Published February 1, 2021 | Version v1

Supplementary files from: Evolution of recombination landscapes in diverging populations of bread wheat

  • 1. INRAE-Université Clermont-Auvergne, UMR1095, Génétique Diversité Ecophysiologie des Céréales, 5 chemin de Beaulieu, 63000, Clermont-Ferrand, France
  • 2. INRAE, UMR 1388, Génétique, Physiologie et Systèmes d'Elevages, F-31326, Castanet-Tolosan, France

Description

Supplementary files from:

Evolution of recombination landscapes in diverging populations of bread wheat

 

Abstract

Reciprocal exchanges of DNA (crossovers) that occur during meiosis are mandatory to ensure the production of fertile gametes in sexually reproducing species. They also contribute to shuffle parental alleles into new combinations, thereby fuelling genetic variation and evolution. However, due to biological constraints, the recombination landscape is highly heterogenous along the genome, which limits the range of allelic combinations and the adaptability of populations. An approach to better understand the constraints on the recombination process is to study how it evolved in the past. In this work we tackled this question by constructing recombination profiles in four diverging bread wheat (Triticum aestivum L.) populations established from 371 landraces genotyped at 200,062 SNPs. We used linkage disequilibrium (LD) patterns to estimate in each population the past distribution of recombination along the genome and characterize its fine-scale heterogeneity. At the megabase scale, recombination rates derived from LD patterns were consistent with family-based estimates obtained from a population of 406 recombinant inbred lines. Among the four populations, recombination landscapes were positively correlated to each other and shared a statistically significant proportion of highly recombinant intervals. However, this comparison also highlighted that the similarity in recombination landscapes between populations was significantly decreasing with their genetic differentiation in most regions of the genome. This observation was found to be robust to SNP ascertainment and demography and suggests a relatively rapid evolution of factors determining the fine-scale localization of recombination in bread wheat.  

Files

supplementary_file_S10_hot_windows.txt

Files (70.6 MB)

Name Size Download all
md5:494afff82aa5d0f17544be1a8b1fe680
243.5 kB Preview Download
md5:0226f04c9b43cb187b9f2e07897ee793
261.3 kB Preview Download
md5:1b4b588c2bbd27af470d358111076cfb
853.6 kB Preview Download
md5:4e09df5570f9221144cd592866aae189
27.3 kB Preview Download
md5:afe1777a92447c178b1a05dae6bf7bd4
12.8 kB Preview Download
md5:fea23d8d4aea427c2b801ddb9e751234
21.4 MB Preview Download
md5:12c69945f055b646f63d90116ceebb00
18.8 MB Preview Download
md5:386ae3c5c598beec4920ba71ee445866
2.8 kB Preview Download
md5:0acf309931a54a24f76720a98251bfe4
51.7 kB Preview Download
md5:cd7edff7efced4dd16fbaeda55727431
28.5 MB Preview Download
md5:c5a3fe82c5d990fa3808482f31c618a9
97.3 kB Preview Download
md5:d8c000c65de38966621cd8b893dd6226
425.8 kB Preview Download