Breeding Science Special Issue: Soybean breeding in genomic era

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Breeding Science Special Issue: Soybean breeding in genomic era

Soybean is one of the world’s most important crops, offering a stable source of materials for food, feed, industrial, and pharmaceutical applications. Soybean seeds contain a high content of nutritious protein and oil, and assume an important part of traditional foods in many Asian countries, including Japan. They are also abundant in physiologically active metabolites and functional proteins, ...

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Domestic estimated breeding values and genomic enhanced breeding values of bulls in comparison with their foreign genomic enhanced breeding values.

Estimated breeding values (EBVs) and genomic enhanced breeding values (GEBVs) for milk production of young genotyped Holstein bulls were predicted using a conventional BLUP - Animal Model, a method fitting regression coefficients for loci (RRBLUP), a method utilizing the realized genomic relationship matrix (GBLUP), by a single-step procedure (ssGBLUP) and by a one-step blending procedure. Info...

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Efficient Breeding by Genomic Mating

Selection in breeding programs can be done by using phenotypes (phenotypic selection), pedigree relationship (breeding value selection) or molecular markers (marker assisted selection or genomic selection). All these methods are based on truncation selection, focusing on the best performance of parents before mating. In this article we proposed an approach to breeding, named genomic mating, whi...

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Genomic application in sheep and goat breeding

Sheep and goat breeds are selected worldwide for meat, wool, and dairy production, and breeding objectives also include other functional traits such as reproductive performance and disease resistance. In early 2007, the development of next-generation sequencing (NGS) allowed de novo sequencing of sheep (Jiang et al., 2014) and goat genomes (Dong et al., 2013). In turn, it offered an opportunity...

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Breeding and Genetics: Genomic Selection in Beef

314 Genomic divergence of indicine and taurine cattle identified through high-density SNP genotyping. L. R. Porto-Neto2, T. S. Sonstegard*1, G. Liu1, D. Bickhart3, C. Gondro6, M. V. da Silva4, Y. T. Utsunomiya5, J. F. Garcia5, and C. P. Van Tassell1, 1USDA, ARS, Bovine Functional Genomics Laboratory, Beltsville, MD, 2University of Queensland, Gatton, Queensland, Australia, 3USDA, ARS, Animal Im...

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ژورنال

عنوان ژورنال: Breeding Science

سال: 2012

ISSN: 1344-7610,1347-3735

DOI: 10.1270/jsbbs.61.435