Comparative Growth and Economic Performances between Indigenous Swamp and Murrah Crossbred Buffaloes in Malaysia
Abstract
:Simple Summary
Abstract
1. Introduction
2. Materials and Methods
2.1. Statement of Animal Rights
2.2. Study Area
2.3. Pre-Intervention
2.4. The Intervention
2.5. Analysis of Growth Performance
2.6. Statistical Analysis
2.7. Partial Budget Analysis
year (MYR) = BWmean × ∆R × $ per kg calf
per year (MYR) = ∆n improved number of calves born × ∆R × $ per kg calf
per year (MYR) = ∆SR × ∆R × $ per kg calf
AS2012–2015 − AS2010–2011
after new feeding management cost (MYR) = ∆FCA × FC week
new feeding management cost (MYR) = (∆CI × FC week) + ($ flushing × 2)
(MYR) = $ fertilizer per animal
flushing days × n amount PKC (kg) × $ PKC/kg × 3
per year (MYR) = n days (within 3months) × $ feed animals/week × ∆R
additional feed cost for total calf-heifer population per year (MYR)
= ∆R × $ feed/animal/year
(MYR) = ∆R × $ deworming/animal
∆R × $ ID tag cost/animal
Increased costs)
3. Results
3.1. Growth Performance
3.2. Average Daily Weight Gain
3.3. Number of Calves and Calf Quality
3.4. Calving Interval and First Calving Age
3.5. Partial Budget
3.6. Net Gains/Loss
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
MYR | Malaysian Ringgit |
USD | United States Dollar |
L | Liter |
m | meter |
kg | Kilogram |
MJ | Millijoule |
DM | Dry matter |
ADF | Acid detergent fiber |
NDF | Neutral detergent fiber |
ADL | Acid detergent lignin |
SEM | Standard error of mean |
PKC | Palm kernel cake |
References
- Johari, J.A. Conservation and utilization of animal genetic resources in Malaysia. In Proceedings of the 6th National Congress on Genetics, Kuala Lumpur, Malaysia, 12–14 May 2005; pp. 30–36. [Google Scholar]
- Triwitayakorn, K.; Moolmuang, B.; Sraphet, S.; Panyim, S.; Na-Chiangmai, A.; Smith, D.R. Analysis of genetic diversity of the Thai swamp buffalo (Bubalus bubalis) using cattle microsatellite DNA markers. Asian Australas. J. Anim. Sci. 2006, 19, 617–621. [Google Scholar] [CrossRef]
- Zhang, Y.; Colli, L.; Barker, J.S.F. Asian water buffalo: Domestication, history and genetics. Anim. Genet. 2020, 51, 177–191. [Google Scholar] [CrossRef] [PubMed]
- Tuyen, D.K.; Ly, N.V. The role of swamp buffalo in agricultural production of small farm holder. In Proceedings of the Workshop on Swamp Buffalo Development, Bangkok, Thailand, 17–18 December 2001; Volume 17. [Google Scholar]
- Salas, R.C.; van der Lende, T.; Udo, H.M.; Mamuad, F.V.; Garillo, E.P.; Cruz, L.C. Comparison of growth, milk yield and draughtability of murrah-Philippine crossbred and Philippine native buffaloes. Asian Australas. J. Anim. Sci. 2000, 13, 580–586. [Google Scholar] [CrossRef]
- Timsina, M.P.; Tamang, N.B.; Rai, D.B.; Siddiky, M.A. Comparative production and reproduction performances of local and murrah-cross buffaloes managed by smallholder farmers in Bhutan. SAARC J. Agric. 2015, 13, 200–206. [Google Scholar] [CrossRef] [Green Version]
- Zainuddin, N. Evaluation of Milk Production in Murrah Buffalo Cows under Different Farm Management System. Ph.D. Thesis, Universiti Putra Malaysia, Selangor, Malaysia, 2017. [Google Scholar]
- Feroz, K.; Owner of Buffalo Farms, Beranang, Selangor, Malaysia. Personal Communication, 19 April 2020.
- Wahid, H.; Rosnina, Y. Buffalo: Asia. Ref. Modul. Food Sci. 2016. [Google Scholar] [CrossRef]
- Cruz, L.C. Recent Developments in the Buffalo Industry of Asia. Rev. Vet. 2010, 21, 7–19. [Google Scholar]
- Nanda, A.S.; Brar, P.S.; Prabhakar, S. Enhancing reproductive performance in dairy buffalo: Major constraints and achievements. Reprod. Camb. Suppl. 2003, 61, 27–36. [Google Scholar] [CrossRef]
- Othman, R.; Bakar, M.Z.A.; Kasim, A.; Zamri-Saad, M. Improving the reproductive performance of buffaloes in Sabah, Malaysia. J. Anim. Health Prod. 2014, 2, 1–4. [Google Scholar] [CrossRef]
- Van Os, J.M.; Weary, D.M.; Costa, J.H.; Hötzel, M.J.; von Keyserlingk, M.A. Sampling strategies for assessing lameness, injuries, and body condition score on dairy farms. J. Dairy Sci. 2019, 102, 8290–8304. [Google Scholar] [CrossRef] [PubMed]
- Cochran, W.G. Sampling Techniques; John Wiley & Sons: Hoboken, NJ, USA, 2007. [Google Scholar]
- Fischer, H.; Ulbrich, F. Chromosomes of the Murrah buffalo and its crossbreds with the Asiatic swamp buffalo (Bubalus bubalis). J. Anim. Breed. Breed. Biol. 1967, 84, 110–114. [Google Scholar] [CrossRef]
- Udroiu, I.; Sgura, A. Cytogenetic tests for animal production: State of the art and perspectives. Anim. Genet. 2017, 48, 505–515. [Google Scholar] [CrossRef]
- Shaari, N.A.L.; Jaoi-Edward, M.; San Loo, S.; Salisi, M.S.; Yusoff, R.; Ab Ghani, N.I.; Ahmad, H. Karyotypic and mtDNA based characterization of Malaysian water buffalo. BMC Genet. 2019, 20, 1–6. [Google Scholar] [CrossRef] [Green Version]
- Galyean, M.M. Laboratory Procedures in Animal Nutrition Research; Department of Animal and Food Science, Texas Tech University: Lubbock, TX, USA, 2010. [Google Scholar]
- Rushton, J.; Ahuja, V.; Beck, H.; Bonnet, P.; Devendra, C.; James, A.; Leonard, D.; Lesnoff, M.; Otte, J.; Pica-Ciamarra, U.; et al. The Economics of Animal Health and Production; CABI: London, UK, 2009. [Google Scholar]
- Moran, J. Business Management for Tropical Dairy Farmers; Landlinks Press: Collingwood, Australia, 2009. [Google Scholar]
- Momongan, V.G.; Sarabia, A.S.; Roxas, N.P.; Palad, O.A.; Obsioma, A.R.; Nava, Z.M.; del Barrio, A.N. Increasing the productive efficiency of carabaos under smallholder farming systems. In Domestic Buffalo Production in Asia, Proceedings of the Final Research Co-Ordination Meeting on the Use of Nuclear Techniques to Improve Domestic Buffalo Production in Asia-Phase II, Rockhampton, Australia, 20–24 February 1989; International Atomic Energy Agency: Vienna, Austria, 1990; pp. 167–178. [Google Scholar]
- Kamonpatana, M.; Sophon, S.; Jetana, T.; Sravasi, S.; Tongpan, R.; Thasipoo, K. A Comparative Study of Reproductive performance and Growth of Female Swamp and Murrah × Swamp Buffalo under Village Conditions. In Proceedings of the Buffalo and Goats in Asia, Genetic Diversity and Its Application, Kuala Lumpur, Malaysia, 10–14 February 1991; Volume 76. [Google Scholar]
- Nordin, Y.; Sani, R.A.; Rosalan, A.M.; Ghadzi, M.S. Productivity of swamp buffaloes under three production systems. J. Trop. Agric. Food Sci. 2004, 32, 229. [Google Scholar]
- Thevamanoharan, K.; Vandepitte, W.; Mohiuddin, G.; Chantalakhana, C. Environmental factors affecting various growth traits of swamp buffalo calves. Pak. J. Agric. Sci. 2001, 38, 5–10. [Google Scholar]
- Charlini, B.C.; Sinniah, J. Performance of Murrah, Surti, Nili-Ravi buffaloes and their crosses in the intermediate zone of Sri Lanka. Development 2015, 27, 1–7. [Google Scholar]
- Thiruvenkadan, A.K.; Panneerselvam, S.; Rajendran, R. Non-genetic and genetic factors influencing growth performance in. S. Afr. J. Anim. Sci. 2009, 39, 102–106. [Google Scholar] [CrossRef]
- Pandya, G.M.; Joshi, C.G.; Rank, D.N.; Kharadi, V.B.; Bramkshtri, B.P.; Vataliya, P.H.; Solanki, J.V. Genetic analysis of body weight traits of Surti buffalo. Buffalo Bull. 2015, 34, 189–195. [Google Scholar]
- Zamri-Saad, M.; Azhar, K.; Zuki, A.B.; Punimin, A.; Hassim, H.A. Enhancement of Performance of Farmed Buffaloes Pasture Management and Feed Supplementation in Sabah, Malaysia. Pertanika J. Trop. Agric. Sci. 2017, 40, 553–564. [Google Scholar]
- Vaz, R.Z.; Lobato, J.F.P.; Restle, J. Influence of weaning age on the reproductive efficiency of primiparous cows. Rev. Bras. Zootec. 2010, 39, 299–307. [Google Scholar] [CrossRef] [Green Version]
- Abbas, W.; Bhatti, S.A.; Khan, M.S.; Saeed, N.; Warriach, H.M.; Wynn, P.; McGill, D. Effect of weaning age and milk feeding volume on growth performance of Nili-Ravi buffalo calves. Ital. J. Anim. Sci. 2017, 16, 490–499. [Google Scholar] [CrossRef] [Green Version]
- Situmorang, P.; Sitepu, P. Comparative growth performance, semen quality and draught capacity of Indonesian swamp buffalo and its crosses. ACIAR Proc. 1991, 34, 102–112. [Google Scholar]
- Parker, B.A.; Nava, Z.M.; Lapitan, R.M.; del Barrio, A.N.; Momongan, V.G. Comparative growth performance of carabao and carabao crosses under controlled (institutional) and smallholder farms. In Proceedings of the Buffalo and Goats in Asia, Genetic Diversity and Its Application, Kuala Lumpur, Malaysia, 10–14 February 1991; pp. 83–92. [Google Scholar]
- Burque, A.R.; Abdullah, M.; Babar, M.E.; Javed, K.; Nawaz, H. Effect of urea feeding on feed intake and performance of male buffalo calves. J. Anim. Pl. Sci. 2008, 18, 1–6. [Google Scholar]
- Mahmoudzadeh, H.; Fazaeli, H. Growth response of yearling buffalo male calves to different dietary energy levels. Turk. J. Vet. Anim. Sci. 2009, 33, 447–454. [Google Scholar]
- Peangkoum, P.; Tatsapong, P.; Pimpa, O.; Hare, M.D.; Paengkoum, S. Effect of dietary protein on nutrients intake, nitrogen balance and crude protein for maintenance in swamp buffalo. Khon Kaen Agri. J. 2010, 38, 112–114. [Google Scholar]
- Bondoc, O.L.; Flor, M.C.; Rebollos, S.D.; Albarace, A.G. Variations in karyotypic characteristics of different breed groups of water buffaloes (Bubalus bubalis). Asian Australas. J. Anim. Sci. 2002, 15, 321–325. [Google Scholar] [CrossRef]
- Javed, K.; Mirza, R.H.; Abdullah, M.; Akhtar, M. Environmental factors affecting live weight and morphological traits in Nili Ravi buffaloes of Pakistan. Editor. Board 2013, 32, 1161–1164. [Google Scholar]
- Fukumoto, G.K.; Lee, C.N. Signalgrass for Forage. Available online: http://www2.ctahr.hawaii.edu/oc/freepubs/pdf/lm–3.pdf (accessed on 28 December 2020).
- Campanile, G.; Di Palo, R.; Infascelli, F.; Gasparrini, B.; Neglia, G.; Zicarelli, F.; D’Occhio, M.J. Influence of rumen protein degradability on productive and reproductive performance in buffalo cows. Reprod. Nutr. Dev. 2003, 43, 557–566. [Google Scholar] [CrossRef] [Green Version]
- Perera, B.M. Reproduction in domestic buffalo. Reprod. Domest. Anim. 2008, 43, 200–206. [Google Scholar] [CrossRef]
- Vendramini, J.M.; Sollenberger, L.E.; Dubeux, J.C., Jr.; Interrante, S.M.; Stewart, R.L., Jr.; Arthington, J.D. Concentrate supplementation effects on the performance of early weaned calves grazing Tifton 85 bermudagrass. Agron. J. 2007, 99, 399–404. [Google Scholar] [CrossRef]
- Panchasara, H.H.; Sutaria, T.V.; Shah, R.R. Factors affecting mortality of Mehsana buffalo calves. Intas Polivet 2009, 10, 170–173. [Google Scholar]
- Tiwari, R.; Sharma, M.C.; Singh, B.P. Buffalo calf health care in commercial dairy farms: A field study in Uttar Pradesh (India). Livest. Res. Rural Dev. 2007, 19, 38. [Google Scholar]
- Khan, Z.U.; Khan, S.; Ahmad, N.; Raziq, A. Investigation of mortality incidence and managemental practices in buffalo calves at commercial dairy farms in Peshawar City. J. Agric. Biol. Sci. 2007, 2, 16–21. [Google Scholar]
- Dijkhuizen, A.A.; Huirne, R.B.; Jalvingh, A.W. Economic analysis of animal diseases and their control. Prev. Vet. Med. 1995, 25, 135–149. [Google Scholar] [CrossRef]
- Tong, A.X.; Nor, N.M.; Indrawan, D.; Suhaimi, N.A. A Review: Should small holder dairy farms rear own young stock? Malays. J. Anim. Sci. 2018, 21, 1–6. [Google Scholar]
- Naqvi, A.; Shami, S.A. Factors affecting birth weight in Nili-Ravi buffalo calves. Pak. Vet. J. 1999, 19, 119–122. [Google Scholar]
Nutrient Composition | Pre-Intervention (Brachiaria decumbens) | Post-Intervention (Brachiaria decumbens + Concentrate) |
---|---|---|
1 DM (%) | 99.50 | 99.49 |
Ash (% DM) | 5.09 | 5.69 |
Crude fiber (% DM) | 26.03 | 23.73 |
Ether extract (% DM) | 2.03 | 2.92 |
Crude protein (% DM) | 6.09 | 8.08 |
2 NDF (% DM) | 64.27 | 57.96 |
3 ADF (% DM) | 33.86 | 28.70 |
4 ADL (% DM) | 3.55 | 3.32 |
Carbohydrate (% DM) | 59.43 | 61.53 |
Gross energy (MJ/kg) | 11.07 | 12.1 |
Hemicellulose (% DM) | 30.41 | 29.25 |
Cellulose (% DM) | 30.32 | 25.38 |
Variables | Inputs | |
---|---|---|
Swamp Buffalo | Murrah Crossbred | |
Difference ratio number of calves per number of mated dams between post- and pre- intervention | 0.05 | 0.11 |
Difference in number of calves born between post- and pre-intervention (head) | 15 | 20 |
Difference in calves birth weight between post- and pre-intervention (kg) | 6.76 | 5.72 |
Difference in calve survival rate between post- and pre-intervention (%) 1 | 7.35 | 8.17 |
Difference in first calving age between post- and pre-intervention (months) | 12.5 | 6.5 |
Difference in calving interval between post- and pre-intervention (months) | 33.17 | 21.91 |
Average sales of buffalo calves (2010–2011) | 8647.25 | 26,247 |
Average sales of buffalo calves (2012–2015) | 10,943.38 | 30,758 |
Variables | Price (MYR) 1 |
---|---|
Buffalo calves per kg 2 | 5.50 |
Price of PKC per kg | 0.80 |
Feed cost per week (MYR/animal) | 7.20 |
Feed cost per year calf heifer (MYR/animal) | 49.00 |
Fertilizer cost (MYR/animal) | 64.79 |
Deworming cost (MYR/animal) | 0.50 |
ID tag cost (MYR/animal) | 2.00 |
Flushing cost (MYR/animal) | 5.60 |
Body Weight (kg) | |||||||||
---|---|---|---|---|---|---|---|---|---|
Month | Birth | 3 * | 6 | 9 | 12 | 15 | 18 | 21 | 24 |
Swamp (n = 35) | 34.7 ± 0.50 a | 99.9 ± 3.10 bc | 132.6±3.50 c | 163.6 ± 4.80 d | 189.8 ± 4.00 e | 235.3 ± 5.90 f | 271.1 ± 4.60 g | 307.9 ± 6.50 h | 320.7 ± 5.60 i |
Murrah Crossbred (n = 35) | 36.6 ± 0.40 b | 124.7 ± 2.80 bc | 160.5±2.70 d | 198.8 ± 3.00 e | 232.6 ± 3.40 f | 276.6 ± 3.30 g | 302.1 ± 3.90 h | 325.8 ± 4.20 i | 356.6 ± 5.90 j |
p-Value | |||||||||
Breeds | <0.05 | ||||||||
Months | <0.05 | ||||||||
Interactions | <0.05 |
Month | 0–3 * | 3–12 | 12–24 | 24–30 |
---|---|---|---|---|
Swamp (n = 35) | 0.73 ± 0.03 a | 0.32 ± 0.02 b | 0.30 ± 0.01 b | 0.39 ± 0.07 b |
Murrah crossbred (n = 35) | 0.98 ± 0.03 c | 0.37 ± 0.01 bd | 0.29 ± 0.01 be | 0.44 ± 0.08 bf |
p-Value | ||||
Breeds | <0.001 | |||
Months | 0.304 | |||
Interactions | 0.108 |
Increases in Net Income | Decreases in Net Income | ||||
---|---|---|---|---|---|
Breed | Swamp | Murrah Crossbred | Breed | Swamp | Murrah Crossbred |
Added Income Due to Change | MYR | MYR | Added Cost Due to Change | MYR | MYR |
1 Improved birth weight | 1.86 | 3.46 | 7 Fertilizer | 64.79 | 64.79 |
2 Increased number of calves | 4.13 | 12.10 | 8 Flushing | 13.26 | 16.80 |
3 Improvement number survival rate of calves | 2.02 | 4.94 | 9 Calf supplemental feed cost | 4.32 | 9.50 |
4 Increased sales of calves per year | 2296.13 | 4,511.00 | 10 Feed cost for increase total population of calf -heifer | 2.45 | 5.39 |
11 Deworming | 0.03 | 0.06 | |||
12 ID tag | 0.10 | 0.22 | |||
(A) Total increase revenue | 2304.14 | 4,531.50 | (B) Total increased cost | 84.95 | 96.76 |
Reduced cost due to change | Reduced income due to change | ||||
5 Shorter calving interval cost | 90.00 | 46.80 | Assume similar quality | 0 | 0 |
6 Shorter first calving age cost | 250.02 | 168.95 | |||
(C) Total decrease cost | 340.02 | 215.75 | (D) Total Foregone Revenue | 0 | 0 |
E. Subtotal added gains (A + C) | 2644.16 | 4,747.25 | F. Subtotal added costs (B + D) | 84.95 | 96.76 |
13 New Benefit (E − F) | Swamp = MYR 2644.16 − MYR 84.95 = MYR 2559.21 (USD 628.80) | ||||
Murrah cross = MYR 4747.25 − MYR 96.76 = MYR 4650.49 (USD 1142.63) |
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Mohd Azmi, A.F.; Abu Hassim, H.; Mohd Nor, N.; Ahmad, H.; Meng, G.Y.; Abdullah, P.; Abu Bakar, M.Z.; Vera, J.; Mohd Deli, N.S.; Salleh, A.; et al. Comparative Growth and Economic Performances between Indigenous Swamp and Murrah Crossbred Buffaloes in Malaysia. Animals 2021, 11, 957. https://doi.org/10.3390/ani11040957
Mohd Azmi AF, Abu Hassim H, Mohd Nor N, Ahmad H, Meng GY, Abdullah P, Abu Bakar MZ, Vera J, Mohd Deli NS, Salleh A, et al. Comparative Growth and Economic Performances between Indigenous Swamp and Murrah Crossbred Buffaloes in Malaysia. Animals. 2021; 11(4):957. https://doi.org/10.3390/ani11040957
Chicago/Turabian StyleMohd Azmi, Amirul Faiz, Hasliza Abu Hassim, Norhariani Mohd Nor, Hafandi Ahmad, Goh Yong Meng, Punimin Abdullah, Md Zuki Abu Bakar, Jaizurah Vera, Nurain Syahida Mohd Deli, Annas Salleh, and et al. 2021. "Comparative Growth and Economic Performances between Indigenous Swamp and Murrah Crossbred Buffaloes in Malaysia" Animals 11, no. 4: 957. https://doi.org/10.3390/ani11040957
APA StyleMohd Azmi, A. F., Abu Hassim, H., Mohd Nor, N., Ahmad, H., Meng, G. Y., Abdullah, P., Abu Bakar, M. Z., Vera, J., Mohd Deli, N. S., Salleh, A., & Zamri-Saad, M. (2021). Comparative Growth and Economic Performances between Indigenous Swamp and Murrah Crossbred Buffaloes in Malaysia. Animals, 11(4), 957. https://doi.org/10.3390/ani11040957