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Mammals (You are what you eat) Natural Sciences 360 Legacy of Life

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1 Mammals (You are what you eat) Natural Sciences 360 Legacy of Life
Lecture 17 Dr. Stuart S. Sumida Mammals (You are what you eat)

2 Synapsida: Including Modern Mammals
(You are what you eat)

3 The Synapsida can be divided into three “grades.”
AMNIOTA Diadectomorpha(?) Synapsida Reptilia Avialae Mammalia “Therapsida” “Pelycosauria” The Synapsida can be divided into three “grades.”

4 Mammals: Mammary glands Hair
Facial muscles – muscles of facial expression A specialized jaw joint (between a single bone of the lower jaw (dentary) and the squamosal region of the skull) Three bones in the middle ear to help in hearing

5 Mammals have mammary glands for NOURISHING THE YOUNG
Mammals have HAIR.

6 Mammals have muscles of facial expression

7 Mammalia (detail) Monotremata Metatheria Eutheria Theria
(Egg-laying mammals) (Marsupials) (Placental Mammals) Theria Mammalia (detail)

8 Monotremata: known since the Cretaceous
Monotremata Metatheria Eutheria (Egg-laying mammals) (Marsupials) (Placental Mammals) Theria Mammalia Monotremata: known since the Cretaceous

9 The duck-billed platypus and spiney anteater (Echidna) are members of Monotremata (egg-laying mammals).

10 Metatheria: also known since the Cretaceous
Monotremata Metatheria Eutheria (Egg-laying mammals) (Marsupials) (Placental Mammals) Theria Mammalia Metatheria: also known since the Cretaceous

11 Mammalia Monotremata Metatheria Eutheria Theria
(Egg-laying mammals) (Marsupials) (Placental Mammals) Theria Mammalia

12 The METATHERIA, also known as MARSUPIALS are often called the “pouch mammals” because although initial development is internal, much takes place in the mother’s pouch – which is technically outside the body.

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15 Kangaroos can be almost orthograde

16 PRIMITIVE PLACENTAL MAMMALS
Monotremata Metatheria Eutheria (Egg-laying mammals) (Marsupials) (Placental Mammals) Theria PRIMITIVE PLACENTAL MAMMALS Mammalia

17 A Placenta: Combination of the amniote Chorion and Allantois Helps the developing embryo to communicate with mother.

18 PRIMITIVE PLACENTAL MAMMALS
were very small. The most primitive living mammals are called insectivores.

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21 Amongst the most primitive lineages of mammals:
Insectivores Bats Primates (We’ll talk about them later.)

22 Comparative wing structure in flying vertebrates

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28 More derived placental mammals:
Many groups. Body shape and function is very much determined by diet.

29 Animation, Mammals, and Science
Physical Laws Structure Function Ontogenetic Stage and Sex Cutting and Pasting

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42 TRANSVERSE GALLOP ROTARY GALLOP

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48 Primates

49 PRIMATES “Prosimians” New World Old World “Great Apes”
Monkeys Monkeys Hominoidea Synapomorphies of Primates: Nails on all digits Opposable hallux (big toe)* *later lost in some

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51 “Prosimians” include:
Lemurs Lorises Aye-aye Tarsiers Primitive, relatively small, arboreal forms. Most have long tails, but none have prehensile tails.

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57 NEW WORLD MONKEYS Noses are “flat” – nostrils face sideways.
Tail is often prehesile (acts like a fifth grasping structure) Arboreal Quadrupedal locomotion on top of limbs Brachiation (limb swinging)

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63 OLD WORLD MONKEYS Noses are not “flat” – nostrils face forward
Tail is not prehesile Arboreal forms Quadrupedal locomotion on top of limbs Brachiation (limb swinging) Terrestrial forms as well

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68 Old World Monkeys: Tails are not prehensile

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70 HOMINOIDEA (The Great Apes)
Living Members: Gibbons Orangutans Gorillas Chimpanzees and Bonobos Humans Tail significantly reduced. Group was originally arboreal. Many members now terrestrial.

71 HOMINOIDEA (Living Members)
Gibbons Orangutans Gorillas Chimps Humans Hylobates Pongo Gorilla Pan Homo

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74 Dichromatic species of gibbon

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76 Orangutans use all four limbs equally in climbing
Orangutans use all four limbs equally in climbing. Hands and feet are essentially equivalent. QUADRUMANUAL Condition

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87 Humans are more similar to juvenile apes than adult apes. Neotony!

88 THE FAMILY HOMINIDAE Major Genera Species Ardipithicus
Australopithicus Paranthropus Homo H. habilis H. erectus H. neanderthalensis H. sapiens

89 Austraulopithicus afarensis is amongst the most important of early hominid fossils.
It is amongst the most complete of early fossils to demonstrate the orthograde, bipedal nature of early hominids…3.8 to 4 million years old.

90 Orthograde bipedality
“Lucy” is an example of Australopithicus afarensis Orthograde bipedality Key feature: position of femur in hip socket

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92 Homo habilis – the first human tool users?
Homo erectus – more gracile and more fully orthograde. Homo neanderthalensis – larger brains than modern Homo sapiens. Lived side-by-side with Homo sapiens.

93 Homo habilis – the first human tool users?

94 Homo erectus – more gracile and more fully orthograde than more primitive groups.
Recent analysis of footprint fossils indicate a style of walking very much like Homo sapiens.

95 Homo erectus – more gracile and more fully orthograde.

96 Homo neanderthalensis

97 Homo neanderthalensis tool

98 Homo neanderthalensis reconstruction

99 COMPARISON OF HOMO NEANDERTHALENSIS (LEFT) AND HOMO SAPIENS (RIGHT) SKELETONS
Recent analysis of the H. neanderthalensis genome suggests they did NOT interbreed.

100 Homo floresiensis

101 Homo floresiensis Possibly one of the most amazing of recent discoveries. The discovery of a very small, (~ 1 meter tall) new species of Homo that lived on islands near Indonesia only about 38,000 to 18,000 years ago. Some have tried to argue they were pathological, but this is not correct.

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103 HUMAN SEXUAL DIMORPHISM

104 Male and female hips are of differing proportions:
Males: taller, narrower, pubic angle less than 90 degrees, circular opening. Females: wider, pubic angle greater than 90 degrees, oval opening.

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106 Females: Shorter torsos, longer legs.
Males: longer torsos, shorter legs.


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