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Mapping QTLs for drought tolerance in a SEA 5 x AND 277 common bean cross with SSRs and SNP markers
Briñez, Boris; Perseguini, Juliana Morini Küpper Cardoso; Rosa, Juliana Santa; Bassi, Denis; Gonçalves, João Guilherme Ribeiro; Almeida, Caléo; Paulino, Jean Fausto de Carvalho; Blair, Matthew Ward; Chioratto, Alisson Fernando; Carbonell, Sérgio Augusto Morais; Valdisser, Paula Arielle Mendes Ribeiro; Vianello, Rosana Pereira; Benchimol-Reis, Luciana Lasry.
  • Briñez, Boris; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Perseguini, Juliana Morini Küpper Cardoso; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Rosa, Juliana Santa; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Bassi, Denis; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Gonçalves, João Guilherme Ribeiro; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Almeida, Caléo; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Paulino, Jean Fausto de Carvalho; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Blair, Matthew Ward; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Chioratto, Alisson Fernando; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Carbonell, Sérgio Augusto Morais; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Valdisser, Paula Arielle Mendes Ribeiro; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Vianello, Rosana Pereira; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
  • Benchimol-Reis, Luciana Lasry; Instituto Agronômico. Centro de Recursos Genéticos Vegetais. Campinas. BR
Genet. mol. biol ; 40(4): 813-823, Oct.-Dec. 2017. tab, graf
Article in English | LILACS | ID: biblio-892451
ABSTRACT
Abstract The common bean is characterized by high sensitivity to drought and low productivity. Breeding for drought resistance in this species involves genes of different genetic groups. In this work, we used a SEA 5 x AND 277 cross to map quantitative trait loci associated with drought tolerance in order to assess the factors that determine the magnitude of drought response in common beans. A total of 438 polymorphic markers were used to genotype the F8 mapping population. Phenotyping was done in two greenhouses, one used to simulate drought and the other to simulate irrigated conditions. Fourteen traits associated with drought tolerance were measured to identify the quantitative trait loci (QTLs). The map was constructed with 331 markers that covered all 11 chromosomes and had a total length of 1515 cM. Twenty-two QTLs were discovered for chlorophyll, leaf and stem fresh biomass, leaf biomass dry weight, leaf temperature, number of pods per plant, number of seeds per plant, seed weight, days to flowering, dry pod weight and total yield under well-watered and drought (stress) conditions. All the QTLs detected under drought conditions showed positive effects of the SEA 5 allele. This study provides a better understanding of the genetic inheritance of drought tolerance in common bean.


Full text: Available Index: LILACS (Americas) Type of study: Prognostic study Language: English Journal: Genet. mol. biol Journal subject: Genetics Year: 2017 Type: Article / Project document Affiliation country: Brazil Institution/Affiliation country: Instituto Agronômico/BR

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Full text: Available Index: LILACS (Americas) Type of study: Prognostic study Language: English Journal: Genet. mol. biol Journal subject: Genetics Year: 2017 Type: Article / Project document Affiliation country: Brazil Institution/Affiliation country: Instituto Agronômico/BR