Prospects for utilization of the relationship between zoometrical measurements and performance traits for poultry and livestock genetic improvement in developing countries

Authors

  • N. Assan Open University, Zimbabwe

Keywords:

Zoometrical measurements, Performance traits, Poultry, Livestock, Genetic improvement, Developing Countries

Abstract

The preceding review looks at the prospects for utilization of the relationship between zoometrical measurements and performance traits for poultry and livestock genetic improvement in developing countries.  Improvement of poultry and livestock indigenous to developing countries is paramount in order to increase their contribution to the much needed animal protein due to human population increase in this part of the world. However, this is on the background that the estimates of genetic parameters for performance traits in poultry and livestock are scarce in  developing countries because of failure of  most attempted selection schemes, which has been  exacerbated  by the problems of measuring of performance traits due to lack of appropriate technologies.  Assessment of the performance of poultry and livestock species is done using various indices, most especially on growth and development traits as well as body conformational traits. The significant genotypic correlations between the body weight and the zoometrical measurements and the heritability of the body weight at various stages of livestock production indicate a systematic cause which can be important to consider for livestock breeding and selection purposes. In case, where the genetic correlations between zoometrical measurements and performance traits of concern are positive and high this implies that the traits are genetically linked. Morphological properties can provide to some extent a reasonable representation of the differences among the genotypes within the same species, though not exhaustive, it serves as the foundation upon which DNA analysis can be built. Selection for improved production within poultry and livestock breeds or ecotypes is problematic for one of the following reasons: for effective selection depends on accurate recording of pedigree and performance traits. The complexity of measuring some of the performance traits due to lack of necessary equipment or technology presents considerable obstacles to effective selection for improved performance in developing countries. Unlike the developing world, recently, DNA analysis through molecular markers has provided an invaluable new technology in poultry and livestock improvement for determining the relationships among individuals, breeds and ecotypes. To increase meat yield from poultry and livestock breeds in developing countries require genetic improvement of their live weight and other performance traits which have a history of relationship with linear body measurements. Proper measurement of live weight as a performance trait, which is often hard with resource poor rural farmers due to lack of weighing scale, is requisite for achieving this goal. The need for estimation of live weight from simple   and more easily measurable variable such as zoometrical measurements therefore arises. Therefore, the use of zoometrical measurements which are simple to measure and are highly correlated to desirable performance traits is feasible option for livestock genetic improvement in developing countries. The relationship between zoometrical measurements and performance traits, apart from being used for breed characterization should rather be used for pro poor poultry and livestock improvement ventures in developing countries, which are mainly constrained by lack of modern animal improvement technologies. Poultry and livestock improvement specialists need to establish the relationship that exists between easily measureable zoometrical measurements with performance traits and to organize the genetic improvement  programmes so as to achieve  optimum poultry and livestock performance  for maximum economic returns in developing countries.

References

Abbasi, M.A., Ghafouri-Kesbi, F., 2011. Genetic co (variance) components for body weight and body measurements in Makooei sheep. Asian-Austral. J. Anim. Sci. 24, 739-743.

Abbasi, M-A., Ghafouri-Kesbi, F., 2011. Genetic (co)variance components for body weight and body measurements in Makooei sheep. Asian-Aust. J. Anim. Sci. 24(6), 739-743.Topal, M., Macit, M. 2004. Prediction of body weight from body measurements in Morkaraman sheep. J. Appl. Anim. Res. 25(2), 97-100.

Abdel-Moneim, A.Y., 2009. Use of live body measurements for prediction of body and carcass cuts weights in three Egyptian breeds of sheep. Egyptian. J. Sheep and Goat Sci. 2, 17-32.

Adeyinka, I.A., Mohammed, I.D., 2006. Relationship of liveweight and linear body measurement in two breeds of goat of Northern Nigeria. J. Anim. Vet. Adv. 5, 891-893.

Adeyinka, I.A., Mohammed, I.D., 2006. Relationship of live weight and linear body measurement in two breeds of goat of Northern Nigeria. J. Anim. Vet. Adv. 11, 891-893.

Akanno, E.C, Ibe, S.N., 2006. Prediction of body weight of the domestic rabbits at different stages of growth using linear body measurements. Nig. J. Anim. Prod. 33(1), 3-8.

Akanno, E.C., Ibe, S.N., 2005. Estimates of genetic parameters for growth traits of domestic rabbits in the humid tropics. Livest. Res. Rural. Dev. 17(7).

Alabi, O.J., Ng`ambi, J.W., Norris, D., Egena, S.S.A., 2012. Comparative study of three indigenous chicken breeds of South Africa: Body weight and linear body measurements. Agr. J. 7, 220-225.

Alfolyan, R.A., Adeyinka, I.A., Lakpini, C.A.M., 2006. The estimation of live weight from body measurement in Yankasa sheep. Czech. J. Anim. Sci. 51, 343-348.

Attah, S., Okubanjo, A.O., Omojola, A.B., Adesehinwa, A.O., 2004. Body and carcass linear measurements of goats slaughtered at different weights. Livest. Res. Rural. Dev. 16(8).

Aziz, M.A., Sharaby, M.A., 1993. Collinearity as a problem in predicting body weight from body dimensions of Najdi sheep in Saudi Arabia. Small. Rum. Res. 12(2), 117-124.

Berry, D.P., Buckley, F., Dillon, P., Evans, R.D., Veerkamp, R.F., 2004. Genetic relationships among linear type traits, milk yield, body weight, fertility and somatic cell count in primiparous dairy cows. Irish. J. Agr. Food. Res. 43, 161–176.

Bhattacharya, B., Ghosh, T.K., Duttagupta, R., Maitra, D. N., 1984. Estimation of body weight in Black Bengal goats from body measurements. Indian. Vet. J. 61, 406-408.

Blackmore, D.W., Mc Gilliard, L.D., Lush, J.L., 1958. Genetic reelations between body measurements at three ages in Holsteins. J. Dairy. Sci. 41(8), 1045–1049.

Bose, S., Basu, S.B., 1984. Relationship between body weight-measurement and meat production in Beetal goats. Indian. Vet. J. 61, 670-673.

Boukwamp, E.L., Igbe, D.E., Wabeck, C.J., 1973. Strains influenced on broiler parts yield. Poult. Sci. J. 2, 1517- 1523.

Cam, M.A., Olfaz, M., Soydan, E., 2010. Possibilities of using morphometrics characteristics as a tool for body weight prediction in Turkish hair goats. (kilkeci). Asin. J. Anim. Vet. Adv. 5(1).

Cecchinato, A., de los Campos, G., Gianola, D., Gallo, L., Carnier, P., 2009. The relevance of purebred information for predicting genetic merit of survival at birth of crossbred piglets. J. Anim. Sci. 88, 481-490.

Chineke, C.A., Adeyemi, A., 2001. Estimates of heritability of weaning and post weaning body measurements in domestic rabbits. Proceedings of 26th Annual Conference of Nigerian Society for Animal Production, 26, 23- 24.

Dineur, B., Thys, E., 1986. The Kapsiki: a taurine cattle breed of the extreme north of Cameroon. 1. Introduction and body measurements. Revue d'Elevage et de Médecine Vétérinaire des Pays Tropicaux 39, 435-442.

Duguma, G., Cloete, S.W.P., Schoeman, S.J., Jordaan, G.F., 2002. Genetic parameters of testicular measurements in Merino rams and the influence of scrotal circumference on total flock fertility. S. Afr. J. Anim. Sci. 32, 76-80.

Enevoldsen, C., Kristensen, T., 1997. Estimation of body weight from body size measurements and body condition scores in dairy cows. J. Dairy Sci. 80, 1988-1995.

Ermias, E., Rege, J.E.O., 2003. Characteristic of live animal allometric measurements associated with body fat in fat- tailed sheep. Livest. Prod. Sci. 81, 271-281.

Fajemilehin, O.K.S., Salako, A.E., 2008. Body measurement characteristics of the West African Dwarf (WAD) goat in deciduous forest zone of Southwestern Nigeria. Afr. J. Biotechnol. 7, 2521-2526.

Falconer, D.S., 1989. Introduction to Quantitative Genetics, 3rd Edition. Longman Scientific and Technical London.Edward, H.M.J., Denman, A., 1975. Carcass composition studies. Influenced of breed, sex, and diet in gross composition of the carcass and fatty acid composition of the adipose tissue. Poult. Sci. J. 52, 1230-1238.

Fourie, P.J., Neser, F.W.C., Olivier, J.J., Van der Westhuizen, C., 2002. Relationship between production performance, visual appraisal and body measurements of young Dorper rams. S. Afr. J. Anim. Sci. 32, 256-262.

Goe, M., 2007. Use of heart girth to predict body weight of working oxen in the Ethiopian highlands. Livest. Prod. Sci. 69, 187 – 195.

Goe, M.R., Alldredge, J.R., Light, D., 2001. Use of heart girth to predict body weight of working oxen in the Ethiopian highlands. Livest. Prod. Sci. 69, 187-195.

Iqbal, Z.M., 2010. Relationship between live body weight and body measurements in Kajli sheep. M.Phil Thesis, Department of Livestock Production, University of Veterinary and Animal Sciences, Lahore.

Jafari, S., Hashemi, A., 2014. Estimation of genetic parameters for body measurements and their association with yearling live weight in the Makuie sheep breed. South Afr. J.Animal Sci. 44(2), 140- 147.

Janssens, S., Vandepitte, W., 2004. Genetic parameters for body measurements and linear type traits in Belgian Bleu du Maine, Suffolk and Texel sheep. Small Rumin. Res. 54(1-2), 13–24.

Kerketta, S., Singh, M., Patel, B.H.M., Dutt, T., Upadhyay, D., Bharti, P.K., Sahu, S., Kamal, R., 2015. Relationships between age, body measurements, testicular measurements and total ejaculation of semen in local goat of Rohilkhand region. Small Rumin. Res. 130, 193–196.

Mandal, A., Roy, R., Rout, P.K., 2008. Direct and maternal effects for body measurements at birth and weaning in Muzaffarnagari sheep of India. Small Rumin. Research. 75(2-3), 123–127.

Marai, I.F.M., El-Darawany, A.A., Elwan, K.M., El-Tarabany, A.A., 2006. Egyptian Nubian (Zaraibi) crossbred doe goat traits as affected by three gestation patterns (pre-,full- and post-term). Egyptian J Sheep, Goat and Desert, Anim. Sci. 1, 89-100.

Matos, C.A.P., Thomas, D.L., Nash, T.C., Waldron, D.F., Stookey, J.M., 1992. Genetic analyses of scrotal circumference, size and growth in Rambouillet lambs. J. Anim. Sci. 70, 43-50.

Mekonnen, H.M., Biruk, T., 2004. Heart girth-body weight relationship in two Ethiopian zebu breeds. Revue de Medecine Veterinaire, 155, 512-515.

Mohammed, I.D., Amin, J.D., 1997. Estimating body weight from morphometric measurements of Sahel (Borno White) goats. Small Rumin. Res. 24, 1-5.

Morenikeji, O.B., Chineke, C.A., Adu, O.A., Aro, S.O., 2013. Genetic correlation and heritabilities of performance traits among three pig genotypes. Int. J. Sci. Eng. Res. 4(3), 1-5.

Moruppa, S.M., Ngere, L.O., 1986. Biometric studies on the Bornu White and Red Sokoto (Moradi) goat breeds. Paper presented at the 11th Annual Conference of Nigerian Society for Animal Production, Ahmadu Bello University, 23-27 March. Nigerian Society for Animal Production, Ahmadu Bello University, Shika-Zaria, Nigeria.

Mukherjee, D.K., Singh, C.S.P., Mishra, H.R., Nath, 1986. Body weight measurement relationships in brown Bengal does. Indian. J. Vet. Med. 10, 1004-1006.

Mukherjee, D.K., Singh, S.K., Mishra, H.R., 1981. Phenotypic correlations of body weight with body measurements in grey Bengal goats. Indian. J. Anim. Sci. 51, 682 694.

Mukherjee, D.K., Singh, S.K., Mishra, H.R., 1981. Phenotypic correlations of body weight with body measurements in Grey Bengal goats. Indian. J. Anim. Sci. 51, 682694.

Mukherjee, D.K., Singh, C.S.P., Mishra, H.R., Nath, S., 1986. Body weight measurement relationships in brown Bengal does. Indian. J. Vet. Med. 10, 1004-1006.

Nsoso, S.J., Podisi, B., Otsogile, E., Mokhutshwane, B.S., Ahmadu, B., 2004. Phenotypic characterization of indigenous Tswana goats and sheep breeds in Botswana: continuous traits. Trop. Anim. Health. Prod. 36, 789-800.

Odubote, I.K., Akinokun, J.O., 1991. Evaluation of the reproductive and body weight performances of the New Zealand White rabbits. Niger. J. Anim. Prod. 18, 61-65.

Oke, U.K., Ogbonnaya, E.O., 2011. Application of physical body traits in the assessment of breed and performance of WAD sheep in a humid tropical environment. Livest. Res. Rural. Dev. 23(24).

Okoro, V.M.O., Ezeokeke, C.T., Ogundu, U.E., Chukwudum, C., 2010. Phenotypic correlation of bodyweight and linear body measurement in Chinchilla rabbits (Orycotolaguscuniculus). J. Agr. Biotechnol. Sust. Dev. 2(2), 027-029.

Osinowo, O.A., Olorunju, S.A.S., Otchere, E.O., Arigi, L.A., 1989. Development of a weigh-band for Yankasa sheep and Red Sokoto goats. Paper presented at the 14th Annual Conference of the Nigerian Society for Animal Production held at Makurdi. 2-6 April.

Otoikhian, C.S.O., Otoikhian, A.M., Akporhuarho, O.P., Isidahomen, C., 2008. Correlation of body weight and some body measurement parameters in Ouda sheep under extensive anagement system. Afr. J. Gen. Agric. 3, 129-133.

Ozoje, M.O., Mgbere, O.O., 2002. Coat pigmentation effects in West African Dwarf goats: live weights and body dimensions. Nig. J. Anim. Prod. 29(1), 5-10.

Riva, J., Rizzi, R., Marellid, S., Cavalchini, L.G., 2004. Body measurements in Bergamasca sheep. Small. Rum. Res. 55, 221–227.

Salako, A.E., 2006. Application of morphological indices in the assessment of type and function in sheep. Int. J. Morphol. 24 (1), 13-18.

Sanda, A.J., Olowofeso, O., Adeleke, M.A., Oso, A.O., Durosaro, S.O., Sanda, M.O., 2014. Heritability and repeatability estimates of some measurable traits in meat type chickens reared for ten weeks in Abeokuta, Niger. Int. J. Biol. Biomol. Agr. Food. Biotechnol. Eng. 8(7).

Semakula, J., Lusembo, P., Kugonza, D.R., Mutetikka, D., Ssennyonjo, J., Mwesigwa, M., 2011. Estimation of live body weight using zoometrical measurements for improved marketing of indigenous chicken in the Lake Victoria basin of Uganda. Livest. Res. Rural. Dev. 23 (8).

Singh, N.R., Mohanty, S.C., Mishra, M., 1987. Prediction of body weight from body measurements in Black Bengal goats: a note. Indian. J. Anim. Prod. Manag. 3, 46-49.

Singh, N.R., Mohanty, S.C., Mishra, M., 1987. Prediction of body weight from body measurements in black Bengal goats: a note. Indian. J. Anim. Prod. Manag. 3, 46-49.

Sowande, O., Sobola, O., 2008. Body measurements of west African dwarf sheep as parameters for estimation of live weight. Trop. Anim. Health. Prod. 40, 433-439.

Sowande, S.O., Sobola, O.S., 2007. Body measurements of West African Dwarf Sheep as parameters estimation of live weight. Trop. Anim. Health. Prod. Abstract.

Tiamiyu, A,K., Raji, A.M., Babatunde, B.B., Hamzat, R.A., 2000. Interrelationship among live body measurements in medium breed rabbits. Proceedings of 25th Annual Conference of Nigerian Society for Animal Production. 25, 252-253.

Valdez, C.A., Tupas, D.G.A., Matias, J.B., 1997. Determination of body weight in sheep using external body measurements. Philippine. J. Vet. Med. 34, 25-31.

Yahaya, H.K., Ibrahim, H., Abdusalam, S., 2012. Correlation between body weight and body conformation of two broiler strains under the same dietary treatment. Int. J. Anim. Vet. Adv. 4(3), 181 – 183.

Younas, U., Abdullah, M., Bhatti, J.A., Pasha, T.N., Ahmad, N., Nasir, M., Hussain, A., 2013. Inter-relationship of body weight with linear body measurements in Hissardale sheep at different stages of life. J. Anim. Plant. Sci. 23(1), 40-44.

Published

2015-11-25

How to Cite

N. Assan. (2015). Prospects for utilization of the relationship between zoometrical measurements and performance traits for poultry and livestock genetic improvement in developing countries. Agricultural Advances, 4(11), 124-132. Retrieved from http://sjournals.com/index.php/aa/article/view/230

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Section

Review Article