Jump to content
Main menu
Main menu
move to sidebar
hide
Navigation
Main page
Recent changes
Random page
Help about MediaWiki
Special pages
CRV Science Wiki
Search
Search
Appearance
Create account
Log in
Personal tools
Not logged in
Talk
Contributions
Create account
Log in
Editing
Cell Theory and Architecture
(section)
Page
Discussion
English
Read
Edit
View history
Tools
Tools
move to sidebar
hide
Actions
Read
Edit
View history
General
What links here
Related changes
Page information
Appearance
move to sidebar
hide
Warning:
You are not logged in. Your IP address will be publicly visible if you make any edits. If you
log in
or
create an account
, your edits will be attributed to your username, along with other benefits.
Anti-spam check. Do
not
fill this in!
== Eukaryotic Architecture: Compartmentalized Complexity == Eukaryotic cells (domain Eukarya, including plants, animals, fungi, and protists) are generally much larger and more complex. Their defining characteristic is compartmentalization—the use of internal lipid membranes to create specialized environments (organelles) where specific biochemical reactions can occur without interference. [[File:Eukaryotic_Cell_Diagram.jpg|thumb|right|Diagram detailing the organelles of a eukaryotic cell.]] === The Nucleus and Endomembrane System === * '''Nucleus:''' The defining feature of the eukaryote. It houses the linear DNA genome, bounded by a double-membrane structure called the nuclear envelope, which contains pores regulating the transport of molecules (like mRNA). * '''Endoplasmic Reticulum (ER):''' An extensive network of membranous tubules and sacs. ** '''Rough ER:''' Studded with ribosomes (80S), focusing on the synthesis and folding of proteins destined for membranes or secretion. ** '''Smooth ER:''' Lacks ribosomes; functions in lipid synthesis, calcium storage, and cellular detoxification. * '''Golgi Apparatus:''' The cell's sorting and shipping center. It receives proteins and lipids from the ER, modifies them, and packages them into vesicles for targeted delivery. === Energy and Metabolism === * '''Mitochondria:''' The site of cellular respiration, generating ATP through the oxidation of glucose and other fuels. They contain their own circular DNA and ribosomes, supporting the endosymbiotic theory of their evolutionary origin. * '''Chloroplasts (Plants and Algae):''' Plastids responsible for photosynthesis, converting solar energy into chemical energy to synthesize basic sugars (e.g., turning CO2 and H2O into glucose). Like mitochondria, they possess their own DNA. === Structural Support and Degradation === * '''Cytoskeleton:''' A dynamic network of protein filaments (microtubules, microfilaments, and intermediate filaments) that provides shape, enables cellular movement, and facilitates intracellular transport. * '''Lysosomes (Mainly animal cells):''' Membrane-bound sacs containing hydrolytic enzymes that break down macromolecules and cellular debris. * '''Vacuoles:''' Large vesicles derived from the ER and Golgi. In plant cells, a large central vacuole is crucial for maintaining turgor pressure and storing nutrients. ----
Summary:
Please note that all contributions to CRV Science Wiki may be edited, altered, or removed by other contributors. If you do not want your writing to be edited mercilessly, then do not submit it here.
You are also promising us that you wrote this yourself, or copied it from a public domain or similar free resource (see
My wiki:Copyrights
for details).
Do not submit copyrighted work without permission!
Cancel
Editing help
(opens in new window)
Search
Search
Editing
Cell Theory and Architecture
(section)
Add topic