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Food, fibre and pharmaceuticals from animals
RESEARCH ARTICLE

Effect of fermented seaweed by-product supplementation on reproduction of Hanwoo cows and growth and immunity of their calves

Md. Manirul Islam A , Sonia Tabasum Ahmed A , Hong-Seok Mun A , Young-Bae Kim A and Chul-Ju Yang A B
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- Author Affiliations

A Sunchon National University, Department of Animal Science and Technology, Jeonnam 540-742, South Korea.

B Corresponding author. Email: yangcj@scnu.kr

Animal Production Science 56(11) 1828-1833 https://doi.org/10.1071/AN14972
Submitted: 30 November 2014  Accepted: 31 May 2015   Published: 8 July 2015

Abstract

The study was conducted to evaluate the supplementation of fermented seaweed (Undaria pinnatifida) by-product (FSB) on colostrum composition and immunoglobulin level in breeding Hanwoo cows and growth and immunity of their suckling calves. A total of 32 breeding Hanwoo cows with different parities were assigned to Control (basal diet) and FSB (basal diet + 10% FSB) dietary groups in a randomised block design for 2 months before parturition until weaning of their calves. Calves with FSB supplementation had greater weaning weight and average daily gain (P < 0.05). Dietary FSB supplementation increased calf serum immunoglobulin G level in the first parity (P < 0.05), whereas it was reduced in the second to fourth parities on Days 15 and 45. The immunoglobulin M level increased on Day 15 in the first parity and on Day 45 in the second to fourth parities (P < 0.05), whereas it decreased on Day 45 in the first parity (P < 0.05). Dietary FSB supplementation also elevated moisture, crude fat and crude protein content whereas it reduced the total solids content in colostrum for both parities (P < 0.05). Colostrum immunoglobulin G level was also increased in the first parity, whereas it was reduced in the second to fourth parities in FSB supplementation (P < 0.05). Overall, dietary FSB supplementation increased suckling calves weaning weight, average daily gain, serum immunoglobulin G level and colostrum immunoglobulin G level in the first parity. Moreover, moisture, crude fat and crude protein content of colostrum were elevated significantly in both parities in breeding Hanwoo cows. Therefore, FSB can be used as a functional feed additive to the basal diet in breeding Hanwoo cows.

Additional keywords: calves, cows, growth promotants, immunisation, nutrition.


References

Allen V, Pond K, Saker K, Fontenot J, Bagley C, Ivy R, Evans R, Brown C, Miller M, Montgomery J (2001) Tasco-Forage: III. Influence of a seaweed extract on performance, monocyte immune cell response, and carcass characteristics in feedlot-finished steers. Journal of Animal Science 79, 1032–1040.

Dubeski PL (1999) Nutrition and immune function in cattle. In ‘Proceedings of western nutrition conference’. pp. 9–22. (Calgary, AB, Canada)

Fike J, Allen V, Schmidt R, Zhang X, Fontenot J, Bagley C, Ivy R, Evans R, Coelho R, Wester D (2001) Tasco-Forage: I. Influence of a seaweed extract on antioxidant activity in tall fescue and in ruminants. Journal of Animal Science 79, 1011–1021.

Friedman A, Bar-Shira E (2005) Effects of nutrition on development of immune competence in chicken’s gut-associated lymphoid system. In ‘Proceedings of the 15th European symposium on poultry nutrition’. pp. 247–255. (World’s Poultry Science Association (WPSA): Balatonfüred, Hungary)

Funston RN, Larson DM, Vonnahme KA (2010) Effects of maternal nutrition on conceptus growth and offspring performance: implications for beef cattle production. Journal of Animal Science 88, E205–E215.
Effects of maternal nutrition on conceptus growth and offspring performance: implications for beef cattle production.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DC%2BC3c3pslOluw%3D%3D&md5=73287667c6c48dea5ee49a30314604a5CAS | 19820049PubMed |

Gupta S, Abu-Ghannam N (2011) Bioactive potential and possible health effects of edible brown seaweeds. Trends in Food Science & Technology 22, 315–326.
Bioactive potential and possible health effects of edible brown seaweeds.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3MXmvFWrsbk%3D&md5=4ed63a28600ed42c83b0bf3ce764e008CAS |

Haghighi HR, Gong J, Gyles CL, Hayes MA, Zhou H, Sanei B, Chambers JR, Sharif S (2006) Probiotics stimulate production of natural antibodies in chickens. Clinical and Vaccine Immunology; CVI 13, 975–980.
Probiotics stimulate production of natural antibodies in chickens.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD28XhtVWgt73P&md5=cba95cc78bdc1bd21b43a8580598a006CAS | 16960107PubMed |

Hansen RG, Phillips PH, Smith VR (1946) Colostrum milk and its vitamin A content. Journal of Dairy Science 29, 809–814.
Colostrum milk and its vitamin A content.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaH2sXislylsQ%3D%3D&md5=d4529c55fdb249d0b22bffb8543ee8beCAS |

Haslam E (1989) ‘Plant polyphenols: vegetable tannins revisited.’ (Cambridge University Press: Cambridge, UK)

Hwang J, Islam MM, Ahmed ST, Mun HS, Kim GM, Kim YJ, Yang CJ (2014) Sea mustard (Undaria pinnatifida) improves growth, immunity, fatty acid profile and reduces cholesterol in Hanwoo steers. Asian-Australasian Journal of Animal Sciences 27, 1114–1123.
Sea mustard (Undaria pinnatifida) improves growth, immunity, fatty acid profile and reduces cholesterol in Hanwoo steers.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC2cXhs1yiur7K&md5=14749f95e28b7d90580a464c1ec33112CAS | 25083105PubMed |

Korean Ministry for Food, Agriculture, Forestry and Fisheries (2008) ‘Guidelines for the care and use of animals in research.’ (Korean Ministry for Food, Agriculture, Forestry and Fisheries: Seoul, Korea)

Krakowski L, Krzyżanowski J, Wrona Z, Siwicki AK (1999) The effect of nonspecific immunostimulation of pregnant mares with 1, 3/1, 6 glucan and levamisole on the immunoglobulins levels in colostrum, selected indices of nonspecific cellular and humoral immunity in foals in neonatal and postnatal period. Veterinary Immunology and Immunopathology 68, 1–11.
The effect of nonspecific immunostimulation of pregnant mares with 1, 3/1, 6 glucan and levamisole on the immunoglobulins levels in colostrum, selected indices of nonspecific cellular and humoral immunity in foals in neonatal and postnatal period.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK1MXitlKhs74%3D&md5=0b2559c1948bec3a11a711798280c846CAS | 10231947PubMed |

Krehbiel C, Rust S, Zhang G, Gilliland S (2003) Bacterial direct-fed microbials in ruminant diets: performance response and mode of action. Journal of Animal Science 81, E120–E132.

Kume SI, Tanabe S (1993) Effect of parity on colostral mineral concentrations of Holstein cows and value of colostrum as a mineral source for newborn calves. Journal of Dairy Science 76, 1654–1660.
Effect of parity on colostral mineral concentrations of Holstein cows and value of colostrum as a mineral source for newborn calves.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaK3szhsFOisg%3D%3D&md5=21e705b9c96932e0ac7df6c9bcf77cbfCAS |

Le Tutour B (1990) Antioxidative activities of algal extracts, synergistic effect with vitamin E. Phytochemistry 29, 3759–3765.
Antioxidative activities of algal extracts, synergistic effect with vitamin E.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK3MXktFaisw%3D%3D&md5=1418a603a30413a808ab4f04bdc519c2CAS |

Leonard SG, Sweeney T, Bahar B, Lynch BP, O’Doherty JV (2010) Effect of maternal fish oil and seaweed extract supplementation on colostrum and milk composition, humoral immune response, and performance of suckled piglets. Journal of Animal Science 88, 2988–2997.
Effect of maternal fish oil and seaweed extract supplementation on colostrum and milk composition, humoral immune response, and performance of suckled piglets.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BC3cXhtFSktb3F&md5=6780c0e6d171ef178f16dea257861b55CAS | 20453086PubMed |

Lynch MB, Sweeney T, Callan JJ, O’Sullivan JT, O’Doherty JV (2010) The effect of dietary Laminaria‐derived laminarin and fucoidan on nutrient digestibility, nitrogen utilisation, intestinal microflora and volatile fatty acid concentration in pigs. Journal of the Science of Food and Agriculture 90, 430–437.

Merry RJ, Davies DR (1999) Propionibacteria and their role in the biological control of aerobic spoilage in silage. Le Lait 79, 149–164.
Propionibacteria and their role in the biological control of aerobic spoilage in silage.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK1MXisFKqurs%3D&md5=4dad35aaef19dbb70ddbc04d46c2b355CAS |

Ragan MA, Glombitza K (1986) Phlorotannins, brown algal polyphenols. Progress in Phycological Research 4, 129–241.

Read SM, Currie G, Bacic A (1996) Analysis of the structural heterogeneity of laminarin by electrospray-ionisation-mass spectrometry. Carbohydrate Research 281, 187–201.
Analysis of the structural heterogeneity of laminarin by electrospray-ionisation-mass spectrometry.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaK28XhsVSmtb0%3D&md5=1685663a2a370ae1211dc9c4706d4a53CAS | 8721145PubMed |

SAS (2003) ‘SAS user’s guide, version 9.1.’ (SAS Institute Inc.: Cary, NC)

Terosky TL (1995) ‘Comparison of the alternative protein sources: digestibility, growth performance and health characteristics for calves up to 8 weeks of age.’ (The Pennsylvania State University: University Park, PA)

van der Wielen PW, Biesterveld S, Notermans S, Hofstra H, Urlings BA, van Knapen F (2000) Role of volatile fatty acids in development of the cecal microflora in broiler chickens during growth. Applied and Environmental Microbiology 66, 2536–2540.
Role of volatile fatty acids in development of the cecal microflora in broiler chickens during growth.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD3cXjvFWns7Y%3D&md5=b411d677e390593204a49bf99cc54901CAS | 10831435PubMed |

Van Soest PJ, Robertson JB, Lewis BA (1991) Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition. Journal of Dairy Science 74, 3583–3597.
Methods for dietary fiber, neutral detergent fiber, and nonstarch polysaccharides in relation to animal nutrition.Crossref | GoogleScholarGoogle Scholar | 1:STN:280:DyaK38%2FnvVCltA%3D%3D&md5=e5c1ebe000070887297cc2a8c330cfc1CAS | 1660498PubMed |

Volman JJ, Ramakers JD, Plat J (2008) Dietary modulation of immune function by β-glucans. Physiology & Behavior 94, 276–284.
Dietary modulation of immune function by β-glucans.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD1cXlslyjs7o%3D&md5=928c8e0bff7cb8a48ab586849f94904aCAS |

Wu G, Bazer FW, Wallace JM, Spencer TE (2006) Board-invited review: intrauterine growth retardation: implications for the animal sciences. Journal of Animal Science 84, 2316–2337.
Board-invited review: intrauterine growth retardation: implications for the animal sciences.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DC%2BD28XovFGktLs%3D&md5=312fa5ae88bb38c6e1899f671bc76202CAS | 16908634PubMed |

Yoo Y, Kim W, Kim S, Kim S, Chung M, Park J, Suh H, Lee K, Park Y (2007) Immunomodulating activity of a fucoidan isolated from Korean Undaria pinnatifida sporophyll. Algae-Inchon 22, 333–338.
Immunomodulating activity of a fucoidan isolated from Korean Undaria pinnatifida sporophyll.Crossref | GoogleScholarGoogle Scholar |

Zerbini E, Polan CE (1985) Protein sources evaluated for ruminating Holstein calves. Journal of Dairy Science 68, 1416–1424.
Protein sources evaluated for ruminating Holstein calves.Crossref | GoogleScholarGoogle Scholar | 1:CAS:528:DyaL2MXkslShtbw%3D&md5=e4f53ad6958c465f4dcd0dcb08c322f1CAS | 3839514PubMed |