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RESEARCH ARTICLE

Dietary nutrient restrictions in the post-weaning period change feed efficiency and productivity of Santa Inês ewe lambs

Clésio dos Santos Costa https://orcid.org/0000-0003-0451-7157 A , Marcos Cláudio Pinheiro Rogério https://orcid.org/0000-0003-3567-5211 B G , Francisco Gleyson da Silveira Alves https://orcid.org/0000-0001-9907-1420 A , Luciana Freitas Guedes B , Roberto Cláudio Fernandes Franco Pompeu https://orcid.org/0000-0002-4099-3575 B , Alexandre Lima Ferreira https://orcid.org/0000-0002-4297-8889 C , Ângela Maria de Vasconcelos D , James Pierre Muir https://orcid.org/0000-0003-1775-8072 E and José Neuman Miranda Neiva https://orcid.org/0000-0001-7817-8210 F
+ Author Affiliations
- Author Affiliations

A Animal Science Department, Federal University of Ceara, Campus do Pici – Blocos 808–810, Avenuenida Mister Hull, 2977, Fortaleza, CE 60356-000, Brazil.

B Brazilian Agricultural Research Corporation, Embrapa Goats & Sheep, Estrada Sobral-Groaíras, Km 04, Sobral, CE 62011-970, Brazil.

C Brazilian Agricultural Research Corporation, Embrapa Dairy Cattle, Avenuenida Eugênio do Nascimento, 610, Juiz de Fora, MG 36038-330, Brazil.

D Animal Science Department, Universidade Estadual Vale do Acaraú, Avenuenida da Universidade, 850, Campus Betânia, Sobral, CE 62040-370, Brazil.

E Texas A&M AgriLife Research, 1229 North U.S. Highway 281, Stephenville, TX 76401, USA.

F Animal Science Department, Federal University of Tocantins, BR-153, Km 112, s/n, Caixa Postal 132, Araguaina, TO 77804-970, Brazil.

G Corresponding author. Email: marcos.claudio@embrapa.br

Animal Production Science 60(17) 1978-1986 https://doi.org/10.1071/AN19300
Submitted: 22 May 2019  Accepted: 15 June 2020   Published: 23 July 2020

Abstract

Context: Interest in sheep production has grown considerably, mainly in the meat market segment in large urban centres. This growth is due to improved efficiencyand quality products, which makes the segment attractive for production.

Aims: Our objective was to evaluate the effects of dietary nutrient restrictions on the feed efficiency and productivity of Santa Inês ewe lambs.

Methods: Twenty Santa Inês ewe lambs were weaned at an average weight of 15.09 ± 2.63 kg and were randomly assigned in a 2 × 2 factorial design to nutritional plans for carcass finishing (early and late maturity) and levels of nutrient restriction (0% and 15% reduction of both crude protein (CP) and total digestible nutrients (TDN) relative to requirements) with five replications per treatment. The trial was divided into two phases: lambs aged 4–8 months (<8 months) and lambs >8 months old.

Key results: There were no differences (P > 0.05) between diets for average daily gain (ADG), dry matter intake (DMI), feed efficiency and residual feed intake. Ratios of ADG : DMI (% of liveweight (LW) and LW0.75) were affected (P ≤ 0.05) by restriction in ewe lambs >8 months old. Restriction model tests (ω1, ω2, ω3 and ω4) did not differ (P > 0.05) from complete models for diets formulated for early maturity; therefore, a single standard growth curve fitted this nutritional plan. On the other hand, the restriction model responses for diets formulated to late maturity differed (P ≤ 0.05) from the complete model, generating different standard growth curves according to the applied restriction. Feeding Santa Inês ewe lambs a restricted diet (by 15% CP and TDN) in an early-maturity nutritional plan will allow lambs to reach slaughter LW earlier than those fed unrestricted diets.

Conclusions and implications: When the objective is to terminate animals at a later age (>8 months), unrestricted diet formulated to a late-maturity nutritional plan will produce higher LW and subsequent reproductive efficiency. By contrast, reducing CP and TDN by 15% for ewe lambs >8 months of age may reduce growth rates at an initial phase.

Additional keywords: feed efficiency, maturity, non-linear model.


References

AOAC (2005) ‘Official methods of analysis.’ (Association of Official Analytical Chemists: Washington, DC)

Brown JE, Fitzhugh HA, Cartwright TCA (1976) A comparison of nonlinear models for describing weight–age relationships in cattle. Journal of Animal Science 42, 810–818.
A comparison of nonlinear models for describing weight–age relationships in cattle.Crossref | GoogleScholarGoogle Scholar |

Cappelle ER, Valadares Filho SC, Coelho da Silva JF, Cecon PR (2001) Estimativas do valor energético a partir de características químicas e bromatológicas dos alimentos. Revista Brasileira de Zootecnia 30, 1837–1856.
Estimativas do valor energético a partir de características químicas e bromatológicas dos alimentos.Crossref | GoogleScholarGoogle Scholar |

Carneiro APS, Muniz JA, Carneiro PLS, Malhado CHM, Filho RM, Fonseca e Silva F (2014) Identity of nonlinear models to compare growth curves of the cattle breed Tabapuã. Pesquisa Agropecuária Brasileira 49, 57–62.
Identity of nonlinear models to compare growth curves of the cattle breed Tabapuã.Crossref | GoogleScholarGoogle Scholar |

Carvalho C, Pires CC, Peres JRR, Zeppenfeld C, Weiss A (1999) Desempenho de cordeiros machos inteiros, machos castrados e fêmeas, alimentados em confinamento. Ciência Rural 29, 129–133.
Desempenho de cordeiros machos inteiros, machos castrados e fêmeas, alimentados em confinamento.Crossref | GoogleScholarGoogle Scholar |

Chizzotti ML, Tedeschi LO, Valadares Filho SC (2008) A meta-analysis of energy and protein requirements for maintenance and growth of Nellore cattle. Journal of Animal Science 86, 1588–1597.
A meta-analysis of energy and protein requirements for maintenance and growth of Nellore cattle.Crossref | GoogleScholarGoogle Scholar | 18375666PubMed |

CSIRO (2007) ‘Nutrient requirements of domesticated ruminants.’ (CSIRO Publishing: Melbourne, Vic.)

da Silva LSA, Fraga AB, Silva FL, Beelen PMG, Silva RMO, Tonhati H, Barros CC (2012) Growth curve in Santa Inês sheep. Small Ruminant Research 105, 182–185.
Growth curve in Santa Inês sheep.Crossref | GoogleScholarGoogle Scholar |

Detmann E, Souza MA, Valadares Filho SC, Queiroz AC, Berchielli TT, Saliba EOE, Cabral LS, Pina DS, Ladeira MM, Azevedo JAG (2012) ‘Métodos para análise de alimentos.’ (INCT Ciência Animal, Universidade Federal de Viçosa: Viçosa, MG, Brazil)

Detmann E, Huhtanen P, Gionbelli MP (2014) A meta-analytical evaluation of the regulation of voluntary intake in cattle fed tropical forage-based diets. Journal of Animal Science 92, 4632–4641.
A meta-analytical evaluation of the regulation of voluntary intake in cattle fed tropical forage-based diets.Crossref | GoogleScholarGoogle Scholar | 25085401PubMed |

Franco GL, Davy FCA (2007) A interação entre nutrição e reprodução em vacas de corte. In ‘Bovinovultura de corte: Desafios e tecnologias’. pp. 82–124. (UFBA: Salvador).

Gibb DJ, McCallister TA (1999). The impact of feed intake and feeding behaviour of cattle on feedlot and feedbunk management. In ‘Proceedings Western Nutrition Conference on Marketing to the 21st Century’. pp. 101–116.

Koch RM, Swiger LA, Chambers D, Gregory KE (1963) Efficiency of feed use in beef cattle. Journal of Animal Science 22, 486–494.
Efficiency of feed use in beef cattle.Crossref | GoogleScholarGoogle Scholar |

Kozloski GV, Trevisan LM, Bonnecarrère LM, Härter CJ, Fiorentini G, Galvani DB, Pires CC (2006) Levels of neutral detergent fiber in lamb diets: intake, digestibility and ruminal fermentation. Arquivo Brasileiro de Medicina Veterinária e Zootecnia 58, 893–900.
Levels of neutral detergent fiber in lamb diets: intake, digestibility and ruminal fermentation.Crossref | GoogleScholarGoogle Scholar |

Lewis RM, Emmans GC, Dingwall WS (2002) A description of the growth of sheep and its genetic analysis. Animal Science 74, 51–62.
A description of the growth of sheep and its genetic analysis.Crossref | GoogleScholarGoogle Scholar |

Licitra G, Hernandez TM, Van Soest PJ (1996) Standardization of procedures for nitrogen fractionation of ruminant feeds. Animal Feed Science and Technology 57, 347–358.
Standardization of procedures for nitrogen fractionation of ruminant feeds.Crossref | GoogleScholarGoogle Scholar |

Lôbo RNB, Villela LCV, Lôbo AMBO (2006) Genetic parameters for traits estimated from the growth curve of Santa Inês hair sheep. Revista Brasileira de Zootecnia 35, 1012–1019.

Luiting P, Urff EM, Verstegen MWA (1994) Between–animal variation in biological efficiency as related to residual feed consumption. Netherlands Journal of Agricultural Science 42, 59–67.

Macedo Junior GL, Pérez JRO, de Almeida TRV, Paula OJ, França PM, Assis RMA (2006) Influência de diferentes níveis de FDN dietético no consumo e digestibilidade aparente de ovelhas Santa Inês. Ciência e Agrotecnologia 30, 547–553.
Influência de diferentes níveis de FDN dietético no consumo e digestibilidade aparente de ovelhas Santa Inês.Crossref | GoogleScholarGoogle Scholar |

Malhado CHM, Carneiro PLS, Santos PF (2008) Curva de crescimento em ovinos mestiços Santa Inês × Texel criados no Sudoeste do Estado da Bahia. Revista Brasileira de Saúde e Produção Animal 9, 210–218.

Malhado CHM, Carneiro PLS, Affonso PRAM, Sousa AAO, Sarmento JLR (2009) Growth curves in Dorper sheep crossed with the local Brazilian breeds, Morada Nova, Rabo Largo, and Santa Inês. Small Ruminant Research 84, 16–21.
Growth curves in Dorper sheep crossed with the local Brazilian breeds, Morada Nova, Rabo Largo, and Santa Inês.Crossref | GoogleScholarGoogle Scholar |

Medeiros SR, Gomes R da C, Nascimento ML, Albertini TZ, Souza ARDL, Reis SF, Paulino PVRP, Lanna DP (2013). Eficiência nutricional: chave para a produção sustentável de carne bovina. In ‘Melhoramento genético aplicado em gado de corte: programa Geneplus-Embrapa’. Ch. 6. (Eds AN Rosa, EM Martins, GRO Menezes, LOC Silva) pp. 61–74. (Embrapa: Brasília, DF; Embrapa Gado de Corte: Campo Grande, MS, Brazil)

Mendes EDM, Campos MM (2016) Eficiência alimentar em bovino de corte. Informe Agropecuário (Belo Horizonte) 37, 28–38.

Mertens DR (2002) Gravimetric determination of amylase-treated neutral detergent fiber in feeds with refluxing in beakers or crucibles: collaborative study. Journal of AOAC International 85, 1217–1240.

Moraes JC, Jaume CM, Souza CJH (2007) Manejo reprodutivo da vaca de corte. Revista Brasileira de Reprodução Animal 31, 160–166.

NRC (2001) ‘Nutrient requirements of dairy cattle.’ 7th edn. (National Research Council, National Academy Press: Washington, DC)

NRC (2007) ‘Nutrient requirements of small ruminants: sheep, goats, cervids, and new world camelids.’ 1st edn. (National Research Council, National Academy Press: Washington, DC)

Oliveira DS (2017) Avaliação de dietas formuladas conforme o NRC (2007), com ou sem restrição de nutrientes, para cordeiros terminados em confinamento no semiárido brasileiro. PhD Thesis, Programa de Pós-Graduação em Ciência Animal, Universidade Federal do Piauí, Teresina, PI, USA.

Owens FN, Dubeski P, Hanson CF (1993) Factors that alter the growth and development of ruminant. Journal of Animal Science 71, 3138–3150.
Factors that alter the growth and development of ruminant.Crossref | GoogleScholarGoogle Scholar | 8270538PubMed |

Pereira ES, Lima FWR, Marcondes MI, Rodrigues JPP, Campos ACN, Silva LP, Bezerra LR, Pereira MWF, Oliveira RL (2017) Energy and protein requirements of Santa Ines lambs, a breed of hair sheep. Animal 11, 2165–2174.
Energy and protein requirements of Santa Ines lambs, a breed of hair sheep.Crossref | GoogleScholarGoogle Scholar | 28578721PubMed |

Pereira ES, Pereira MWF, Marcondes MI, Medeiros AN, Oliveira RL, Silva LP, Mizubuti IY, Campos ACN, Heinzen EL, Veras ASC, Bezerra LR, Araújo TLAC (2018) Maintenance and growth requirements in male and female hair lambs. Small Ruminant Research 159, 75–83.
Maintenance and growth requirements in male and female hair lambs.Crossref | GoogleScholarGoogle Scholar |

Perez JRO, Geraseev LC, Quintão FA (2016). Manejo alimentar de ovelhas. Universidade Federal de Lavras, Lavras, MG, Brazil. Available at http://www.editora.ufla.br/index.php/component/phocadownload/category/56-boletins-de-extensao?download=1137:boletinsextensao [Verified 18 January 2019]

Regazzi AJ (2003) Teste para verificar a igualdade de parâmetros e a identidade de modelos de regressão não-linear. Revista Ceres 50, 9–26.

Rego Neto AA, Sarmento JLR, Santos NPS, Campelo JEG, Sena LS, Biagiotti D, Santos GV (2018) Population genetic structure of Santa Inês sheep in Brazil. Tropical Animal Health and Production 50, 503–508.
Population genetic structure of Santa Inês sheep in Brazil.Crossref | GoogleScholarGoogle Scholar | 29119378PubMed |

Rogério MCP, Guedes LF, Costa CS, Pompeu RCFF, Guedes FL, Morais OR (2018). Dietas de alto concentrado para ovinos de corte: potencialidades e limitações. Comunicado Técnico 174. Embrapa Caprinos e Ovinos, Sobral, CE, Brazil. Available at https://ainfo.cnptia.embrapa.br/digital/bitstream/item/190181/1/CNPC-2018-Cot174.pdf [Verified 23 January 2019]

Sarmento JL, Rezazzi AJ, Souza WH (2006) Estudo da curva de crescimento de ovinos Santa Inês. Revista Brasileira de Zootecnia 35, 435–442.
Estudo da curva de crescimento de ovinos Santa Inês.Crossref | GoogleScholarGoogle Scholar |

Sejian V, Maurya VP, Naqvi SMK, Kumar D, Joshi A (2010) Effect of induced body condition score differences on physiological response, productive and reproductive performance of Malpura ewes kept in a hot, semi-arid environment. Journal of Animal Physiology and Animal Nutrition 94, 154–161.
Effect of induced body condition score differences on physiological response, productive and reproductive performance of Malpura ewes kept in a hot, semi-arid environment.Crossref | GoogleScholarGoogle Scholar | 19175457PubMed |

Simplício AA, Santos DO (2005) Estação de monta × mercado de cordeiro e leite: manejo reprodutivo. In ‘Simpósio de caprinos e ovinos da Escola de Veterinária da UFMG, Belo Horizonte’. (Universidade Federal de Minas Gerais: Belo Horizonte, MG, Brazil) Available at http://www.alice.cnptia.embrapa.br/alice/handle/doc/532480 [Verified 25 June 2020]

Sniffen CJ, O’Connor JD, Van Soest PJ, Fox DG, Russell JB (1992) A net carbohydrate and protein system for evaluation cattles diets: II. Carbohydrate and protein availability. Journal of Animal Science 70, 3562–3577.
A net carbohydrate and protein system for evaluation cattles diets: II. Carbohydrate and protein availability.Crossref | GoogleScholarGoogle Scholar | 1459919PubMed |

Susin I, Loerch SC, Mcclure KDML (1995) Effects of supplemental protein source on passage of nitrogen to the small intestine, nutritional status of pregnant ewes, and wool follicle development of progeny. Journal of Animal Science 73, 3206–3215.
Effects of supplemental protein source on passage of nitrogen to the small intestine, nutritional status of pregnant ewes, and wool follicle development of progeny.Crossref | GoogleScholarGoogle Scholar | 8586574PubMed |

Weiss WP (1999) Energy prediction equations for ruminant feeds. In ‘Proceeding of the Cornell nutrition conference for feed manufacturers’. pp. 176–185. (Cornell University: Ithaca, NY, USA)