthala

  • Phylogenomics reveals multiple losses of nitrogen-fixing root nodule symbiosis

    Maximilian Griesmann;Yue Chang;Xin Liu;Yue Song

  • An improved assembly and annotation of the allohexaploid wheat genome identifies complete families of agronomic genes and provides genomic evidence for chromosomal translocations

    Bernardo J. Clavijo;Luca Venturini;Christian Schudoma;Gonzalo Garcia Accinelli

Frequent Co-Authors

Klaus F. X. Mayer
Klaus F. X. Mayer Technical University of Munich
Heidrun Gundlach
Heidrun Gundlach Helmholtz Zentrum München
Nils Stein
Nils Stein University of Western Australia
Georg Haberer
Georg Haberer Technical University of Munich
Thomas Wicker
Thomas Wicker University of Zurich
Martin Mascher
Martin Mascher Institute of Plant Genetics and Crop Plant Research
Robbie Waugh
Robbie Waugh James Hutton Institute
Uwe Scholz
Uwe Scholz Leibniz Association
Burkhard Steuernagel
Burkhard Steuernagel John Innes Centre
Chengdao Li
Chengdao Li Murdoch University

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