African Journal of
Agricultural Research

  • Abbreviation: Afr. J. Agric. Res.
  • Language: English
  • ISSN: 1991-637X
  • DOI: 10.5897/AJAR
  • Start Year: 2006
  • Published Articles: 6863

Full Length Research Paper

Effect of different planting techniques and sowing density rates on the development of quinoa

Abdalla Dao
  • Abdalla Dao
  • Institut de l’Environnement et de Recherches Agricoles (INERA), Bobo Dioulasso BP910, Burkina Faso.
  • Google Scholar
Jorge Alvar-Beltrán
  • Jorge Alvar-Beltrán
  • Department of Agriculture, Food, Environment and Forestry (DAGRI)-University of Florence, 50144 Florence, Italy.
  • Google Scholar
Abdou Gnanda
  • Abdou Gnanda
  • Institut de Développement Rural (IDR), Université Nazi Boni, Bobo-Dioulasso, Burkina Faso.
  • Google Scholar
Amidou Guira
  • Amidou Guira
  • Institut de Développement Rural (IDR), Université Nazi Boni, Bobo-Dioulasso, Burkina Faso.
  • Google Scholar
Louis Nebie
  • Louis Nebie
  • Institut de Développement Rural (IDR), Université Nazi Boni, Bobo-Dioulasso, Burkina Faso.
  • Google Scholar
Jacob Sanou
  • Jacob Sanou
  • Institut de l’Environnement et de Recherches Agricoles (INERA), Bobo Dioulasso BP910, Burkina Faso.
  • Google Scholar


  •  Received: 13 April 2020
  •  Accepted: 21 July 2020
  •  Published: 30 September 2020

References

Ali S, Chattha MU, Hassan MU, Khan I, Chattha MB, Iqbal B, Rehman M, Nawaz M, Amin MZ (2020). Growth, Biomass Production, and Yield Potential of Quinoa (Chenopodium quinoa Willd.) as Affected by Planting Techniques Under Irrigated Conditions. International Journal of Plant Production pp. 1-15.
Crossref

 

Alvar-Beltrán J, Dao A, Saturnin C, Dalla MA, Sanou J, Orlandini S (2019a). Effect of Drought, Nitrogen Fertilization, Temperature, and Photoperiodicity on Quinoa Plant Growth and Development in the Sahel. Agronomy Journal 9(10):607.
Crossref

 

Alvar-Beltrán J, Saturnin C, Dao A, Dalla MA, Sanou J, Orlandini S (2019b). Effect of drought and nitrogen fertilisation on quinoa (Chenopodium quinoa Willd.) under field conditions in Burkina Faso. Italian Journal of Agrometeorology 1:33-43.

 

Andrews D (2017). Race, Status, and Biodiversity: The social climbing of quinoa. Culture, Agriculture, Food and Environment 39(1):15-24.
Crossref

 

Bakht J, Shafi M, Rehman H, Uddin R, Anwar S (2011). Effect of planting methods on growth, phenology and yield of maize varieties. Pakistan Journal of Botany 43(3):1629-1633.

 

Baloch AW, Soomro AM, Javed MA, Ahmed M, Bughio HR, Bughio MS, Mastoi N (2002). Optimum plant density for high yield in rice (Oryza sativa L.). Asian Journal of Plant Sciences 1(1):25-27.
Crossref

 

Belachew T, Abera Y (2010). Response of maize (Zea mays L.) to tied ridges and planting methods at Goro, Southeastern Ethiopia. American-Eurasian Journal of Agronomy 3:21-24.

 

Benlhabib O, Jacobsen SE, Jellen EN, Maughan PJ, Choukr-Allah R (2013). Status of quinoa production and research in Morocco. In: Bazile Didier (ed.), Bertero Hector Daniel (ed.), Nieto Carlos (ed.). State of the art report on quinoa around the world in 2013. Santiago du Chili: FAO, CIRAD pp. 478-491.

 

Gandarillas A, Saravia R, Plata G, Quispe R, Ortiz-Romero R (2015). Principle quinoa pests and diseases. In: Bazile Didier (ed.), Bertero Hector Daniel (ed.), Nieto Carlos (ed.). State of the art report on quinoa around the world in 2013. Santiago du Chili: FAO, CIRAD pp. 192-215

 

Gomez-Pando L, Mujica A, Chura E, Canahua A, Perez A, Tejeda A, Villantoy A, Pocco M, Gonzales V, Marca S, Ccoñas W (2015). Bazile Didier (ed.), Bertero Hector Daniel (ed.), Nieto Carlos (ed.). State of the art report on quinoa around the world in 2013. Santiago du Chili: FAO, CIRAD pp. 378-387.

 

González JA, Konishi Y, Bruno M, Valoy M, Prado FE (2012). Interrelationships among seed yield, total protein and amino acid composition of ten quinoa (Chenopodium quinoa) cultivars from two different agroecological regions. Journal of the Science of Food and Agriculture 92(6):1222-1229.
Crossref

 

Kristensen L, Olsen J, Weiner J (2008). Crop density, sowing pattern,and nitrogen fertilization effects on weed suppression and yield in spring wheat. Weed Science 56(1):97-102.
Crossref

 

Jacobsen SE, Jørgensen I, Stølen O (1994). Cultivation of quinoa (Chenopodium quinoa) under temperate climatic conditions in Denmark. The Journal of Agricultural Science 122(1):47-52.
Crossref

 

Jacobsen SE (2015). Adaptation and scope for quinoa in Northern Latitudes of Europe. In: Bazile Didier (ed.), Bertero Hector Daniel (ed.), Nieto Carlos (ed.). State of the art report on quinoa around the world in 2013. Santiago du Chili: FAO, CIRAD pp. 436-446

 

Lesjak J, Calderini DF (2017). Increased night temperature negatively affects grain yield, biomass and grain number in Chilean quinoa. Frontiers in Plant Science 8:352.
Crossref

 

Murungu FS, Nyamudeza P, Mugabe FT, Matimati I, Mapfumo S (2006). Effects of seedling age on transplanting shock, growth and yield of pearl millet (Pennisetum glaucum L.) varieties in semi-arid Zimbabwe. Journal of Agronomy 5(2):205-211.
Crossref

 

Oyoo M, Khaemba J, Githiri S, Ayiecho O (2015). Production and utilization of quinoa (Chenopodium quinoa Willd.) outside its traditional growing areas: a case of Kenya. In: Bazile Didier (ed.), Bertero Hector Daniel (ed.), Nieto Carlos (ed.). State of the art report on quinoa around the world in 2013. Santiago du Chili: FAO, CIRAD, pp. 534-548.

 

Peralta E, Mazón N, Murillo A, Rivera M, Rodríguez D, Lomas L, Monar C (2012). Manual Agrícola de Granos Andinos: chocho, quinua, amaranto y ataco. Cultivos, variedades y costos de producción. Publicación miscelánea No. 69.

 

Piva G, Brasse C, Mehinagic E (2015). Quinoa d'Anjou: the beginning of a French quinoa sector. In: Bazile Didier (ed.), Bertero Hector Daniel (ed.), Nieto Carlos (ed.). State of the art report on quinoa around the world in 2013. Santiago du Chili: FAO, CIRAD pp. 447-453.

 

Planella MT, López ML, Bruno MC (2015). Domestication and prehistoric distribution. In: Bazile Didier (ed.), Bertero Hector Daniel (ed.), Nieto Carlos (ed.). State of the art report on quinoa around the world in 2013. Santiago du Chili: FAO, CIRAD pp. 29-41.

 

Risi J, Galwey NW (1991). Effects of sowing date and sowing rate on plant development and grain yield of quinoa (Chenopodium quinoa) in a temperate environment. The Journal of Agricultural Science 117(3):325-332.
Crossref

 

Rojas W, Pinto M (2013). La diversidad genética de quinua de Bolivia. In M. Vargas, ed. Congreso Científico de la Quinua (Memorias). La Paz, Bolivia. pp. 77-92.

 

Rojas W (2015). Quinoa genetic resources and ex situ conservation. In: Bazile Didier (ed.), Bertero Hector Daniel (ed.), Nieto Carlos (ed.). State of the art report on quinoa around the world in 2013. Santiago du Chili: FAO, CIRAD pp. 56-82.

 

Sharifi RS, Sedghi M, Gholipouri A (2009). Effect of population density on yield and yield attributes of maize hybrids. Research Journal of Biological Sciences 4(4):375-379.

 

Spehar CR, da Silva Rocha JE (2009). Effect of sowing density on plant growth and development of quinoa, genotype 4.5, in the Brazilian savannah highlands. Bioscience Journal 25:4.

 

Van Den Boogaard R, Veneklaas EJ, Peacock JM, Lambers H (1996). Yield and water use of wheat (Triticum aestivum) in a Mediterranean environment: cultivar differences and sowing density effects. Plant and Soil 181(2):251-262.
Crossref