Your browser doesn't support javascript.
loading
Genetic diversity and heterotic grouping of sorghum lines using SNP markers
Silva, Karla Jorge da; Pastina, Maria Marta; Guimarães, Claudia Teixeira; Magalhães, Jurandir Vieira; Pimentel, Leonardo Duarte; Schaffert, Robert Eugene; Pinto, Marcos de Oliveira; Souza, Vander Fillipe de; Bernardino, Karine da Costa; Silva, Michele Jorge da; Borém, Aluízio; Menezes, Cicero Beserra de.
Affiliation
  • Silva, Karla Jorge da; Universidade Federal de Viçosa. Depto. de Biologia Geral. Viçosa. BR
  • Pastina, Maria Marta; Embrapa Milho e Sorgo. Sete Lagoas. BR
  • Guimarães, Claudia Teixeira; Embrapa Milho e Sorgo. Sete Lagoas. BR
  • Magalhães, Jurandir Vieira; Embrapa Milho e Sorgo. Sete Lagoas. BR
  • Pimentel, Leonardo Duarte; Universidade Federal de Viçosa. CCA. Depto. de Fitotecnia. Viçosa. BR
  • Schaffert, Robert Eugene; Embrapa Milho e Sorgo. Sete Lagoas. BR
  • Pinto, Marcos de Oliveira; Embrapa Milho e Sorgo. Sete Lagoas. BR
  • Souza, Vander Fillipe de; FT Sementes. Ponta Grossa. BR
  • Bernardino, Karine da Costa; Universidade Federal de Viçosa. Depto. de Biologia Geral. Viçosa. BR
  • Silva, Michele Jorge da; Universidade Federal de Viçosa. Depto. de Biologia Geral. Viçosa. BR
  • Borém, Aluízio; Universidade Federal de Viçosa. CCA. Depto. de Fitotecnia. Viçosa. BR
  • Menezes, Cicero Beserra de; Embrapa Milho e Sorgo. Sete Lagoas. BR
Sci. agric ; 78(6): 1-9, 2021. graf, ilus
Article in En | VETINDEX | ID: biblio-1497989
Responsible library: BR68.1
ABSTRACT
Sorghum breeding programs are based predominantly on developing homozygous lines to produce single cross hybrids, frequently with relatively narrow genetic bases. The adoption of complementary strategies, such as genetic diversity study, enables a broader vision of the genetic structure of the breeding germplasm. The purpose of this study was to evaluate the genetic diversity of sorghum breeding lines using structure analysis, principal components (PC) and clustering analyses. A total of 160 sorghum lines were genotyped with 29,649 SNP markers generated by genotyping-by-sequencing (GBS). The PC and clustering analyses consistently divided the R (restorer) and B (maintainer) lines based on their pedigree, generating four groups. Thirty-two B and 21 R lines were used to generate 121 single-cross hybrids, whose performances were compared based on the diversity clustering of each parental line. The genetic divergence of B and R lines indicated a potential for increasing heterotic response in the development of hybrids. The genetic distance was correlated to heterosis, allowing for the use of markers to create heterotic groups in sorghum.
Subject(s)
Key words