SlideShare a Scribd company logo
1 of 24
5.4: Cladistics
Understandings
 A clade is a group of organisms that have
evolved from a common ancestor.
 Evidence for which species are part of a clade
can be obtained from the base sequences of a
gene or the corresponding amino acid sequence
of a protein.
 Sequence differences accumulate gradually so
there is a positive correlation between the
number of differences between two species and
the time since they diverged from a common
ancestor.
 Traits can be analogous or homologous.
 Cladograms are tree diagrams that show the
most probable sequence of divergence in clades.
 Evidence from cladistics has shown that
classifications from some groups based on
structure did not correspond with the
evolutionary origins of a group or species.
Applications and Skills
 A: Cladograms including
humans and other
primates.
 A: Reclassification of the
figwort family using
evidence from cladistics.
 S: Analysis of cladograms
to deduce evolutionary
relationships.
Cladistics (From the
ancient Greek for
"branch") is a
method of classifying
species of organisms
into groups
called clades, which
consist of an
ancestor organism
and all its
descendants (and
nothing else).
Organisms are classified
according to physical,
cellular, and biochemical
evidence
http://thesis2010.micadesign.org/kropp/images/research/bird_icon.png
http://www2.le.ac.uk/departments/genetics/vgec/diagrams/21%20Gene%20u
nravelled.jpg/image_preview
Primitive Traits
 Same structure and function
 Developed earlier on in organisms
being studied
http://i.dailymail.co.uk/i/pix/2011/07/25/article-2018391-0D24AE9B00000578-
470_634x533.jpg
Derived Traits
 Developed more recently as a
modification of a previous trait
http://phenomena.nationalgeographic.com/files/2013/01/Human_chimp-brain.jpg
Homologous structures are inherited
from a common ancestor
Analogous structures
have similar form and
function due to
convergent evolution,
they do not stem from a
common ancestor
Biochemical Evidence
 Comparing DNA sequences and protein structures
http://www.qm.qld.gov.au/Find+out+about/Behind+the+Scenes/Molecular+identities+lab/~/media/Images/Find%20
out%20about/Behind%20the%20scenes/Molecular%20identities%20lab/Genetic%20labs/dna-and-species-
id.jpg?w=375&h=123&as=1
An evolutionary clock
involves calculating the
time since species
diverged by comparing
the number of differences
in their DNA and/or
protein sequences.
Scientists who originated
the idea calibrated the
amino acid differences in
haemoglobin with times
derived from the fossil
record.
http://victorygirlsblog.com/wp-content/uploads/2015/09/clock1.jpg
The assumption is that these changes occur at a regular rate.
(which may not always be the case)
Therefore if species A had 5 differences from species B and
10 differences from species C, then the lineages for A and C
must have split twice as long ago as for A and B
C B A
Time
Characteristics change over
time, thus the amount of
change can help determine
relationships
Groups of organisms are
descended from a common
ancestor
There is a branching pattern in
the evolution of species and
when a split occurs, two distinct
species eventuate.
TOK
Read this article:
Closer to man than ape
What reasons are given for
including chimps in genus
Homo? Do you think humans
will ever be reclassified Pan?
Vertebrate
Hair Shelled
eggs
Amniotic Egg
Four Limbs
Bony Skeleton
Each clade
is determined by
common characteristics
of its members that are
different from that of
the other species from
which it has diverged
These traits which tie the clades
together are called shared
derived characters
• These two cladograms are identical (although they don’t look it)
• The shape and the order of the terminal nodes does not matter.
• The only information to be gathered from the cladograms below is the
order of nesting of sister clades and the relative relatedness of species
http://commons.wikimedia.org/wiki/File:Identical_cladograms.s
Human HumanChimp ChimpGorilla Gorilla
Root
Terminal nodes
Sister clades: have a
common ancestor
Out group: Defines
the ancestral
characters
Nodes:
Common ancestors
Characters Shark Frog Kangaroo Human
Vertebrae X X X X
Two pairs of
limbs
X X X
Mammary glands X X
Placenta X
1) Compile a table of the characters being
compared
Modified from:
http://www.bu.edu/gk12/eric/cladogram.pd
Vertebrae:
Shark
Two Pairs
of Limbs:
Frog
Mammary
Glands:
Kangaroo
Placenta:
Human
2) Use the data to
construct a Venn diagram,
Start with the
characteristic
shared by all
taxa in the
biggest circle
and work
inwards
Shark Frog Kangaroo Human
Mammary Glands
Lungs
Vertebrae
Placenta
3) Convert the Venn diagram into a
cladogram
Characters Sponge Jellyfish Flatworm Earth-
worm
Snail Fruit fly Starfish Human
Cells with flagella X X X X X X X X
Symmetry X X X X X X X
Bilateral symmetry X X X X X X
Mesoderm X X X X X
Head develops first X X X
Anus develops first X X
Segmented body X X
Calcified shell X
Chitinous Exoskeleton X
Water Vascular
system
X
Vertebrae X
Now you try! Make a Venn diagram for this
data.
1
2
3
DCBA
Of the three nodes,
3 is most recent and 1
occurred earliest.
Node 3 is the most recent
common ancestor for C and D
Node 2 is the most recent common
ancestor for B and C
Node 1 is the common ancestor of all taxa
Homework
 TOK- pg 264
 Exercises 14 and 15, pg 266
 See worked examples on
261 and 265
If any part is unclear, come
prepared with your questions
next time.
Vocab
 Plesiomorphic traits
 Apomorphic traits
 Cladistics
 Clade
 Monophyletic group
 Paraphyletic group
 Homologous traits
 Analagous traits
 Cladogram
 Phylogeny

More Related Content

What's hot

What's hot (20)

Animal Systematics Lecture 3
Animal Systematics Lecture 3Animal Systematics Lecture 3
Animal Systematics Lecture 3
 
Species concept
Species conceptSpecies concept
Species concept
 
Importance and Applications of Systematics evolution
Importance and Applications  of Systematics evolutionImportance and Applications  of Systematics evolution
Importance and Applications of Systematics evolution
 
Speciation
SpeciationSpeciation
Speciation
 
Macroevolution
MacroevolutionMacroevolution
Macroevolution
 
types of species
types of species types of species
types of species
 
International Code of Zoological Nomenclature articles 1-9
International Code of Zoological Nomenclature articles 1-9International Code of Zoological Nomenclature articles 1-9
International Code of Zoological Nomenclature articles 1-9
 
Speciation
SpeciationSpeciation
Speciation
 
Evolution lecture 2
Evolution lecture 2Evolution lecture 2
Evolution lecture 2
 
Taxonomic characters 7
Taxonomic characters 7Taxonomic characters 7
Taxonomic characters 7
 
Mechanism of speciation
Mechanism of speciationMechanism of speciation
Mechanism of speciation
 
Species concepts 4
Species concepts 4Species concepts 4
Species concepts 4
 
Species concept
Species conceptSpecies concept
Species concept
 
Orthogenesis, Allometry & Adaptive Radiations
Orthogenesis, Allometry & Adaptive RadiationsOrthogenesis, Allometry & Adaptive Radiations
Orthogenesis, Allometry & Adaptive Radiations
 
Taxonomic categories 6
Taxonomic categories 6Taxonomic categories 6
Taxonomic categories 6
 
Microtaxonomy
MicrotaxonomyMicrotaxonomy
Microtaxonomy
 
Taxonomic Characters
Taxonomic CharactersTaxonomic Characters
Taxonomic Characters
 
Species concept
Species conceptSpecies concept
Species concept
 
Cladistics
CladisticsCladistics
Cladistics
 
Species Concepts And Speciation
Species Concepts And SpeciationSpecies Concepts And Speciation
Species Concepts And Speciation
 

Viewers also liked

Sbi3u1 diversity 3 - origins of diversity
Sbi3u1   diversity 3 - origins of diversitySbi3u1   diversity 3 - origins of diversity
Sbi3u1 diversity 3 - origins of diversitybtait2
 
Cladistics
CladisticsCladistics
Cladisticszqc
 
5.1 evidence for evolution
5.1 evidence for evolution5.1 evidence for evolution
5.1 evidence for evolutionlucascw
 
Taxonomy by Ayushi Srivastava
Taxonomy by Ayushi SrivastavaTaxonomy by Ayushi Srivastava
Taxonomy by Ayushi SrivastavaAyushi Srivastava
 
Alterations in Biochemical and Haematological Indices in Bufo regularis (Amp...
Alterations in  Biochemical and Haematological Indices in Bufo regularis (Amp...Alterations in  Biochemical and Haematological Indices in Bufo regularis (Amp...
Alterations in Biochemical and Haematological Indices in Bufo regularis (Amp...Emmanuel Ogbomida
 
Dylankynoteaxolotl*2
Dylankynoteaxolotl*2Dylankynoteaxolotl*2
Dylankynoteaxolotl*2room18shows
 
1.1 Cell Theory, Cell Specialization, and Cell Replacement
1.1 Cell Theory, Cell Specialization, and Cell Replacement1.1 Cell Theory, Cell Specialization, and Cell Replacement
1.1 Cell Theory, Cell Specialization, and Cell Replacementlucascw
 
1.14 Why are organisms classified into groups ?
1.14 Why are organisms classified into groups ?1.14 Why are organisms classified into groups ?
1.14 Why are organisms classified into groups ?netzwellenedu
 
Cladistic systematics
Cladistic systematicsCladistic systematics
Cladistic systematicsEnoch Taclan
 
3.3 meiosis
3.3 meiosis3.3 meiosis
3.3 meiosislucascw
 
3.1 genes (2)
3.1 genes (2)3.1 genes (2)
3.1 genes (2)lucascw
 
5.4 cladistic.doc
5.4 cladistic.doc5.4 cladistic.doc
5.4 cladistic.docBob Smullen
 
Genetics 1: Classification- Kingdoms & Cladograms
Genetics 1: Classification- Kingdoms & CladogramsGenetics 1: Classification- Kingdoms & Cladograms
Genetics 1: Classification- Kingdoms & CladogramsRobin Seamon
 
Molecular taxonomy
Molecular taxonomyMolecular taxonomy
Molecular taxonomyManideep Raj
 
Amphibian Metamorphosis
Amphibian MetamorphosisAmphibian Metamorphosis
Amphibian MetamorphosisSteffie Dmello
 
Biology - Amphibians
Biology - AmphibiansBiology - Amphibians
Biology - AmphibiansJoNnS113
 

Viewers also liked (20)

6chapter18
6chapter186chapter18
6chapter18
 
Sbi3u1 diversity 3 - origins of diversity
Sbi3u1   diversity 3 - origins of diversitySbi3u1   diversity 3 - origins of diversity
Sbi3u1 diversity 3 - origins of diversity
 
Presentation1
Presentation1Presentation1
Presentation1
 
Cladistics
CladisticsCladistics
Cladistics
 
5.1 evidence for evolution
5.1 evidence for evolution5.1 evidence for evolution
5.1 evidence for evolution
 
Taxonomy by Ayushi Srivastava
Taxonomy by Ayushi SrivastavaTaxonomy by Ayushi Srivastava
Taxonomy by Ayushi Srivastava
 
Alterations in Biochemical and Haematological Indices in Bufo regularis (Amp...
Alterations in  Biochemical and Haematological Indices in Bufo regularis (Amp...Alterations in  Biochemical and Haematological Indices in Bufo regularis (Amp...
Alterations in Biochemical and Haematological Indices in Bufo regularis (Amp...
 
Dylankynoteaxolotl*2
Dylankynoteaxolotl*2Dylankynoteaxolotl*2
Dylankynoteaxolotl*2
 
1.1 Cell Theory, Cell Specialization, and Cell Replacement
1.1 Cell Theory, Cell Specialization, and Cell Replacement1.1 Cell Theory, Cell Specialization, and Cell Replacement
1.1 Cell Theory, Cell Specialization, and Cell Replacement
 
1.14 Why are organisms classified into groups ?
1.14 Why are organisms classified into groups ?1.14 Why are organisms classified into groups ?
1.14 Why are organisms classified into groups ?
 
Cladistic systematics
Cladistic systematicsCladistic systematics
Cladistic systematics
 
3.3 meiosis
3.3 meiosis3.3 meiosis
3.3 meiosis
 
3.1 genes (2)
3.1 genes (2)3.1 genes (2)
3.1 genes (2)
 
5.4 cladistic.doc
5.4 cladistic.doc5.4 cladistic.doc
5.4 cladistic.doc
 
Systematics Lecture: Phenetics
Systematics Lecture: PheneticsSystematics Lecture: Phenetics
Systematics Lecture: Phenetics
 
3 schools of systematics
3 schools of systematics3 schools of systematics
3 schools of systematics
 
Genetics 1: Classification- Kingdoms & Cladograms
Genetics 1: Classification- Kingdoms & CladogramsGenetics 1: Classification- Kingdoms & Cladograms
Genetics 1: Classification- Kingdoms & Cladograms
 
Molecular taxonomy
Molecular taxonomyMolecular taxonomy
Molecular taxonomy
 
Amphibian Metamorphosis
Amphibian MetamorphosisAmphibian Metamorphosis
Amphibian Metamorphosis
 
Biology - Amphibians
Biology - AmphibiansBiology - Amphibians
Biology - Amphibians
 

Similar to 5.4 cladistics student copy

IB Biology 5.4 Slides: Cladistics
IB Biology 5.4 Slides: CladisticsIB Biology 5.4 Slides: Cladistics
IB Biology 5.4 Slides: CladisticsJacob Cedarbaum
 
Ch.20 lecture presentation1
Ch.20 lecture presentation1Ch.20 lecture presentation1
Ch.20 lecture presentation1Muhammad Tiwana
 
Evolutionary-Relationships-of-Organism-2.pptx
Evolutionary-Relationships-of-Organism-2.pptxEvolutionary-Relationships-of-Organism-2.pptx
Evolutionary-Relationships-of-Organism-2.pptxShella69
 
Ch. 6.3 Evidence of Evolution
Ch. 6.3 Evidence of EvolutionCh. 6.3 Evidence of Evolution
Ch. 6.3 Evidence of Evolutionsekuhar
 
Biol102 chp26-pp-spr10-100312094514-phpapp02
Biol102 chp26-pp-spr10-100312094514-phpapp02Biol102 chp26-pp-spr10-100312094514-phpapp02
Biol102 chp26-pp-spr10-100312094514-phpapp02Cleophas Rwemera
 
Biol102 chp26-pp-spr10-100312094514-phpapp02
Biol102 chp26-pp-spr10-100312094514-phpapp02Biol102 chp26-pp-spr10-100312094514-phpapp02
Biol102 chp26-pp-spr10-100312094514-phpapp02Cleophas Rwemera
 
Lab 12 Building Phylogenies Objectives .docx
Lab 12     Building Phylogenies    Objectives .docxLab 12     Building Phylogenies    Objectives .docx
Lab 12 Building Phylogenies Objectives .docxDIPESH30
 
Ch. 6.3 Evidence of Evolution
Ch. 6.3 Evidence of EvolutionCh. 6.3 Evidence of Evolution
Ch. 6.3 Evidence of Evolutionsekuhar
 
IB Biology Option D.5: Phylogeny and systematics
IB Biology Option D.5: Phylogeny and systematicsIB Biology Option D.5: Phylogeny and systematics
IB Biology Option D.5: Phylogeny and systematicsJason de Nys
 
Phylogeny & classification
Phylogeny & classificationPhylogeny & classification
Phylogeny & classificationilanasaxe
 
Chapter 18.2
Chapter 18.2Chapter 18.2
Chapter 18.2fj560
 
Chapter25
Chapter25Chapter25
Chapter25May Mar
 
Evolution 5.4 cladistics /IBDP core/
Evolution 5.4 cladistics /IBDP core/Evolution 5.4 cladistics /IBDP core/
Evolution 5.4 cladistics /IBDP core/Mariam Ohanyan
 

Similar to 5.4 cladistics student copy (20)

IB Biology 5.4 Slides: Cladistics
IB Biology 5.4 Slides: CladisticsIB Biology 5.4 Slides: Cladistics
IB Biology 5.4 Slides: Cladistics
 
5.4 cladistic
5.4 cladistic5.4 cladistic
5.4 cladistic
 
Evolutionary biology
Evolutionary biologyEvolutionary biology
Evolutionary biology
 
Ch.20 lecture presentation1
Ch.20 lecture presentation1Ch.20 lecture presentation1
Ch.20 lecture presentation1
 
Evolutionary-Relationships-of-Organism-2.pptx
Evolutionary-Relationships-of-Organism-2.pptxEvolutionary-Relationships-of-Organism-2.pptx
Evolutionary-Relationships-of-Organism-2.pptx
 
Ch. 6.3 Evidence of Evolution
Ch. 6.3 Evidence of EvolutionCh. 6.3 Evidence of Evolution
Ch. 6.3 Evidence of Evolution
 
Biol102 chp26-pp-spr10-100312094514-phpapp02
Biol102 chp26-pp-spr10-100312094514-phpapp02Biol102 chp26-pp-spr10-100312094514-phpapp02
Biol102 chp26-pp-spr10-100312094514-phpapp02
 
Biol102 chp26-pp-spr10-100312094514-phpapp02
Biol102 chp26-pp-spr10-100312094514-phpapp02Biol102 chp26-pp-spr10-100312094514-phpapp02
Biol102 chp26-pp-spr10-100312094514-phpapp02
 
Lab 12 Building Phylogenies Objectives .docx
Lab 12     Building Phylogenies    Objectives .docxLab 12     Building Phylogenies    Objectives .docx
Lab 12 Building Phylogenies Objectives .docx
 
Ch. 6.3 Evidence of Evolution
Ch. 6.3 Evidence of EvolutionCh. 6.3 Evidence of Evolution
Ch. 6.3 Evidence of Evolution
 
Molecular homology
Molecular homologyMolecular homology
Molecular homology
 
IB Biology Option D.5: Phylogeny and systematics
IB Biology Option D.5: Phylogeny and systematicsIB Biology Option D.5: Phylogeny and systematics
IB Biology Option D.5: Phylogeny and systematics
 
Phylogeny & classification
Phylogeny & classificationPhylogeny & classification
Phylogeny & classification
 
The Family Tree
The Family TreeThe Family Tree
The Family Tree
 
Chapter 18.2
Chapter 18.2Chapter 18.2
Chapter 18.2
 
Forensic Science
Forensic ScienceForensic Science
Forensic Science
 
Chapter25
Chapter25Chapter25
Chapter25
 
Taxonomy
TaxonomyTaxonomy
Taxonomy
 
Taxonomy
TaxonomyTaxonomy
Taxonomy
 
Evolution 5.4 cladistics /IBDP core/
Evolution 5.4 cladistics /IBDP core/Evolution 5.4 cladistics /IBDP core/
Evolution 5.4 cladistics /IBDP core/
 

More from lucascw

6.6 hormones, homeostasis, and reproduction
6.6 hormones, homeostasis, and reproduction6.6 hormones, homeostasis, and reproduction
6.6 hormones, homeostasis, and reproductionlucascw
 
10.3 gene pools and speciation
10.3 gene pools and speciation10.3 gene pools and speciation
10.3 gene pools and speciationlucascw
 
10.2 inherritance
10.2 inherritance10.2 inherritance
10.2 inherritancelucascw
 
10.1 meiosis
10.1 meiosis10.1 meiosis
10.1 meiosislucascw
 
3.5 part 2
3.5 part 23.5 part 2
3.5 part 2lucascw
 
3.5 part 1
3.5 part 13.5 part 1
3.5 part 1lucascw
 
3.4 inheritance
3.4 inheritance3.4 inheritance
3.4 inheritancelucascw
 
3.2 chromosomes
3.2 chromosomes3.2 chromosomes
3.2 chromosomeslucascw
 
7.3 translation
7.3 translation7.3 translation
7.3 translationlucascw
 
7.2 transcription
7.2 transcription7.2 transcription
7.2 transcriptionlucascw
 
6.3 defense against infectious diseases
6.3 defense against infectious diseases6.3 defense against infectious diseases
6.3 defense against infectious diseaseslucascw
 
7.1 dna structure and replication
7.1 dna structure and replication7.1 dna structure and replication
7.1 dna structure and replicationlucascw
 
6.2 bloodflow
6.2 bloodflow6.2 bloodflow
6.2 bloodflowlucascw
 
6.1 digestion
6.1 digestion6.1 digestion
6.1 digestionlucascw
 
2.7 replication, transcription, translation
2.7 replication, transcription, translation2.7 replication, transcription, translation
2.7 replication, transcription, translationlucascw
 
2.5 enzymes
2.5 enzymes2.5 enzymes
2.5 enzymeslucascw
 
2.4 proteins
2.4 proteins2.4 proteins
2.4 proteinslucascw
 
2.3 carbohydrates and lipids
2.3 carbohydrates and lipids2.3 carbohydrates and lipids
2.3 carbohydrates and lipidslucascw
 
2.1 molecules to metabolism
2.1 molecules to metabolism2.1 molecules to metabolism
2.1 molecules to metabolismlucascw
 
8.3 photosynthesis
8.3 photosynthesis8.3 photosynthesis
8.3 photosynthesislucascw
 

More from lucascw (20)

6.6 hormones, homeostasis, and reproduction
6.6 hormones, homeostasis, and reproduction6.6 hormones, homeostasis, and reproduction
6.6 hormones, homeostasis, and reproduction
 
10.3 gene pools and speciation
10.3 gene pools and speciation10.3 gene pools and speciation
10.3 gene pools and speciation
 
10.2 inherritance
10.2 inherritance10.2 inherritance
10.2 inherritance
 
10.1 meiosis
10.1 meiosis10.1 meiosis
10.1 meiosis
 
3.5 part 2
3.5 part 23.5 part 2
3.5 part 2
 
3.5 part 1
3.5 part 13.5 part 1
3.5 part 1
 
3.4 inheritance
3.4 inheritance3.4 inheritance
3.4 inheritance
 
3.2 chromosomes
3.2 chromosomes3.2 chromosomes
3.2 chromosomes
 
7.3 translation
7.3 translation7.3 translation
7.3 translation
 
7.2 transcription
7.2 transcription7.2 transcription
7.2 transcription
 
6.3 defense against infectious diseases
6.3 defense against infectious diseases6.3 defense against infectious diseases
6.3 defense against infectious diseases
 
7.1 dna structure and replication
7.1 dna structure and replication7.1 dna structure and replication
7.1 dna structure and replication
 
6.2 bloodflow
6.2 bloodflow6.2 bloodflow
6.2 bloodflow
 
6.1 digestion
6.1 digestion6.1 digestion
6.1 digestion
 
2.7 replication, transcription, translation
2.7 replication, transcription, translation2.7 replication, transcription, translation
2.7 replication, transcription, translation
 
2.5 enzymes
2.5 enzymes2.5 enzymes
2.5 enzymes
 
2.4 proteins
2.4 proteins2.4 proteins
2.4 proteins
 
2.3 carbohydrates and lipids
2.3 carbohydrates and lipids2.3 carbohydrates and lipids
2.3 carbohydrates and lipids
 
2.1 molecules to metabolism
2.1 molecules to metabolism2.1 molecules to metabolism
2.1 molecules to metabolism
 
8.3 photosynthesis
8.3 photosynthesis8.3 photosynthesis
8.3 photosynthesis
 

Recently uploaded

Chemistry 4th semester series (krishna).pdf
Chemistry 4th semester series (krishna).pdfChemistry 4th semester series (krishna).pdf
Chemistry 4th semester series (krishna).pdfSumit Kumar yadav
 
VIRUSES structure and classification ppt by Dr.Prince C P
VIRUSES structure and classification ppt by Dr.Prince C PVIRUSES structure and classification ppt by Dr.Prince C P
VIRUSES structure and classification ppt by Dr.Prince C PPRINCE C P
 
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...Sérgio Sacani
 
Green chemistry and Sustainable development.pptx
Green chemistry  and Sustainable development.pptxGreen chemistry  and Sustainable development.pptx
Green chemistry and Sustainable development.pptxRajatChauhan518211
 
Chromatin Structure | EUCHROMATIN | HETEROCHROMATIN
Chromatin Structure | EUCHROMATIN | HETEROCHROMATINChromatin Structure | EUCHROMATIN | HETEROCHROMATIN
Chromatin Structure | EUCHROMATIN | HETEROCHROMATINsankalpkumarsahoo174
 
GBSN - Microbiology (Unit 1)
GBSN - Microbiology (Unit 1)GBSN - Microbiology (Unit 1)
GBSN - Microbiology (Unit 1)Areesha Ahmad
 
Biopesticide (2).pptx .This slides helps to know the different types of biop...
Biopesticide (2).pptx  .This slides helps to know the different types of biop...Biopesticide (2).pptx  .This slides helps to know the different types of biop...
Biopesticide (2).pptx .This slides helps to know the different types of biop...RohitNehra6
 
Orientation, design and principles of polyhouse
Orientation, design and principles of polyhouseOrientation, design and principles of polyhouse
Orientation, design and principles of polyhousejana861314
 
Recombinant DNA technology (Immunological screening)
Recombinant DNA technology (Immunological screening)Recombinant DNA technology (Immunological screening)
Recombinant DNA technology (Immunological screening)PraveenaKalaiselvan1
 
GFP in rDNA Technology (Biotechnology).pptx
GFP in rDNA Technology (Biotechnology).pptxGFP in rDNA Technology (Biotechnology).pptx
GFP in rDNA Technology (Biotechnology).pptxAleenaTreesaSaji
 
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...Labelling Requirements and Label Claims for Dietary Supplements and Recommend...
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...Lokesh Kothari
 
DIFFERENCE IN BACK CROSS AND TEST CROSS
DIFFERENCE IN  BACK CROSS AND TEST CROSSDIFFERENCE IN  BACK CROSS AND TEST CROSS
DIFFERENCE IN BACK CROSS AND TEST CROSSLeenakshiTyagi
 
Botany krishna series 2nd semester Only Mcq type questions
Botany krishna series 2nd semester Only Mcq type questionsBotany krishna series 2nd semester Only Mcq type questions
Botany krishna series 2nd semester Only Mcq type questionsSumit Kumar yadav
 
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral Analysis
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral AnalysisRaman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral Analysis
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral AnalysisDiwakar Mishra
 
GBSN - Biochemistry (Unit 1)
GBSN - Biochemistry (Unit 1)GBSN - Biochemistry (Unit 1)
GBSN - Biochemistry (Unit 1)Areesha Ahmad
 
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCE
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCESTERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCE
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCEPRINCE C P
 
Botany 4th semester series (krishna).pdf
Botany 4th semester series (krishna).pdfBotany 4th semester series (krishna).pdf
Botany 4th semester series (krishna).pdfSumit Kumar yadav
 
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptx
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptxSOLUBLE PATTERN RECOGNITION RECEPTORS.pptx
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptxkessiyaTpeter
 
Presentation Vikram Lander by Vedansh Gupta.pptx
Presentation Vikram Lander by Vedansh Gupta.pptxPresentation Vikram Lander by Vedansh Gupta.pptx
Presentation Vikram Lander by Vedansh Gupta.pptxgindu3009
 

Recently uploaded (20)

Chemistry 4th semester series (krishna).pdf
Chemistry 4th semester series (krishna).pdfChemistry 4th semester series (krishna).pdf
Chemistry 4th semester series (krishna).pdf
 
VIRUSES structure and classification ppt by Dr.Prince C P
VIRUSES structure and classification ppt by Dr.Prince C PVIRUSES structure and classification ppt by Dr.Prince C P
VIRUSES structure and classification ppt by Dr.Prince C P
 
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...
Discovery of an Accretion Streamer and a Slow Wide-angle Outflow around FUOri...
 
Green chemistry and Sustainable development.pptx
Green chemistry  and Sustainable development.pptxGreen chemistry  and Sustainable development.pptx
Green chemistry and Sustainable development.pptx
 
Chromatin Structure | EUCHROMATIN | HETEROCHROMATIN
Chromatin Structure | EUCHROMATIN | HETEROCHROMATINChromatin Structure | EUCHROMATIN | HETEROCHROMATIN
Chromatin Structure | EUCHROMATIN | HETEROCHROMATIN
 
GBSN - Microbiology (Unit 1)
GBSN - Microbiology (Unit 1)GBSN - Microbiology (Unit 1)
GBSN - Microbiology (Unit 1)
 
Biopesticide (2).pptx .This slides helps to know the different types of biop...
Biopesticide (2).pptx  .This slides helps to know the different types of biop...Biopesticide (2).pptx  .This slides helps to know the different types of biop...
Biopesticide (2).pptx .This slides helps to know the different types of biop...
 
Orientation, design and principles of polyhouse
Orientation, design and principles of polyhouseOrientation, design and principles of polyhouse
Orientation, design and principles of polyhouse
 
Recombinant DNA technology (Immunological screening)
Recombinant DNA technology (Immunological screening)Recombinant DNA technology (Immunological screening)
Recombinant DNA technology (Immunological screening)
 
GFP in rDNA Technology (Biotechnology).pptx
GFP in rDNA Technology (Biotechnology).pptxGFP in rDNA Technology (Biotechnology).pptx
GFP in rDNA Technology (Biotechnology).pptx
 
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...Labelling Requirements and Label Claims for Dietary Supplements and Recommend...
Labelling Requirements and Label Claims for Dietary Supplements and Recommend...
 
DIFFERENCE IN BACK CROSS AND TEST CROSS
DIFFERENCE IN  BACK CROSS AND TEST CROSSDIFFERENCE IN  BACK CROSS AND TEST CROSS
DIFFERENCE IN BACK CROSS AND TEST CROSS
 
Botany krishna series 2nd semester Only Mcq type questions
Botany krishna series 2nd semester Only Mcq type questionsBotany krishna series 2nd semester Only Mcq type questions
Botany krishna series 2nd semester Only Mcq type questions
 
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral Analysis
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral AnalysisRaman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral Analysis
Raman spectroscopy.pptx M Pharm, M Sc, Advanced Spectral Analysis
 
GBSN - Biochemistry (Unit 1)
GBSN - Biochemistry (Unit 1)GBSN - Biochemistry (Unit 1)
GBSN - Biochemistry (Unit 1)
 
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCE
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCESTERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCE
STERILITY TESTING OF PHARMACEUTICALS ppt by DR.C.P.PRINCE
 
CELL -Structural and Functional unit of life.pdf
CELL -Structural and Functional unit of life.pdfCELL -Structural and Functional unit of life.pdf
CELL -Structural and Functional unit of life.pdf
 
Botany 4th semester series (krishna).pdf
Botany 4th semester series (krishna).pdfBotany 4th semester series (krishna).pdf
Botany 4th semester series (krishna).pdf
 
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptx
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptxSOLUBLE PATTERN RECOGNITION RECEPTORS.pptx
SOLUBLE PATTERN RECOGNITION RECEPTORS.pptx
 
Presentation Vikram Lander by Vedansh Gupta.pptx
Presentation Vikram Lander by Vedansh Gupta.pptxPresentation Vikram Lander by Vedansh Gupta.pptx
Presentation Vikram Lander by Vedansh Gupta.pptx
 

5.4 cladistics student copy

  • 2. Understandings  A clade is a group of organisms that have evolved from a common ancestor.  Evidence for which species are part of a clade can be obtained from the base sequences of a gene or the corresponding amino acid sequence of a protein.  Sequence differences accumulate gradually so there is a positive correlation between the number of differences between two species and the time since they diverged from a common ancestor.  Traits can be analogous or homologous.  Cladograms are tree diagrams that show the most probable sequence of divergence in clades.  Evidence from cladistics has shown that classifications from some groups based on structure did not correspond with the evolutionary origins of a group or species. Applications and Skills  A: Cladograms including humans and other primates.  A: Reclassification of the figwort family using evidence from cladistics.  S: Analysis of cladograms to deduce evolutionary relationships.
  • 3. Cladistics (From the ancient Greek for "branch") is a method of classifying species of organisms into groups called clades, which consist of an ancestor organism and all its descendants (and nothing else).
  • 4.
  • 5. Organisms are classified according to physical, cellular, and biochemical evidence http://thesis2010.micadesign.org/kropp/images/research/bird_icon.png http://www2.le.ac.uk/departments/genetics/vgec/diagrams/21%20Gene%20u nravelled.jpg/image_preview
  • 6. Primitive Traits  Same structure and function  Developed earlier on in organisms being studied http://i.dailymail.co.uk/i/pix/2011/07/25/article-2018391-0D24AE9B00000578- 470_634x533.jpg
  • 7. Derived Traits  Developed more recently as a modification of a previous trait http://phenomena.nationalgeographic.com/files/2013/01/Human_chimp-brain.jpg
  • 8. Homologous structures are inherited from a common ancestor
  • 9. Analogous structures have similar form and function due to convergent evolution, they do not stem from a common ancestor
  • 10. Biochemical Evidence  Comparing DNA sequences and protein structures http://www.qm.qld.gov.au/Find+out+about/Behind+the+Scenes/Molecular+identities+lab/~/media/Images/Find%20 out%20about/Behind%20the%20scenes/Molecular%20identities%20lab/Genetic%20labs/dna-and-species- id.jpg?w=375&h=123&as=1
  • 11. An evolutionary clock involves calculating the time since species diverged by comparing the number of differences in their DNA and/or protein sequences. Scientists who originated the idea calibrated the amino acid differences in haemoglobin with times derived from the fossil record. http://victorygirlsblog.com/wp-content/uploads/2015/09/clock1.jpg
  • 12. The assumption is that these changes occur at a regular rate. (which may not always be the case) Therefore if species A had 5 differences from species B and 10 differences from species C, then the lineages for A and C must have split twice as long ago as for A and B C B A Time
  • 13. Characteristics change over time, thus the amount of change can help determine relationships Groups of organisms are descended from a common ancestor There is a branching pattern in the evolution of species and when a split occurs, two distinct species eventuate.
  • 14. TOK Read this article: Closer to man than ape What reasons are given for including chimps in genus Homo? Do you think humans will ever be reclassified Pan?
  • 15. Vertebrate Hair Shelled eggs Amniotic Egg Four Limbs Bony Skeleton Each clade is determined by common characteristics of its members that are different from that of the other species from which it has diverged These traits which tie the clades together are called shared derived characters
  • 16. • These two cladograms are identical (although they don’t look it) • The shape and the order of the terminal nodes does not matter. • The only information to be gathered from the cladograms below is the order of nesting of sister clades and the relative relatedness of species http://commons.wikimedia.org/wiki/File:Identical_cladograms.s
  • 17. Human HumanChimp ChimpGorilla Gorilla Root Terminal nodes Sister clades: have a common ancestor Out group: Defines the ancestral characters Nodes: Common ancestors
  • 18.
  • 19. Characters Shark Frog Kangaroo Human Vertebrae X X X X Two pairs of limbs X X X Mammary glands X X Placenta X 1) Compile a table of the characters being compared Modified from: http://www.bu.edu/gk12/eric/cladogram.pd
  • 20. Vertebrae: Shark Two Pairs of Limbs: Frog Mammary Glands: Kangaroo Placenta: Human 2) Use the data to construct a Venn diagram, Start with the characteristic shared by all taxa in the biggest circle and work inwards
  • 21. Shark Frog Kangaroo Human Mammary Glands Lungs Vertebrae Placenta 3) Convert the Venn diagram into a cladogram
  • 22. Characters Sponge Jellyfish Flatworm Earth- worm Snail Fruit fly Starfish Human Cells with flagella X X X X X X X X Symmetry X X X X X X X Bilateral symmetry X X X X X X Mesoderm X X X X X Head develops first X X X Anus develops first X X Segmented body X X Calcified shell X Chitinous Exoskeleton X Water Vascular system X Vertebrae X Now you try! Make a Venn diagram for this data.
  • 23. 1 2 3 DCBA Of the three nodes, 3 is most recent and 1 occurred earliest. Node 3 is the most recent common ancestor for C and D Node 2 is the most recent common ancestor for B and C Node 1 is the common ancestor of all taxa
  • 24. Homework  TOK- pg 264  Exercises 14 and 15, pg 266  See worked examples on 261 and 265 If any part is unclear, come prepared with your questions next time. Vocab  Plesiomorphic traits  Apomorphic traits  Cladistics  Clade  Monophyletic group  Paraphyletic group  Homologous traits  Analagous traits  Cladogram  Phylogeny