The evolutionary patterns of barley pericentromeric chromosome regions, as shaped by linkage disequilibrium and domestication

Author:

Chen Yun‐Yu12,Schreiber Miriam13ORCID,Bayer Micha M.1,Dawson Ian K.14,Hedley Peter E.1,Lei Li5,Akhunova Alina56,Liu Chaochih5,Smith Kevin P.5ORCID,Fay Justin C.7,Muehlbauer Gary J.5,Steffenson Brian J.8,Morrell Peter L.5ORCID,Waugh Robbie13ORCID,Russell Joanne R.1ORCID

Affiliation:

1. The James Hutton Institute, Invergowrie Dundee DD2 5DA UK

2. Fios Genomics BioQuarter, 13 Little France Rd Edinburgh EH16 4UX UK

3. Division of Plant Sciences, School of Life Sciences University of Dundee Dow Street Dundee DD1 5EH UK

4. Scotland's Rural College, Kings Buildings West Mains Rd Edinburgh EH9 3JG UK

5. Department of Agronomy & Plant Genetics University of Minnesota 411 Borlaug Hall, 1991 Buford Circle St Paul MN 55108 USA

6. Department of Plant Pathology Kansas State University Throckmorton Hall Manhattan KS 66506 USA

7. Department of Biology University of Rochester 319 Hutchison Rochester NY 14627 USA

8. Department of Plant Pathology University of Minnesota 495 Borlaug Hall, 1991 Buford Circle St Paul MN 55108 USA

Funder

National Science Foundation of Sri Lanka

Publisher

Wiley

Subject

Cell Biology,Plant Science,Genetics

Reference67 articles.

1. Andrews S.(2010)FastQC. Available from:https://www.bioinformatics.babraham.ac.uk/projects/fastqc/

2. The low‐recombining pericentromeric region of barley restricts gene diversity and evolution but not gene expression

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