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

Optimum plot size for experiments with papaya genotypes in field

Edilson Romais Schmildt
  • Edilson Romais Schmildt
  • Laboratory of Plant Breeding, Federal University of Espírito Santo, São Mateus. Brazil.
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Adriel Lima Nascimento
  • Adriel Lima Nascimento
  • Postgraduate Program in Genetics and Breeding, Federal University of Espírito Santo, Alegre. Brazil.
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Alan de Lima Nascimento
  • Alan de Lima Nascimento
  • Department of Agrarian and Biological Sciences, Federal University of Espírito Santo, São Mateus. Brazil.
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Karina Tiemi Hassuda dos Santos
  • Karina Tiemi Hassuda dos Santos
  • Laboratory of Plant Breeding, Federal University of Espírito Santo, São Mateus. Brazil.
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Renan Garcia Malikouski
  • Renan Garcia Malikouski
  • Laboratory of Plant Breeding, Federal University of Espírito Santo, São Mateus. Brazil.
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Omar Schmildt
  • Omar Schmildt
  • Laboratory of Plant Breeding, Federal University of Espírito Santo, São Mateus. Brazil.
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Clemilton Alves da Silva
  • Clemilton Alves da Silva
  • Department of Agrarian and Biological Sciences, Federal University of Espírito Santo, São Mateus. Brazil.
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Geraldo Antonio Ferreguetti
  • Geraldo Antonio Ferreguetti
  • Caliman Agrícola S.A., Linhares. Brazil.
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Marcio Paulo Czepak
  • Marcio Paulo Czepak
  • Department of Agrarian and Biological Sciences, Federal University of Espírito Santo, São Mateus. Brazil.
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Julian Cuevas
  • Julian Cuevas
  • Department of Agronomy, University of Almería, ceiA3, Almería. Spain.
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  •  Received: 23 December 2017
  •  Accepted: 30 January 2018
  •  Published: 22 February 2018

References

Alves SMF, Seraphin JC (2004). Coeficiente de heterogeneidade do solo e tamanho de parcela. Pesqui. Agropecu. Bras. 39:105-111.
Crossref

 

Barbosa MHP, Peternelli LA, Silveira LCI (2001). Plot size in sugarcane family selection experiments. Crop Breed. Appl. Biotechnol. 1:271-276.
Crossref

 

Brito MCM, Faria GA, Morais AR, Souza EM, Dantas JLL (2012). Estimação do tamanho ótimo de parcela via regressão antitônica. Rev. Bras. Biom. 30:353-366.

 

Cargnelutti Filho A, Toebe M, Alves BM, Burin C, Neu IM, Facco G (2014). Tamanho amostral para avaliar a massa de plantas de mucuna cinza. Comum. Sci. 5:196-204.

 

Casler MD (2013). Finding Hidden Treasure: A 28-year case study for optimizing experimental designs. Commun. Biom. Crop Sci. 8:23-38.

 

Celanti HF, Schmildt ER, Schmildt O, Alexandre RS, Cattaneo LF (2016a). Optimal plot size in the evaluation of papaya scions: proposal and comparison of methods. Rev. Cer. 63:469-476.
Crossref

 

Celanti HF, Schmildt O, Alexandre RS, Cattaneo LF, Schmildt ER (2016b). Plot size in the evaluation of papaya seedlings 'Baixinho de Santa Amália' in tubes. Rev. Bras. Frut. 38:1-15.
Crossref

 

Cortes DFM, Santa-Catarina R, Barros GBA, Aredes FAS, Silveira SF, Ferreguetti GA, Pereira MG (2017). Model-assisted phenotyping by digital images in papaya breeding program. Sci. Agric. 74:294-302.
Crossref

 

Cruz CD (2016). Genes Software – extended and integrated with the R, Matlab and Selegen. Acta Sci. Agron. 38:547-552.
Crossref

 

Dantas JLL, Lucena RS, Boas SAV (2015). Avaliação agronômica de linhagens e híbridos de mamoeiro. Rev. Bras. Frut. 37:138-148.
Crossref

 

Food and Agriculture Organization (FAO) (2014). Food and Agriculture Organization of the United Nations.

 

Hatheway WH (1961). Convenient plot size. Agron. J. 53:279-280.
Crossref

 

Khan M, Hasija RC, Tanwar N (2017). Optimum size and shape of plots based on data from a uniformity trial on Indian Mustard in Haryana. Mausam 68:67-74.

 

Leite MSO, Peternelli LA, Barbosa MHP (2006). Effects of plot size on the estimation of genetic parameters in sugarcane families. Crop Breed. Appl. Biotechnol. 6:40-46.
Crossref

 

Lima JF, Peixoto CP, Ledo CAS, Faria GA (2007). Tamanho ótimo de parcela para experimentos com planta de mamoeiro em casa de vegetação. Ciênc. Agrotec. 31:1411-1415.
Crossref

 

Lin CS, Binns MR (1984). Working rules for determining the plot size and numbers of plots per block in field experiments. J. Agric. Sci. 103:11-15.
Crossref

 

Lin CS, Binns MR (1986). Relative efficiency of two randomized block designs having different plot size and numbers of replications and of plots per block. Agron. J. 78:531-534.
Crossref

 

Lorentz LH, Erichsen R, Lúcio AD (2012). Proposta de método para estimação de tamanho de parcela para culturas agrícolas. Rev. Cer. 59:772-780.
Crossref

 

Luz LN, Pereira MG, Barros FR, Barros GB, Ferreguetti GA (2015). Novos híbridos de mamoeiro avaliados nas condições de cultivo tradicional e no semiárido brasileiro. Rev. Bras. Frut. 37:159-171.
Crossref

 

Meier VD, Lessman KJ (1971). Estimation of optimum field plot shape and size for testing yield in Crambea byssinica Hochst. Crop Sci. 11:648-650.
Crossref

 

Muniz JA, Aquino LH, Simplício E, Soares AR (2009). Estudo do tamanho de parcelas experimentais em povoamentos de Eucalyptus grandis Hill, usando parcelas lineares. Ciênc. Agrotec. 33:1002-1010.
Crossref

 

Oliveira EJ, Fraife Filho GA, Freitas JPX, Dantas JLL (2014). Desempenho produtivo e interação genótipo x ambiente em híbridos e linhagens de mamoeiro. Biosci. J. 30:402-410.

 

Paranaíba PF, Ferreira DF, Morais AR (2009). Tamanho ótimo de parcelas experimentais: Proposição de métodos de estimação. Rev. Bras. Biomed. 27:255-268.

 

Pimentel-Gomes F (1984). O problema do tamanho das parcelas em experimentos com plantas arbóreas. Pesqui. Agropecu. Bras. 19:1507-1512.

 

Pimentel-Gomes F (2009). Curso de estatística experimental, 15nd ed., Fealq, Piracicaba, Brazil.

 

Poltronieri TPS, Silveira SF, Vivas M, Santa-Catarina R, Cortes DFM, Azevedo AON, Pereira MG (2017). Selecting black-spot resistant papaya genotypes derived from backcrossing and hybrids. Gen. Mol. Res. 16:1-11.
Crossref

 

Santos PHD, Silveira SF, Vivas M, Carvalho BM, Pereira MG (2017). Alternative control to black spot disease in papaya genotypes. Sum. Phytop. 43:60-62.

 

Schmildt ER, Schmildt O, Cruz CD, Cattaneo LF, Ferreguetti GA (2016). Optimum plot size and number of replications in papaya field experiment. Rev. Bras. Frut. 38:1-9.
Crossref

 

Silva CA, Nascimento AL, Ferreira JP, Schmildt O, Malikouski RG, Alexandre RS, Schmildt ER (2017). Genetic diversity among papaya accessions. Afr. J. Agric. Res. 12:2041-2048.
Crossref

 

Silva WM, Moraes MLT, Pupin S, Silva JM, Sebbenn AM, Pavan BE (2016). Influência do tamanho de parcelas experimentais na seleção de progênies de E. camaldulensis Dehnh. Sci. For. 44:979-986.
Crossref

 

Sousa RP, Silva PSL, Assis JP, Silva PIB, Silva JCV (2015). Optimum plot size for experiments with the sunflower. Ver. Ciênc. Agron. 46:170-175.
Crossref

 

Storck L, Cargnelutti Filho A, Lúcio AD, Lopes SJ (2009). Método de Papadakis e número de repetições em experimentos de soja. Ciênc. Rur. 39:977-982.
Crossref

 

Storck L, Ribeiro ND, Lopes SJ, Cargnelutti Filho A, Carvalho MP, Jost E (2007). Persistência do plano experimental em ensaios de avaliação de germoplasma elite de feijão. Ciênc. Rur. 37:1549-1553.
Crossref