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PSYC 388 Midterm Questions with Detailed Verified Answers

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PSYC 388 Midterm Questions with Detailed Verified Answers PSYC 388 Midterm Questions with Detailed Verified Answers

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PSYC 388 Midterm Questions with
Detailed Verified Answers

Question:Proximate causality

Ans: - the 'how' questions

- biological mechanism

Ex: how do biological clocks work at the biological level

* most of the course

Question: Ultimate causailty

Ans: the 'why' question

Ex: why do we have clocks, what 'caused' them to evolve and why have they
been conserved across phylogeny

- questions of function (what is the function or purpose of the circadian clock?)

* lecture 2 topic

Question: Natural selection

Ans: differential reproductive fitness that results from differential adaptation
to features of the environment

Question: Local features

, Page | 2

Ans: more or less unique to that place

- temperature

- precipitation

- topography

drive speciation by favoring animals that have adaptations to these specific
features

Question: Global features

Ans: shared with other places; they are

- enduring

- stable

- nontrivial

- obvious: features associated with daily cycles of light (solar day)

Question: When did circadian clocks evolve?

Ans: approximately 3.5 billion years ago

Question: Multicellular organisms that exhibit circadian rhythms

Ans: - fungi: Neurospora

- plants: Arabidopsis

- animals: nematodes, fruit flies, zebrafish, reptiles, birds, mice, humans

Question: Unicellular eukaryotic oranisms (protisa) that exhibit circadian
rhythms

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Ans: - green algae (chlamydomonas, acetabularia)

- gonyaulax, paramecium, euglena

- have true (bona fide) circadian rhythms

Question: Prokaryotic organisms: How old are they and what are some
characteristics about them?

Ans: - about 3.5 billion years old

- no cell nuclei

- no membrane-bound organelles

Question: What prokaryotic organisms have circadian rhythms? (3)

Ans: - cyanobacteria (blue-green algae)

- human gut bacteria

- some extremophile archaea (grow in high salinity or temp)

Question: Prokaryotic organisms = the most ancient life forms on earth
(evolved ~3.5 billion years ago) and have biorhythms = what can we conclude
about circadian rhythms based on this? (4)

Ans: - they are ancient and widely conserved

- they likely appeared early in evolution

- likely evolved several times (bacteria, plants, and animals don't have the
same clock genes, which is expected if they evolved from the same organism)

- must continue to make important contributions towards survival and
reproductive fitness

Question: What is hypothesis 1A: escape from light?

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Ans: - ionizing radiation (high energy ultraviolet light can damage molecules
and disrupt biochemical processes such as DNA repication and gene
transcription

- earliest self-replicating organisms did not have barriers to block UV light

Question: What was the solution to not having protection against UV light?
(2)

Ans: - restrict replication/transcription to the night

- mobilize light-avoidance behaviour in *anticipation* of sunrise

Question: What is the evidence for "escape from light"?

Ans: - many genes exhibit a circadian rhythm of transcription

- most clock-controlled genes are transcribed only at night (Ex: drosophila)

- cells are more easily damaged by UV light in the early night, when cell
division and gene transcription occur (Ex: in chlamydamonas)

Question: External coordination

Ans: - 1 biological challenge faced by early life that led to evolution of
circadian clocks

- challenge of coordinating biochemistry with daily cycles of solar radiation
and temperature (external)

Question: Internal coordination

Ans: - 1 biological challenge faced by early life that led to evolution of
circadian clocks

- challenge of coordinating biochemical processes with each other so that they
occur in the the correct sequence and so that incompatible processes would
occur at different times of day

Question: Hypothesis 1b: escape from oxygen (radicals) (5)

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