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Genetics

D-Index
50
Citations
9731
World Ranking
3932
National Ranking
455

Overview

Graham Moore is affiliated with the John Innes Centre in the United Kingdom. Their research primarily focuses on Agricultural and Biological Sciences as well as Biochemistry, Genetics and Molecular Biology. The subfields they contribute to include Plant Science, Molecular Biology, Genetics, Public Health, Environmental and Occupational Health, and Physiology.

Their work covers a variety of key topics, such as:

  • Chromosomal and Genetic Variations
  • Genetic Mapping and Diversity in Plants and Animals
  • CRISPR and Genetic Engineering
  • Wheat and Barley Genetics and Pathology
  • Photosynthetic Processes and Mechanisms
  • Smoking Behavior and Cessation
  • Plant Virus Research Studies

Recent publications from Graham Moore include:

  • Wheat chromatin architecture is organized in genome territories and transcription factories, 2020, Genome biology
  • Subtelomeric assembly of a multi-gene pathway for antimicrobial defense compounds in cereals, 2021, Nature Communications
  • A separation-of-function ZIP4 wheat mutant allows crossover between related chromosomes and is meiotically stable, 2021, Scientific Reports
  • An assessment of symptom burden in inflammatory bowel diseases to develop a patient preference-weighted symptom score, 2020, Quality of Life Research
  • A Duplicated Copy of the Meiotic Gene ZIP4 Preserves up to 50% Pollen Viability and Grain Number in Polyploid Wheat, 2021, Biology

They have frequently published in venues such as:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • Frontiers in Plant Science
  • Genome biology
  • Nature Communications
  • Scientific Reports

Frequent collaborators include:

  • Azahara C. Martín
  • María-Dolores Rey
  • Abdul Kader Alabdullah
  • Şadiye Hayta
  • Mark A. Smedley

Best Publications

  • Speed breeding is a powerful tool to accelerate crop research and breeding

    Amy Watson;Sreya Ghosh;Matthew J. Williams;William S. Cuddy

  • Cereal Genome Evolution: Grasses, line up and form a circle

    G. Moore;K.M. Devos;Z. Wang;M.D. Gale

  • Molecular characterization of Ph1 as a major chromosome pairing locus in polyploid wheat

    Simon Griffiths;Rebecca Sharp;Tracie N. Foote;Isabelle Bertin

  • Grasses, line up and form a circle

    G. Moore;K. M. Devos;Z. Wang;M. D. Gale

  • Conservation of Genome Structure Between Rice and Wheat

    Nori Kurata;Graham Moore;Yoshiaki Nagamura;Tracie Foote

  • A cereal centromeric sequence

    L Aragón-Alcaide;T Miller;T Schwarzacher;S Reader

  • The Ph1 locus is needed to ensure specific somatic and meiotic centromere association.

    Enrique Martinez-Perez;Peter Shaw;Graham Moore

  • Genetic regulation of meiosis in polyploid species: new insights into an old question

    Marta Cifuentes;Laurie Grandont;Graham Moore;Anne Marie Chèvre

  • Homologous chromosome pairing in wheat

    Enrique Martínez-Pérez;Peter Shaw;Steve Reader;Luis Aragón-Alcaide

  • Wheat chromatin architecture is organized in genome territories and transcription factories

    Lorenzo Concia;Alaguraj Veluchamy;Juan S. Ramirez-Prado;Azahara Martin-Ramirez

  • Molecular Analysis of Small Grain Cereal Genomes: Current Status and Prospects

    Graham Moore;Michael D. Gale;Nori Kurata;Richard B. Flavell

  • Conservation of fine-scale DNA marker order in the genomes of rice and the Triticeae

    Roy P. Dunford;Nori Kurata;David A. Laurie;Tracy A. Money

  • Cereal genome evolution: pastoral pursuits with ‘Lego’ genomes

    Graham Moore

  • Detailed dissection of the chromosomal region containing the Ph1 locus in wheat Triticum aestivum: with deletion mutants and expression profiling.

    Nadia Al-Kaff;Emilie Knight;Isabelle Bertin;Tracie Foote

  • Induction and Characterization of Ph1 Wheat Mutants

    Michael A. Roberts;Steve M. Reader;Caroline Dalgliesh;Terry E. Miller

  • Was there a single ancestral cereal chromosome

    Graham Moore;Tracie Foote;Tim Helentjaris;Katrien Devos

  • AFLP-Based mRNA Fingerprinting

    Tracy Money;Steve Reader;Li Jia Qu;Roy P. Dunford

  • Homologue recognition during meiosis is associated with a change in chromatin conformation.

    Pilar Prieto;Peter Shaw;Graham Moore

  • Association of homologous chromosomes during floral development

    Luis Aragón-Alcaide;Steve Reader;Alison Beven;Peter Shaw

  • Construction of a chromosome-enriched Hpall library from flow-sorted wheat chromosomes

    Ming Li Wang;Andrew R. Leitch;Trude Schwarzacher;John S. Heslop-Harrison

Frequent Co-Authors

Peter Shaw
Peter Shaw Norwich Research Park
Mike D. Gale
Mike D. Gale Norwich Research Park
Cristobal Uauy
Cristobal Uauy John Innes Centre
Trude Schwarzacher
Trude Schwarzacher University of Leicester
Katrien M. Devos
Katrien M. Devos University of Georgia
Andrew R. Leitch
Andrew R. Leitch Queen Mary University of London
Simon Griffiths
Simon Griffiths John Innes Centre
J. S. Heslop-Harrison
J. S. Heslop-Harrison University of Leicester
John W. Snape
John W. Snape Norwich Research Park
Brande B. H. Wulff
Brande B. H. Wulff King Abdullah University of Science and Technology

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