Home / Agricultural education / STUDIES ON GENE FREQUENCIES OF POLYEMBRYONY AND KARYOTYPE IN FLUTED PUMPKIN (Telfairia occidentalis Hook. F.)

STUDIES ON GENE FREQUENCIES OF POLYEMBRYONY AND KARYOTYPE IN FLUTED PUMPKIN (Telfairia occidentalis Hook. F.)

 

Table Of Contents


Chapter ONE

1.1 Introduction
1.2 Background of study
1.3 Problem Statement
1.4 Objective of Study
1.5 Limitation of Study
1.6 Scope of Study
1.7 Significance of Study
1.8 Structure of the Research
1.9 Definition of Terms

Chapter TWO

2.1 Overview of Polyembryony
2.2 Genetic Basis of Polyembryony
2.3 Historical Perspective on Gene Frequencies
2.4 Studies on Karyotype in Fluted Pumpkin
2.5 Role of Genetics in Crop Improvement
2.6 Diversity and Inheritance of Polyembryony
2.7 Research on Telfairia occidentalis Hook. F.
2.8 Importance of Gene Frequencies
2.9 Factors Influencing Polyembryony
2.10 Current Trends in Genetic Research

Chapter THREE

3.1 Research Methodology Overview
3.2 Study Design and Sampling Techniques
3.3 Data Collection Methods
3.4 Genetic Analysis Procedures
3.5 Statistical Tools for Data Analysis
3.6 Ethical Considerations in Research
3.7 Quality Control Measures
3.8 Data Interpretation Techniques

Chapter FOUR

4.1 Analysis of Gene Frequencies
4.2 Comparison of Karyotype Variations
4.3 Correlation between Polyembryony and Genetics
4.4 Impact of Gene Frequencies on Crop Yield
4.5 Genetic Markers for Polyembryony
4.6 Discussion on Genetic Diversity
4.7 Genetic Mapping Studies
4.8 Implications for Crop Breeding Programs

Chapter FIVE

5.1 Conclusion and Summary
5.2 Key Findings Recap
5.3 Contributions to Genetic Research
5.4 Future Research Recommendations
5.5 Practical Applications of Study

Project Abstract

Five experiments were performed to investigate thepolyembryonic expressions and karyomorphology of fluted pumpkin(Telfairia occidentalis Hook. F.). The results obtained revealed threemorphotypes of polyembryony which included twin, triple andquadruple, irrespective of the shape of the pod. The threemorphotypes had side shoots that varied in length. Some wereunequal, a few of them were almost equal, and many hadrudimentary side shoots, which subsequently degenerated with time.Chi-square test between the pod shape and the embryo type depictedindependence (χ2= 1.02; P= 0.90) between pod shape and the embryotype. The triple and quadruple embryo types had the highest andlowest frequencies of occurrence, respectively. The gene frequenciesin the first year were 0.64 and 0.36 for polyembryony (S allele) andmonoembryony (s allele), respectively. The derived zygotic frequencieswere 0.41 for the homozygous dominant (SS); 0.46 for theheterozygous (Ss) and 0.13 for the homozygous recessive (ss). Thesesummed up to 0.87 for the multiple embryonic traits and 0.13 for thesingle embryonic trait. In the second year, the zygotic frequencies forthe homozygous dominant (SS), the heterozygous (Ss) and thehomozygous recessive (ss) were 0.33, 0.49 and 0.18, respectively.These corresponded with the 0.82 for the multiple embryonic traitsand 0.18 for the single embryonic trait. Chi square analysis showedthat the gene frequencies in both years did not differ significantly (χ2=0.017; P= 0.96). The results obtained from the cytological studies offluted pumpkin revealed the interphase and mitotic stages of the cellcycle, and a diploid chromosome number of 2n = 22. There weretraces of polyploids namely; aneuploids (2n = 22 + 1), triploid (3n =Five experiments were performed to investigate thepolyembryonic expressions and karyomorphology of fluted pumpkin(Telfairia occidentalis Hook. F.). The results obtained revealed threemorphotypes of polyembryony which included twin, triple andquadruple, irrespective of the shape of the pod. The threemorphotypes had side shoots that varied in length. Some wereunequal, a few of them were almost equal, and many hadrudimentary side shoots, which subsequently degenerated with time.Chi-square test between the pod shape and the embryo type depictedindependence (χ2= 1.02; P= 0.90) between pod shape and the embryotype. The triple and quadruple embryo types had the highest andlowest frequencies of occurrence, respectively. The gene frequenciesin the first year were 0.64 and 0.36 for polyembryony (S allele) andmonoembryony (s allele), respectively. The derived zygotic frequencieswere 0.41 for the homozygous dominant (SS); 0.46 for theheterozygous (Ss) and 0.13 for the homozygous recessive (ss). Thesesummed up to 0.87 for the multiple embryonic traits and 0.13 for thesingle embryonic trait. In the second year, the zygotic frequencies forthe homozygous dominant (SS), the heterozygous (Ss) and thehomozygous recessive (ss) were 0.33, 0.49 and 0.18, respectively.These corresponded with the 0.82 for the multiple embryonic traitsand 0.18 for the single embryonic trait. Chi square analysis showedthat the gene frequencies in both years did not differ significantly (χ2=0.017; P= 0.96). The results obtained from the cytological studies offluted pumpkin revealed the interphase and mitotic stages of the cellcycle, and a diploid chromosome number of 2n = 22. There weretraces of polyploids namely; aneuploids (2n = 22 + 1), triploid (3n =

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