Mendelian Genetics Gregor Mendel is recognized as the father of genetics. Mendel, who was not scientifically trained, developed his theories in the 1850’s and 1860’s, without any knowledge of cell biology or the science of inheritance. Photo courtesy of Wikipedia. In later years, genes, chromosomes, and DNA were discovered and people began to understand how and why Mendel’s theories worked.
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Mendelian Geneticsgatotciptadi.lecture.ub.ac.id/...kuliah-2...indo-danInggris-FAPET3.pdfMendelian Genetics Gregor Mendel is recognized as the father of genetics. Mendel, who was not
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Mendelian GeneticsGregor Mendel is recognized as the
father of genetics.
Mendel, who was not scientifically
trained, developed his theories in the
1850’s and 1860’s, without any
knowledge of cell biology or the science
of inheritance.Photo courtesy of Wikipedia.
In later years, genes, chromosomes, and DNA were
discovered and people began to understand how and why
Mendel’s theories worked.
Robert Bakewell1700sEnglish Breeder of:
Shire horsesLeicester sheepLonghorn cattle
Usedinbreedingprogeny testing
Gregor Mendel
basic genetic principlesused pea plantsnot well understood
during his life
Mendel, G. 1866. Experiments on Plant Hybridization. Transactions of the Brünn Natural History Society.
1 Introduction: History and Development of Genetics .
2. Mendelism :Monohibryd and dihibryd Inheritance,
3. Exception of Mendelsm : intermedier, linkage ,, sex
limited, sex inlfluenced
4. Genetic Material I: Chromosome, DNA and Gen ,
Abberation
5. Multiple Allel
6. Class Discusion: Proup of 5: Paper and PPT, Presentation.
Topic 1-5.
7. Class Discusion: Proup of 5: Paper and PPT, Presentation.
Topic 1-5.
8. MIDTEST
Topic of Discussion :Genetics of Animal
9. Probability in Genetics Inheritance
10. Sex Determination , linked and crossing over
11. Introduction to Genetics Population
12. Factors influencen in Population
13. Introduction to Genetics Engineering
14. Class Discusion: Proup of 5: Paper and PPT, Presentation.
Topic 1-5.
15. Class Discusion: Proup of 5: Paper and PPT, Presentation.
Topic 1-5.
16 FINAL TEST
Mendel’s experiments dealt with the
relationship between an organism’s genotype
and its phenotype.
Genotype – the genetic composition of an organism.
Phenotype – the observable or measurable characteristics
(called traits) of that organism.
The relationship between phenotype and genotype is
expressed as the following equation:
P = G + E
P = phenotype,
G = genotype, and
E = environment.
To understand Mendel’s principles and
the relationships between phenotype and
genotype, it is necessary to understand what makes
up the genetic material of animals and how this is