INFLUENCE OF GENOTYPE AND FEED RESTRICTION ON POST-WEANING GROWTH PERFORMANCE OF DOMESTIC RABBIT
Table Of Contents
Chapter ONE
INTRODUCTION
- 1.1Introduction
- 1.2Background of Study
- 1.3Problem Statement
- 1.4Objective of Study
- 1.5Limitation of Study
- 1.6Scope of Study
- 1.7Significance of Study
- 1.8Structure of the Research
- 1.9Definition of Terms
Chapter TWO
LITERATURE REVIEW
- 2.1Overview of Genotype and Feed Restriction
- 2.2Growth Performance in Domestic Rabbits
- 2.3Effects of Genotype on Growth Performance
- 2.4Impact of Feed Restriction on Growth Performance
- 2.5Relationship between Genotype and Feed Restriction
- 2.6Factors Influencing Post-Weaning Growth Performance
- 2.7Comparative Studies on Genotype and Feed Restriction
- 2.8Nutritional Requirements for Optimal Growth
- 2.9Management Practices for Growth Enhancement
- 2.10Recent Developments in Rabbit Growth Performance Research
Chapter THREE
RESEARCH METHODOLOGY
- 3.1Research Design and Methodology
- 3.2Sampling Techniques and Population
- 3.3Data Collection Methods
- 3.4Experimental Setup and Protocols
- 3.5Variables and Measurements
- 3.6Statistical Analysis Procedures
- 3.7Ethical Considerations
- 3.8Quality Control Measures
Chapter FOUR
DATA PRESENTATION AND ANALYSIS
- 4.1Overview of Research Findings
- 4.2Genotype Influence on Growth Performance
- 4.3Feed Restriction Effects on Growth
- 4.4Combined Impact of Genotype and Feed Restriction
- 4.5Factors Contributing to Growth Disparities
- 4.6Comparison with Previous Studies
- 4.7Implications for Rabbit Production
- 4.8Recommendations for Future Research
Chapter FIVE
SUMMARY, CONCLUSION AND RECOMMENDATIONS
- 5.1Summary of Findings
- 5.2Conclusions
- 5.3Research Implications
- 5.4Practical Applications
- 5.5Contribution to Knowledge
- 5.6Limitations of the Study
- 5.7Suggestions for Further Research
- 5.8Final Remarks
Project Abstract
Data on 102 progeny of New Zealand White (NZ), Chinchilla (CH) and Dutch (DU) breeds of rabbits and their crossbreds obtained from birth to 14 weeks were used for this study. Genotype and feeding regime were the factors of interest. The genotypes were New Zealand White x New Zealand White (NZxNZ), Chinchilla×Chinchilla (CHxCH), Dutch×Dutch (DU×DU), New Zealand White x Chinchilla (NZxCH), New Zealand White x Dutch (NZxDU) and Chinchilla×Dutch (CHxDU).The feeding regime consists of ad libitum feeding (A), 14 hours feed restriction/day (B), 10 hours feed restriction/day (C) and 6 hours feed restriction/day (D). The experiment was conducted at the National Agricultural Extension Research and Liaison Services (NAERLS) Skill Acquisition Farm, Ahmadu Bello University, Zaria-Nigeria. The traits studied at pre-weaning were litter size at birth (LSB), litter weight at birth (LWB), litter size at week 2 (LSW2), litter body weight at week 2 (LBW2), litter size at week 4 (LSW4), litter body weight at week 4 (LBW4), litter size at week 6 (LSW6) and litter body weight at week 6 (LBW6). Traits studied after weaning were body weight (BW), body length (BL), chest girth (CG), head-to-shoulder(HS), shoulder-to-tail drop (ST), length of hind leg (LHL), ear length (EL) and height at withers (HTW). Data collected were subjected to Analysis of variance and correlation procedure in SAS and a fixed effect model was used for the analysis with significant means separated using Duncan Multiple Range Test. There were significant (P<0.05) differences among the genotypes for LWB, LBW2, LBW4, LBW6 and post-weaning growth performance at the different ages. Chinchilla x Chinchilla was superior over other genotypes for most of the post-weaning growth traits studied at different ages (480.00 g, 650.00g, 941.30 g, 1206.00 g and 1401.75g mean body weights at week 6, 8, 10, 12 and 14 respectively). This was followed by CHxDU (476.30 g, 601.30 g, 751.00 g, 910.00 g and 1086.25 g for the same parameters. The coefficients of correlation were from low to high (0.00-0.99) and were positively and negatively correlated in all the genotypes except for CHxDU which were all positive. The results indicated that CHxCH and CHxDU genotypes could be most suitable for optimum genetic improvement. The mean body weights obtained were 772.67±38.72 g, 688.62±32.16 g, 730.75±35.24 g and 705.37±33.45 g for feeding regime A, B, C and D respectively which were not significantly different (P>0.05). It can be concluded that CHxCH genotype performed better in most of the post-weaning growth traits and rabbit farmers can use any of the feeding regimes especially during scarcity of feed and forages for rabbit feeding. The CHxCH is recommended for higher litter size and body weight at weaning while any of the feeding regimes can be adopted.
Project Overview