Evaluation of Moringa Foliage (Moringa oleifera) as Goat Feed
محورهای موضوعی : Camelن. سولتانا 1 , ا.ر. آلیمون 2 , کا.اس. هوکیو 3 , م. بابا 4 , جی. حسین 5
1 - Department of Animal Science, Faculty of Agriculture, University Putra Malaysia, Serdang 43400, Selangor, Malaysia|Livestock Research Institute, Savar, Dhaka-1341, Bangladesh
2 - Department of Animal Science, Faculty of Agriculture, University Putra Malaysia, Serdang 43400, Selangor, Malaysia
3 - Livestock Research Institute, Savar, Dhaka-1341, Bangladesh
4 - Department of Crop Science, Faculty of Agriculture, University Putra Malaysia, Serdang 43400, Selangor, Malaysia
5 - Livestock Research Institute, Savar, Dhaka-1341, Bangladesh
کلید واژه: goat feed, Moringa foliage, napier grass,
چکیده مقاله :
Thirty five growing male goats (6.98±0.86 kg BW) were divided into five equal groups with seven animals in each group. The five dietary treatments were consisted of varying proportions of Moringa foliage (Moringa oleifera) and napier grass (Pennisetum purpurium); T1 (100% Moringa foliage); T2 (75% Moringa foliage+25% napier grass); T3 (50% Moringa foliage+50% napier grass); T4 (25% Moringa foliage+75% napier grass) and T5 (100% napier grass) (control). The experiment was arranged in complete randomized design to evaluate the feed intake, nutrient digestibility and live weight gains of Bengal goats fed napier grass mixed with different levels of Moringa foliage. The dry matter (DM), crude protein (CP) and ash contents of the diets increased as the proportion of Moringa foliage increased and the reverse was seen for organic matter (OM) and acid detergent fiber (ADF) content. The DM intake was significantly (P<0.01) higher in sole Moringa diet than napier-Moringa foliage mixture and sole napier diet. Crude protein intake increased with higher inclusion level of Moringa foliage in the diet. The DM and OM digestibility of goats was significantly (P<0.01) higher in sole Moringa foliage diet than in other experimental diets. The CP digestibility was increased linearly with increasing level of Moringa foliage in the diet. Nitrogen retention was significantly (P<0.01) higher in sole Moringa and Moringa-napier mixture diets than in the sole napier grass diet. The mean daily average live weight gain followed a similar trend as the nitrogen retention which revealed that the nitrogen retention of all treatment groups was above the maintenance level of the animals. It is concluded that Moringa foliage can be replaced in goat diet up to 75% in napier grass based diet.
Alayon J.A., Ramirez-Aviles L. and Ku-Vera J.C. (1998). Intake, rumen digestion, digestibility and microbial nitrogen supply in sheep fed Cynodon nlemfuensis supplemented with Gliricidia sepium. Agrofor. Syst. 41, 115-126.
AOAC. (2000). Official Methods of Analysis. 17th ed. Association of Official Analytical Chemists, Arlington, VA.
Aregheore E. (2002). Intake and digestibility of Moringa oleifera batiki grass mixture by growing goats. Small Rumin. Res. 46, 23-28.
Asaolu V.O., Odeyinka S.M., Akinbamijo O.O. and Sodeinde F.G. (2009a). Feed intake, nutrient digestibility and nitrogen utilization of graded levels of Moringa and Bamboo leaves by West African Dwarf Goats. Bull. Anim. Health Prod. African. 57, 361-368.
Asaolu V.O., Odeyinka S.M., Akinbamijo O.O., Babayemi O.J. and Hoffmann E. (2009b). Preliminary evaluation of Moringa oleifera and Oxytenanthera abyssinica (bamboo) leaves as feed supplements for ruminants. Bull. Anim. Health Prod. African. 57, 349-360.
Asaolu V.O., Odeyinka S.M., Akinnbamijoand O.O. and Sodeinde F.G. (2010). Effect of Moringa and bamboo leaves on groundnut hay utilization by West African Dwarf goats. Livest. Res. Rural Dev.Available at:
Asaolu V., Binuomote R., Akinlade J., Aderinola O. and Oyelami O. (2012). Intake and growth performance of west african dwarf goats fed Moringa oleifera, Gliricidia sepium and Leucaena leucocephala dried leaves as supplements to Cassava Peels. J. Biol. Agric. Health Care. 2, 76-88.
Aye P.A. and Adegum M.K. (2013). Chemical Composition and some functional properties of Moringa, Leucaena and Gliricidia leaf meals. Agric. Biol. J. N. Am. 4, 71-77.
Benninson J.J. and Paterson R.T. (2003). Use of Trees by Livestock: Gliricidia. Natural Resource Institute, Chatham, UK.
Brooker J.D., Lum D.K., Miller S., SkeneI. and O’ Donovan L. (1995). Rumen microorganisms as providers of high quality protein. Livest. Res. for Rural Dev.Available at:
http://www.lrrd.org/lrrd6/3/l.htm.
Dehority B.A. (1984). Evaluation of subsampling and fixation procedures used for counting rumen protozoa. Appl. Environ. Microbiol. 48, 182-185.
Dzowela H.B., Hove L., Maasdop B.V. and Mafongoya P.L. (1997). Recent work on the establishment, production and utilization of multipurpose trees as a feed resource in Zimbabwe. Anim. Feed Sci. Technol. 69, 1-15.
Fadiyimu A.A., Alokan J.A. and Fajemisin A.N. (2010). Digestibility, nitrogen balance and haematological profile of West African dwarf sheep fed dietary levels of Moringa oleifera as supplement to Panicum maximum. J. Am. Sci. 6, 634-643.
Gebregiorgis F., Negesse T. and Nurfeta A. (2012). Feed intake and utilization in sheep fed graded levels of dried Moringa (Moringa stenopetala) leaf as a supplement to Rhodes grass hay. Trop. Anim. Health Prod. 44, 511-517.
Kahindi R.K., Abdulrazak S.A. and Muinga R.W. (2007). Effect of supplementing Napier grass (Pennisetum purpureum) with Madras thorn (Pithecellobium dulce) on intake, digestibility and live weight gains of growing goats. Small Rumin. Res. 69, 83-87.
Kakengi A.M.V., Shem M.N., Sarwatt S.V. and Fujihara T. (2005). Can Moringa oleifera Be Used as a Protein Supplement for Ruminants? Asian-Australas J. Anim. Sci. 18, 42-47.
Karachi M. and Zengo M. (1997). Legume forages from pigeon pea, Leucaena and Sesbania as supplements to natural pastures for goat production in western Tanzania. Agrofor. Syst. 39, 13-21.
Krebs G. and Leng R.A. (1984). The effect of supplementation with molasses/urea blocks on ruminal digestion. Anim. Prod. Australian. 15, 704.
Makkar H.P.S. (2012). Feed and Fodder challenges for Asia and the Pacific. In Asian Livestock challenges, opportunities and response. Pp. 82-97 in Proc. Int. Pol. Forum. Bankok, Thailand.
Manaye T., Tolera A. and Zewdu T. (2009). Feed intake, digestibility and body weight gain of sheep fed Napier grass mixed with different level of Sesbania Sesban. Livest. Sci. 122, 24-29.
Manh L.H., Dung N.N.X. and Xuan V.T. (2005). Introduction and evaluation of Moringa oleifera for biomass production and as feed for goats in the Mekong Delta. Livest. Res. Rural Dev. Available at:
http://www.lrrd.org/lrrd17/9/manh17104.htm.
McDonald M.W., Maslin B.R., Thompson L.A.J. and Hamilton-Brown S. (1998). Edible Wattle Seeds of Southern Australia: A Review of Species Used in Semi-Arid Regions. CSIRO Publishing, Australia.
Meissner H.H., Zacharias P.J.K. and Reagain P.J. (2000). Forage quality (feed value). Pp. 66-88 in Pasture Management in South Africa. N.M. Tainton, Ed. University of Natal Press, Pietermaritzburg, KwaZulu-Natal.
Mendieta-Aracia B., Spörndly R., Sànchez R.N. and Spörndly E. (2011). Moringa (Moringa oleifera) leaf meal as a source of protein in locally produced concentrates for dairy cows fed low protein diets in tropical areas. Livest. Sci. 137, 10-17.
Moyo B., Masika P.J., Hugo A. and Muchenje V. (2011). Nutritional characterization of Moringa (Moringa oleifera) leaves. African J. Biotechnol. 10, 12925-12933.
Moyo B., Patrick J.M. and Muchenje V. (2012a). Effect of supplementing crossbred Xhosa lop-eared goat catrates with Moringa oleifera leaves on growth performance, carcass and non-carcass characteristics. Trop. Anim. Health Prod. 44, 801-809.
Mtenga L.A. and Shoo R. (1990). Growth rate, feed intake and feed utilization of Small East African goats supplemented with Leucaena leucochephala. Small Rumin. Res. 3, 9-18.
Ndemanisho E.E., Kimoro B.N., Mtengeti E.J. and Muhikambele V.R.M. (2007). In vivo digestibility and performance of growing goats fed maize stover supplemented with browse leaf meals and cotton seed cake based concentrates. Livest. Res. Rural Dev. Available at:
Newbold C.J. and Chaberlain D.G. (1988). Lipids as rumen defaunating agents. Proc. Nutr. Soc. 47, 154.
NRC. (1985). Ruminant Nitrogen Usage. NationalAcademy Press, Washington, DC, USA.
Ogbe A.O. and Affiku J.P. (2011). Proximate study, mineral and ant-nutrient composition of Moringa oleifera leaves harvested from Lafia, Nigeria: potential benefits in poultry nutrition and health. J. Microb. Biotechnol. Food Sci. 1, 296-308.
Oni A., Arigbede O.M., Oni O.O., Onwuka C.F.I., Anele U.Y., Oduguwa B.O. and Yusuf K.O. (2010). Effect of feeding levels (Manihot esculenta) based concentrates with Panicum maximum basal on the performance of growing west African dwarf goats. Livest. Sci. 129, 24-30.
Orden E.A., Abdulrazak S.A., Cruz E.M., OrdenM.E., Ichinohe T. and Fujihara T. (2000). Leucaena leucocephala and Gliricidia sepium supplementation in sheep fed with ammonia treated rice straw: effect on intake, digestibility, microbial protein yield and live-weight changes. Asian-Australas J. Anim. Sci. 13, 1659-1666.
Ørskov E.R and Ryle M. (1990). Energy Nutrition in Ruminants. Elsevier Science Publishers Ltd., Essex, UK.
Patra A.K. (2009). A meta-analysis on effects of supplementing low quality roughages with foliages from browses and tree fodders on intake and growth performance in sheep. Livest. Sci. 121, 239-249.
Preston T.R. (1986). Better Utilization of Crop Residues and by-Products in Animal Feeding. Research Guidelines 2. A practical manual for research worker. FAO Animal Production and Health Paper. Food and Agricultural Organization of the United Nations (FAO), Rome, Italy.
Sànchez R.N., Ledin S. and LedinI. (2006a). Biomass production and chemical composition of Moringa oleifera under different regimes in Nicaragua. Agrofor. Syst. 66, 231-242.
Sànchez R.N., Spörndly E. and LedinI. (2006b). Effect of feeding different levels of foliage of Moringa oleifera to creole dairy cows on intake, digestibility, milk production and composition. Livest. Sci. 101, 24-31.
Sánchez-Machado D.I., Nunez-Gastelum J.A., Reyes-Moreno C., Ramirez-Wong B. and Lopenz-Cervantes J. (2010). Nutritional quality of edible parts of Moringa oleifera. Food Anal. Meth. 3, 175-180.
SAS Institute. (2007). SAS®/STAT Software, Release 9.2. SAS Institute, Inc., Cary, NC. USA.
Sreelatha S. and Padma P.R. (2009). Antioxidant activity and total phenolic content of Moringa oleifera leaves in two stages of maturity. Plant Foods Hum. Nutr. 64, 303-311.
Van Soest P.J., Robertson J.B. and Lewis B.A. (1991). Methods for dietary fiber, neutral detergent fiber and non starch polysaccharides in relation to animal nutrition. J. Dairy Sci. 74, 3583-3597.
Van Soest P.J. (1994). Nutritional Ecology of the Ruminant. CornellUniversity Press, Ithaca, New York.
Whitman P.C. (1980). Tropical Pasture Science. OxfordUniversity Press, New York.
Yang R.Y., Chang L.C., Hsu J.C., Weng B.B.C., Palada M.C., Chadha M.I. and Levasseur V. (2006). Nutritional and functional properties of Moringa leaves from germplasm to plant, to food, to health. Pp. 1-8 in Proc. Moringa and other high nutritious plant resources: strategies, standards and markets for better impact on nutrition in Africa. Accra, Ghana.