Unit 2 - Cells and Organelles Flashcards
2.4 Eukaryotic cell structure 2.5 The ultrastructure of plant cells 2.6 Prokaryotic & eukaryotic cells Specification reference 2.1.1
Name the two main types of organism
Prokaryotes & Eukaryotes
Define Organelles
Membrane bound compartment within the cell each providing distinct environments and therefore conditions for different cellular reactions
Features of an ANIMAL cell under a LIGHT microscope
Cell Surface Membrane
Cytoplasm
Nucleus
Mitochondria
Centriole
Features of a PLANT cell under a LIGHT microscope
Cell Wall
Cell surface membrane
Cytoplasm
Nucleus
Vacuole
Tonoplast
Mitochondria
Starch grains
Chloroplast
Features of an ANIMAL cell under an ELECTRON microscope
Cell Surface membrane Rough endoplasmic Reticulum (RER) Nucleolus Nucleus Smooth Endoplasmic Reticulum (SER) lysosome Ribosome Nuclear envelope with pores Golgi apparatus Cytoplasm Mitochondria centrioles
Features of a PLANT cell under an ELECTRON microscope
Cell Surface membrane Chloroplast Rough endoplasmic Reticulum (RER) Plasmodesmata Nucleolus Nucleus Smooth Endoplasmic Reticulum (SER) Ribosome Nuclear envelope with pores Golgi apparatus Cytoplasm Mitochondria Vacuole Cell Wall
Function of cell-surface membrane
A thin, selectively permeable protein and phospholipid bilayer that controls the movement of materials in and out of the cell, which also has receptor molecules to allow it to respond to chemicals.
Function of a plant cell wall
A tough yet elastic wall of cellulose that surrounds and supports the cell wall. It is freely permeable. Defence mechanism against invading pathogens.
structure/composition of the nucleus
Comprised of nuclear envelope with nuclear pores, nucleoplasm, nucleolus and DNA molecules; which control the cell’s activities, associate with histone molecules to form chromatin. Chromatin coils tightly to form chromosomes. The pores in the nuclear envelope allow substances such as RNA to move between the nucleus and cytoplasm. Nucleolus is an area within the nucleus that makes ribosomes.
Function of a lysosome
A round organelle surrounded by a membrane, with no clear internal structure that contains digestive enzymes that are kept separate from the cytoplasm by the membrane. these enzymes enable the lysosome to digest invading cells or break down worn out components of the cell..
Function of a Ribosome
Small organelle that either floats free in the cytoplasm or is attached to the RER, where proteins are made during protein synthesis.
Function of (RER) Rough Endoplasmic Reticulum
folds and processes proteins made by the ribosomes packaging them into vesicles.
Function of (SER) Smooth Endoplasmic Reticulum
A system of membranes enclosing a fluid filled space, synthesises and processes lipids into vesicles
Function of a Vesicle
A small fluid filled sac in the cytoplasm surrounded by a membrane, transports substances in and out of the cell, via the cell surface membrane, and between organelles.
Function of Golgi Apparatus
A group of flat fluid filled sacs, sometimes seen with vesicles at the edge. Processes and packages new lipids and proteins, also makes lysosomes.
structure/composition of mitochondria
Double membrane.
The inner membrane is highly folded to form cristae.
The fluid inside the cristae is called the matrix.
The membrane forming the cristae contains enzymes used in aerobic respiration.
Contain mitochondrial DNA, produce their own enzymes and can reproduce themselves.
structure/composition of Chloroplast
double membrane enclosing fluid called stroma.
contain flatten sacs called thylakoids.
Several thylakoids stack to form granum.
Grana are linked by thin pieces of thylakoid membrane called lamellae.
Grana contain chlorophyll pigments where the light-dependent reactions occur during photosynthesis.
Function of centriole
Component of the cytoskeleton present in most eukaryotic cells. Small hollow cylinders containing microtubules. Two associated centrioles form the centrosome, which is involved in the assembly and organisation of the spindle fibres, and therefore the splitting chromosomes during cell division.
Structure = sets of three microtubules with one in the center.
Function of Cilia
Small hair-like structures found on the surface membrane of some animal cells. Cross section appears like a wheel with an outer membrane and nine pairs of microtubules arranged in a ring around two pairs in the center. Microtubules allow the cilia to move which is used to move substances along the cell surface e.g. In the trachea to sweep dust and dirt out of the lungs.
Function of Flagella
Long hair-like Structures that stick out from the cell surface and are surrounded by the plasma membrane. Cross section appears like a wheel with an outer membrane and nine pairs of microtubules arranged in a ring around two pairs in the center. Microtubules contract to make flagellum move, this is used to propel cells forward e.g. the tail of a sperm cell, this requires energy.