0000000001303073

AUTHOR

Paola Crepaldi

MOESM13 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 13: Figure S7. Genetic relationship defined with multidimensional scaling analysis between Italian and 62 European cattle breeds. The breeds were grouped according to their geographical origins and distributions. Northern_Europe (Belgian Blue, Dexter, Kerry, Lithuanian Light Grey, Lithuanian White Backed, Groningen Whitehead, Lakenvelder, Meuse-Rhine-Ijjsel, Norwegian Red, Finnish Ayrshire, Belted Galloway, Galloway, Angus, Scottish Highland, South Devon), England (Devon, Guernsey, Hereford, Longhorn, Lincoln Red, Milking Shorthorn, Red Poll, Beef Shorthorn, Sussex, Welsh Blach, White Park), Spain (Berrenda en Negro, Berrenda en Colorado, Cardena Andaluza, Menorquina, Pirena…

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MOESM6 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 6: Figure S3. Distribution of all ROH within breeds according to their size (kb).

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Runs of homozygosity in the Italian goat breeds: impact of management practices in low-input systems

Abstract Background Climate and farming systems, several of which are considered as low-input agricultural systems, vary between goat populations from Northern and Southern Italy and have led to different management practices. These processes have impacted genome shaping in terms of inbreeding and regions under selection and resulted in differences between the northern and southern populations. Both inbreeding and signatures of selection can be pinpointed by the analysis of runs of homozygosity (ROH), which provides useful information to assist the management of this species in different rural areas. Results We analyzed the ROH distribution and inbreeding (FROH) in 902 goats from the Italia…

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MOESM2 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 2: Table S1. Name of the breeds, geographic coordinates (longitude and latitude) of the center of origin, sample size before (n-PreQC) and after (n-PostQC) genotyping quality control, and origin of genotyping data.

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MOESM3 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 3: Figure S1. Trends in historic effective population size (Ne) (from 13 to 98 generations).

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MOESM1 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 1. Description of each Italian local cattle breed involved in this study [68].

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Additional file 2 of Runs of homozygosity in the Italian goat breeds: impact of management practices in low-input systems

Additional file 2: Figure S2. Manhattan plots representing the signals of signatures of selection in the two population groups (CSD and NRD), of the ��ROH, and averaged FST. CSD = Central-southern population group; NRD = Northern population group.

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Genome-Wide Patterns of Homozygosity Reveal the Conservation Status in Five Italian Goat Populations.

The application of genomic technologies has facilitated the assessment of genomic inbreeding based on single nucleotide polymorphisms (SNPs). In this study, we computed several runs of homozygosity (ROH) parameters to investigate the patterns of homozygosity using Illumina Goat SNP50 in five Italian local populations: Argentata dell’Etna (N = 48), Derivata di Siria (N = 32), Girgentana (N = 59), Maltese (N = 16) and Messinese (N = 22). The ROH results showed well-defined differences among the populations. A total of 3687 ROH segments &gt

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MOESM10 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 10: Figure S6. Scatter plot of correlations between genetic differentiation (FST) and geographical distances for all breeds.

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MOESM4 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 4: Table S2. Pearson correlation coefficients between genetic diversity indices. Observed (Ho) and expected (He) heterozygosity, average minor allele frequency (MAF), inbreeding coefficient (FHOM), contemporary effective population size (cNe), mean ROH-based inbreeding coefficient (FROH>4Mb) and recent and historical Ne estimated 13 (Ne13), 20 (Ne_20 and 80 (Ne_80) generations ago. (* p- valueâ

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MOESM7 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 7: Figure S4. Model-based clustering of the estimated membership fractions of individuals from the 32 breeds analyzed in each of the K inferred clusters revealed by the ADMIXTURE software (Kâ =â 12, 16, 20, 28, 32). For a full definition of breeds see Table S1 (see Additional file 2: Table S1).

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Additional file 4 of The genetic heritage of Alpine local cattle breeds using genomic SNP data

Additional file 4: Table S2. Fixation indices (FST) between all pairs of breed populations analyzed in this study.

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Conservation status and historical relatedness of Italian cattle breeds

Background In the last 50 years, the diversity of cattle breeds has experienced a severe contraction. However, in spite of the growing diffusion of cosmopolite specialized breeds, several local cattle breeds are still farmed in Italy. Genetic characterization of breeds represents an essential step to guide decisions in the management of farm animal genetic resources. The aim of this work was to provide a high-resolution representation of the genome-wide diversity and population structure of Italian local cattle breeds using a medium-density single nucleotide polymorphism (SNP) array. Results After quality control filtering, the dataset included 31,013 SNPs for 800 samples from 32 breeds. Ou…

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Additional file 1 of The genetic heritage of Alpine local cattle breeds using genomic SNP data

Additional file 1: Table S1. Name of the breeds, sample size, breed codes and source of genotyping data.

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The genetic heritage of Alpine local cattle breeds using genomic SNP data

Abstract Background Assessment of genetic diversity and population structure provides important control metrics to avoid genetic erosion, inbreeding depression and crossbreeding between exotic and locally-adapted cattle breeds since these events can have deleterious consequences and eventually lead to extinction. Historically, the Alpine Arc represents an important pocket of cattle biodiversity with a large number of autochthonous breeds that provide a fundamental source of income for the entire regional economy. By using genotype data from medium-density single nucleotide polymorphism (SNP) arrays, we performed a genome-wide comparative study of 23 cattle populations from the Alpine Arc an…

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The climatic and genetic heritage of Italian goat breeds with genomic SNP data

Local adaptation of animals to the environment can abruptly become a burden when faced with rapid climatic changes such as those foreseen for the Italian peninsula over the next 70 years. Our study investigates the genetic structure of the Italian goat populations and links it with the environment and how genetics might evolve over the next 50 years. We used one of the largest national datasets including > 1000 goats from 33 populations across the Italian peninsula collected by the Italian Goat Consortium and genotyped with over 50 k markers. Our results showed that Italian goats can be discriminated in three groups reflective of the Italian geography and its geo-political situation prec…

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Genome-wide analysis of Italian sheep diversity reveals a strong geographic pattern and cryptic relationships between breeds

Summary Italy counts several sheep breeds, arisen over centuries as a consequence of ancient and recent genetic and demographic events. To finely reconstruct genetic structure and relationships between Italian sheep, 496 subjects from 19 breeds were typed at 50K single nucleotide polymorphism loci. A subset of foreign breeds from the Sheep HapMap dataset was also included in the analyses. Genetic distances (as visualized either in a network or in a multidimensional scaling analysis of identical by state distances) closely reflected geographic proximity between breeds, with a clear north–south gradient, likely because of high levels of past gene flow and admixture all along the peninsula. Sa…

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Additional file 1 of Runs of homozygosity in the Italian goat breeds: impact of management practices in low-input systems

Additional file 1: Figure S1. Geographic distribution (a), phylogeny tree (b), and multidimensional scaling analysis (c) of all the Italian goat breeds included in the study.

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MOESM8 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 8: Figure S5. Cross-validation errors of admixture analysis at different K values.

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MOESM12 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 12: Table S5. Results of the f4 test.

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MOESM11 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 11: Table S4. Results of the f3 test.

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Additional file 3 of The genetic heritage of Alpine local cattle breeds using genomic SNP data

Additional file 3: Figure S2. Admixture analysis plot in a circular fashion with all values of K (number of clusters) ranging from 2 to 28.

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Additional file 5 of The genetic heritage of Alpine local cattle breeds using genomic SNP data

Additional file 5: Figure S3. Increment in the log likelihood for all tested migration events calculated by using the optM function in the R package OptM.

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Additional file 3 of Runs of homozygosity in the Italian goat breeds: impact of management practices in low-input systems

Additional file 3: Table S1. List of the genes identified by the analyses of the signatures of selection: top 1% homozygosity score in CSD and NRD groups, ��ROH, and averaged FST. CSD = Central-southern population group; NRD = Northern population group.

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Additional file 2 of The genetic heritage of Alpine local cattle breeds using genomic SNP data

Additional file 2: Figure S1. Cross-validation plot of admixture analysis for all values of K (number of clusters) ranging from 2 to 28.

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MOESM5 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 5: Figure S2. Relationship between the number of ROH and the length of the genome (Mb) covered by ROH per individual.

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MOESM9 of Conservation status and historical relatedness of Italian cattle breeds

Additional file 9: Table S3. Pairwise FST values between cattle populations.

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