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Taxonomy Science of describing, naming, and classifying organisms. Designed by Linnaeus Based on morphology (form and structure) –Common name not useful.

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Presentation on theme: "Taxonomy Science of describing, naming, and classifying organisms. Designed by Linnaeus Based on morphology (form and structure) –Common name not useful."— Presentation transcript:

1 Taxonomy Science of describing, naming, and classifying organisms. Designed by Linnaeus Based on morphology (form and structure) –Common name not useful ( ex. Jellyfish)

2 Hierarchy Domain Kingdom Phylum Class Order Family Genus Species

3 Binomial Nomenclature Two names for every organism Based on Latin First word-Genus to which the organism belongs Second word-Species name of the the organism

4 Acer- Genus to which the red maple belongs rubrum- Species description

5 Three Domain System Domain Archea –Single-celled prokaryotes that have distinctive cell membranes and cell walls Domain Bacteria –Single-celled prokaryotes that are true bacteria Domain Eukarya –Eukaryote cells

6 Taxonomy leads to Phylogeny Evolutionary relationships Morphology Chromosomal Characteristics Sequence of proteins and DNA Embryological development Fossil Record

7 Systematics Modern approach to taxonomy Analyzes the diversity of organisms in the context of their natural relationships. Two methods –Phylogenetic Diagram or Tree –Cladogram

8 A branching diagram showing the evolutionary or ancestral relationships among a group of organism May change with new discoveries Phylogenetic Tree

9 Cladistics or Cladograms Use shared, derived characters as the only criterion for grouping taxa to see how closely they are related. A clade includes an ancestor and all of its descendants Shared characteristic is a feature that all members of a group have in common Derived character is a feature that evolved only within the group under consideration. (ex. Feathers are derived for birds) An out-group is a group that is distantly related, starting point for comparisons ( choose by determining which has fewer traits in common)

10 Using Dichotomous Keys http://www.students.ed.qut.edu.au/n2364379/ MDB377/DichotomousKey.html

11 All in the Family http://www.pbs.org/wgbh/evolution/change/fa mily/


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