The genetic architecture of phosphorus efficiency in sorghum involves pleiotropic QTL for root morphology and grain yield under low phosphorus availability in the soil

Author:

Bernardino Karine C.,Pastina Maria Marta,Menezes Cícero B.,de Sousa Sylvia M.,Maciel Laiane S.,Jr Geraldo Carvalho,Guimarães Claudia T.,Barros Beatriz A.,da Costa e Silva Luciano,Carneiro Pedro C. S.,Schaffert Robert E.,Kochian Leon V.,Magalhaes Jurandir V.ORCID

Funder

Fundação de Amparo à Pesquisa do Estado de Minas Gerais

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Embrapa Macroprogram

Publisher

Springer Science and Business Media LLC

Subject

Plant Science

Reference69 articles.

1. De Wet JMJ, Harlan JR. The origin and domestication of Sorghum bicolor. Econ Bot. 1971;25:128–35 Springer.

2. Weltzien E, Rattunde H, Clerget B, Siart S, Toure A, Sagnard F. Sorghum diversity and adaptation to drought in West Africa. In: Jarvis D, Mar I, Sears L, editors. Enhancing use Crop Genet Divers to Manag abiotic Stress Agric Prod Syst; 2006. p. 31–8.

3. Doumbia MD, Hossner LR, Onken AB. Variable sorghum growth in acid soils of subhumid west africa. Arid Soil Res Rehabil. 1993;7:335–46.

4. Doumbia MD, Hossner LR, Onken AB. Sorghum growth in acid soils of West Africa: variations in soil chemical properties. Arid Soil Res Rehabil. 1998;12:179–90.

5. Leiser WL, Rattunde H, Weltzien E, Cisse N, Abdou M, Diallo A, et al. Two in one sweep: aluminum tolerance and grain yield in P-limited soils are associated to the same genomic region in west African Sorghum. BMC Plant Biol. 2014;14:206.

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