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PG-Syllabi-Vol-01

III. Credit Hours
: 2(2+0)
IV. Why this course?
Population improvement programmes are the basis of genetic enhancement in
cross pollinated crops. This course is needed to make the students aware about the
population genetics and its role in crop improvement.
V. Aim of the course
To impart knowledge on structure, properties and their breeding values of different
population.
VI. Theory
Unit I
Population: Properties of population, Mendelian population; Genetic constitution of
a population through time, space, age structure, etc.; Frequencies of genes and
genotypes; Causes of change: population size, differences in fertility and viability,
migration and mutation.
Unit II
Hardy-Weinberg equilibrium, Hardy-Weinberg law, Proof and applications of the
Hardy-Weinberg law, Test of Hardy-Weinberg equilibrium; Mating frequencies:


Plant Sciences–Genetics and Plant Breeding
53
Non-dominance, Codominance, Snyder’s ratio, importance and its effect over random
mating in succeeding generations.
Unit III
Multiple alleles, More than one locus, Sex linked genes; Use of gene and genotypic
frequencies evaluation in field population level; Interpretations - Changes of gene
frequency, Migration, Mutation, Recurrent and non-recurrent Selection; Balance
between selection and mutation; Selection favoring heterozygotes; Overdominance
for fitness.
Unit IV
Mating systems, Random mating population, Nonrandom mating: selfing –inbreeding
coefficient, panmictic index, sibmating, Assortative mating and disassortative
mating; Pedigree populations and close inbreeding, Estimation of linkage
disequilibrium, Correlation between relatives and estimation of F; Effect of
inbreeding and sibbing in cross pollinated crops; Gene substitution and average
effects; Breeding value- Genetic drift; Genetic slippage, Co-adapted gene complexes;
Homoeostasis- Adaptive organization of gene pools; Polymorphism- Balanced and
Non-balanced polymorphism, heterozygous advantage- Survival of recessive and
deleterious alleles in populations.

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