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PG-Syllabi-Vol-01

II. Course Code
: GPB 601
III. Credit Hours
: 3(3+0)
IV. Why this course?
This course is an advancement of principles, various plant breeding methodologies
and procedures in the development of a complex population; MAS for selection of
qualitative and quantitative traits, Gene pyramiding, marker-based utilization of
exotic Germplasm and introgression libraries.
V. Aim of the course
To impart theoretical knowledge about advances in plant breeding.
VI. Theory
Unit I
Advances in reproductive biology of crops; Genes governing the whorls formation
and various models proposed; Pollen pistil interaction: biochemical and molecular
basis, environmental factors governing anthesis and bottlenecks for gene transfer.
Unit II
Plant Breeding methodologies: Classic versus modern; Over view of Pre and Post
Mendelian breeding methods in self and cross pollinated crops; Molecular and
transgenic breeding approaches; doubled haploid breeding, shuttle breeding, forward
and reverse breeding, speed breeding, participatory plant breeding, breeding for
organic situations.
Unit III
Principles and procedures in the formation of a complex population; Genetic basis of
population improvement in crop plants; Recurrent selection methods in self and cross
pollinated crops and their modifications; Convergent selection, divergent selection;
Recurrent selection, usefulness in hybrid breeding programs; Reciprocal recurrent
selection; Selection in clonally propagated crops – Assumptions and realities.
Unit IV
Choice of molecular markers for plant breeding efficiency, fingerprinting and genetic
diversity assessment, application of MAS for selection of qualitative and quantitative
traits; Gene pyramiding, accelerated backcrossing, marker-based utilization of exotic
germplasm, introgression libraries.
Unit V
Genetic resources: primary, secondary, tertiary and alien trans gene pool; Molecular
and biochemical basis of self-incompatibility and male sterility, nucleocytoplasmic
interactions with special reference to male sterility – genetic, biochemical and
molecular bases.

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