Written by students who passed Immediately available after payment Read online or as PDF Wrong document? Swap it for free 4.6 TrustPilot
logo-home
Document preview thumbnail
Preview 4 out of 45 pages
Exam (elaborations)

MICR 271 Midterm Exam with All Actual Detailed Answers 2026 Updated.

Document preview thumbnail
Preview 4 out of 45 pages

3 Domains of life - Answer Bacteria, Archaea, Eukarya Endosymbiont theory - Answer - eukaryotes evolved more complex structures and metabolic processes by building upon prokaryotic attributes - evolutionary connection between prokaryotes and eukaryotes - similarities between bacteria and mitochondria - mitochondria and chloroplasts evolved from free-living bact via symbiosis w/in a eukaryotic host cell to have 2 key differences: these organelles contain their own DNA and a distinct translation system - likely that an alpha-proteobacteria member is the ancestor of mitochondria, however, there is little agreement as to which member Microbe - Answer microscopic living organism that may be single-celled or multicellular Links between prokaryotes and eukaryotes highlighting functional independencies - Answer 1. N is abundant in atmosphere but only a few species of microbes can use it in this form, all other organisms depend on these N-modifying bact 2. More and more complex pathways arose with ancestral microorganisms and a microbe was the source of mitochondria 3. Humans contain 10x more bact cells than human cells and 100x more microbial genes than human genes 4. Total biomass on earth of bact is approaching that of plants 5. ~50 mil bact in 1g of soil and 1 million bact in 1mL of fresh water 6. Photosynthetic bact (cyanobacteria) living in bodies of water like lakes, ponds, and shallow oceans produces 50% of the oxygen we breathe Eukaryotic vs prokaryotic cells - Answer - prokaryotes have nucleoids - eukaryotes have membrane-encoled nuclei - eukaryotes are much more complex - allow for functional difference in transcription, translation, how they generate energy, etc. - eukaryotes have membrane-bound orgnalles and prokaryotes do not Bacteria - Answer - prokaryote - single-celled microorganisms characterized by peptidoglycan-containing cell walls

Content preview

MICR 271 Midterm Exam with All Actual
Detailed Answers 2026 Updated.
3 Domains of life - Answer Bacteria, Archaea, Eukarya



Endosymbiont theory - Answer - eukaryotes evolved more complex structures and metabolic
processes by building upon prokaryotic attributes

- evolutionary connection between prokaryotes and eukaryotes

- similarities between bacteria and mitochondria

- mitochondria and chloroplasts evolved from free-living bact via symbiosis w/in a eukaryotic
host cell to have 2 key differences: these organelles contain their own DNA and a distinct
translation system

- likely that an alpha-proteobacteria member is the ancestor of mitochondria, however, there is
little agreement as to which member



Microbe - Answer microscopic living organism that may be single-celled or multicellular



Links between prokaryotes and eukaryotes highlighting functional independencies - Answer 1.
N is abundant in atmosphere but only a few species of microbes can use it in this form, all other
organisms depend on these N-modifying bact

2. More and more complex pathways arose with ancestral microorganisms and a microbe was
the source of mitochondria

3. Humans contain 10x more bact cells than human cells and 100x more microbial genes than
human genes

4. Total biomass on earth of bact is approaching that of plants

5. ~50 mil bact in 1g of soil and 1 million bact in 1mL of fresh water

6. Photosynthetic bact (cyanobacteria) living in bodies of water like lakes, ponds, and shallow
oceans produces 50% of the oxygen we breathe



Eukaryotic vs prokaryotic cells - Answer - prokaryotes have nucleoids

- eukaryotes have membrane-encoled nuclei

- eukaryotes are much more complex

- allow for functional difference in transcription, translation, how they generate energy, etc.

- eukaryotes have membrane-bound orgnalles and prokaryotes do not



Bacteria - Answer - prokaryote

- single-celled microorganisms characterized by peptidoglycan-containing cell walls

,Archaea - Answer - domain of single-celled prokaryotic microorganisms which do not have
peptidoglycan in their cell walls



Eukaryota - Answer - organism whose cells contain a nucleus and other organelles enclosed in
membranes



Archezoan scenario - Answer - primitive amitochondrial euk cell phagocytosed an alpha-
proteobacterium, leading to mitochondrion evolution

- this hypothesis has fallen out of favor



Symbiogenesis scenario - Answer - complexity of euk cell and its defining features emerged
after the mitochondrial symbiosis

- a single endosymbiotic event involing the uptake of an alpha-proteobacterium by an archaeal
cell led to the generation of the mitochondria, followed by the evolution of the nucleus and
compartmentalization of the euk cell



Phylogenomics - Answer - analysis of whole genomes



Phylogenetics - Answer - genetic distinctions



Phylogeny - Answer - evolutionary history of a group of organisms

- the more similar an organism is to another, the closer their genetic relationship are

- initial efforts to map phylogenetic relationships compared rRNA between organisms to create
a tree of life

- genetic similarities btwn organisms can help us understand the phylogeny of the organisms

- tree of life represents the phylogeny of organisms and the history of the organismal lineages as
they change thru time



Tree from 1987 by Carl Woese - Answer - compare rRNA sequences

- major finding: close relationship between archaea and eukaryota



Bacteria vs archaea vs eukaryota - Answer 1. Bacteria = no nucleus, 3-4 subunits of rna
polymerase, 70s ribosomes, murein cell wall

2. Archaea = no nucleus, 8 - 12 subunits of rna polymerase, 70s ribosomes, no murein cell wall

3. Eukaryota = nucleus present, 12 - 14 subunits, 80s rna polymerase, no murein cell wall



Phylogenetic tree of life - Answer - we now compare entire genomes

,- recent tech advances in dna sequencing allow whole genomes to be pieces together without
culturing organisms

- bact and archaebact together based on their cell wall structures

- now with dna sequencing, their rna was found to be more distantly related than previously
thought

- in 1990, archaea was suggested

- tree used to show too great of evolutionary distance between arachaea and eukaryotes, the
revised tree shows a much closer evolutionary distance

- red dots show lineages lacking an isolated and cultured representative, a distinct genome has
been sequenced from an environmental sample but the organism has never been grown in pure
culture in a lab setting

- many organisms are yet to be characterized as they are difficult to create in lab

- tree assumes that the higher the level of genetic similarity between two organisms, the more
they are related evolutionarily

- this assumption is less problematic with the whole gene pool than if it was based only on rRNA
sequence



Web of life - Answer - there are multiple connections between branches of the tree of life that
create extensive networks of untree-like links btwn 3 traditional domains

- tree-like structure at the top acknowledges that euks obtained mitochondria and chloroplasts
from bact

- lacks a single cell at the root, early life likely evolved from a population of primitive cells with
different genes

- links symbolize horizontal gene transfer of single/multiple genes that have always occurred
between unicellular organisms i.e. transfer of genes via viruses



Where do viruses come from - Answer - obligate intracellular parasites = their reproduction
cannot occur outside of a host cell, it relies on intracellular resources

- important contributors to web of life

- capable of interacting with all 3 domains and carry genetic info between dif kinds of organisms
and between the domains

- constant interacs btwn viral and cellular 'empires'



How do viruses fit in the picture? - Answer - small infectious agents that only replicate inside
living cells of other organisms

- in ocean water and soil, the number of viral particles exceeds the number of cells by 10:100

- genetic diversity substantially exceeds that of cellular life forms

- cells contain many antiviral defence systems

, - viral genomes consist of many forms of nucleic acids and use diverse replication processes like
rna replication and reverse transcription, unlike cellular life which uses a rep-express strategy
via dsdna

- viruses are the 'empire of life' though it is debated whether or not they are actually alive

- chicken pox, HIV, cold, COVID-19 = viral

- pneumonia, meningitis, diarrhea = viral/bacterial

- strep, uti, tuberculosis = bacterial



Virus basics - Answer - small infectious agents

- once assembled, virus progeny are able to leave the host cellular environment and infect new
cells and/or hosts

- viruses can infect animals, plants, bacteria and archaea



Virions - Answer - when not inside a host, viruses exist in the form of virions, these consist of
2, sometimes 3 parts

1. genetic material (DNA or RNA)

2. capsid (protein coat)

3. Envelope (some virsuses have a layer of lipids surrounding the protein coat)

- seem to predate "living" forms of life



Virus-first theory - Answer - viruses are ancestral to cells, they evolved from mixtures of
macromolecules (e.g. nucleic acids, proteins) before the first cells appears on earth

- existed as self-replicating units in a pre-cellular world

- self-replicating units of RNA that were first in existence may have gained the ability to infect
early forms of cells

- some RNA molecules can catalyze chemical reactions



Escape theory - Answer - cells came before viruses

- viruses derived from bits of cellular RNA and/or DNA fragments that leaked/escaped from cells

- when these acquire a protein coat they can become independent entities with the ability to
interact with other cells

- viruses are derived from genetic elements that may have resembled genetic sequences known
as retrotransposons

- during asymmetric cell fission a vesicle could have formed, engulfing a self-replicating RNA
with a coat-encoding RNA segment, this particle would continue to evolve through interactions
with additional early cell types



Reduction theory - Answer - cells came before viruses

Document information

Uploaded on
August 18, 2026
Number of pages
45
Written in
2026/2027
Type
Exam (elaborations)
Contains
Questions & answers
$13.99

Wrong document? Swap it for free Within 14 days of purchase and before downloading, you can choose a different document. You can simply spend the amount again.
Written by students who passed
Immediately available after payment
Read online or as PDF

Seller avatar
Reputation scores are based on the amount of documents a seller has sold for a fee and the reviews they have received for those documents. There are three levels: Bronze, Silver and Gold. The better the reputation, the more your can rely on the quality of the sellers work.
TestSolver9
3.5
(168)
Sold
980
Followers
129
Items
31380
Last sold
20 hours ago




Why students choose Stuvia

Created by fellow students, verified by reviews

Quality you can trust: written by students who passed their tests and reviewed by others who've used these notes.

Didn't get what you expected? Choose another document

No worries! You can instantly pick a different document that better fits what you're looking for.

Pay as you like, start learning right away

No subscription, no commitments. Pay the way you're used to via credit card and download your PDF document instantly.

Student with book image

“Bought, downloaded, and aced it. It really can be that simple.”

Alisha Student

Working on your references?

Create accurate citations in APA, MLA and Harvard with our free citation generator.

Working on your references?

Frequently asked questions