Wednesday, March 19, 2014

Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plants And Animal Cells Biography 

Source:- Google.com.pk
Article Summary: Looking for a simple explanation of the potentially confusing terms 'diffusion', 'osmosis' and 'tonicity'? Well here it is
What Is Diffusion?
Diffusion is the passive transport of molecules from an area of higher concentration to an area of lower concentration; and, surprisingly, you are very familiar with this process, whether you realize it or not.

When you put on perfume or aftershave, you can't just do it once and stay smelling sweet for the rest of your life (much to the relief of perfumers). The molecules of scent slowly diffuse from the area where you applied them, until so many have departed that you can no longer detect your signature scent.
A less pleasant example is the very recognizable smell of skunk stink. If you are driving down the road towards a dead skunk, the unpleasant smell gets stronger and stronger as your car approaches the skunk. This is because the stinky molecules are more concentrated closer to their skunky source.

What Is Osmosis?
Osmosis is a special kind of diffusion; the diffusion of water molecules across a membrane, typically the membrane of a living cell. The environment surrounding each of our cells may contain small amounts of dissolved substances (solutes) that are equal to, less than, or greater than those found within the cell. The relationship between the concentrations of solutes on either side of the membrane is referred to as tonicity.

How Does Tonicity Relate to Osmosis?
If a cell is in a surrounding environment that's:
isotonic: There is no net movement of water between cell and environment. The concentration of solutes is the same on either side of the membrane.
hypertonic: This term refers to the side of the membrane with a higher concentration of solute.
hypotonic: This term refers to the side of the membrane with a lower concentration of solute.

These terms describing tonicity are dependent on the relationship between the environments on either side of the membrane, and can apply to the environment inside the cell or the environment outside the cell. The key to understanding osmosis and tonicity is to remember that water will always move toward a hypertonic environment!
Osmosis and Animal Cells
The cells of our body normally exist in an isotonic environment. When cells are placed in a hypertonic environment (higher concentration of solutes than the cell), water leaves the cell and the cell becomes shriveled. Conversely, when animal cells are placed in a hypotonic solution (lower concentration of solutes than the cell), water moves into the cell; it swells and may explode.
Diagram of Osmosis in Red Blood Cells
Osmosis and Plant Cells
Plant cells are subjected to osmostic pressure, just as animal cells are. However these cells are surrounded by a strong, rigid cell wall which prevents the cell from taking on too much water and exploding. When plant cells are exposed to water, the water moves into the cells, making them plump (turgid). This is why house plants look healthy and firm when they are watered sufficiently.

Diagram of theEffect of Osmosis on Plant Cells

 
In contrast, the loss of water by plant cells (plasmolysis) can occur when plants are not sufficiently watered, or are surrounded by a hypertonic environment. When water leaves the plant cell, it is not as plump, although the structure of the cell wall prevents the plasmolyzed cell from losing shape entirely.

Exposure to extremely hypertonic environments can kill a plant, like how your dog creates spots of dead lawn where he pees. The urine is hypertonic to the interior of the cells that make up the blade of grass, and large amounts of water are drawn out of the grass, killing it.

Sources & Helpful Osmosis & Diffusion Links
Campbell, N., Reece, J. and Simon E. (2004) "Essential Biology with Physiology". Pearson Benjamin Cummings. 
How Diffusion Works animation and quiz from McGraw-Hill.
The Cell: Passive Transport Diffusion from Wisc-Online.com.
How Osmosis Works animation and quiz from McGraw-Hill.
The Cell: Passive Transport Osmosis from Wisc-Online.com.
Osmosis animation from St. Olaf College.
Plasmolysis animation and quiz from McGraw-Hill.

​​This is why a nurse can't give someone an IV drip of pure water. The patient's cells would explode. This is also why, if stranded at sea, people are cautioned not to drink the ocean water, no matter how thirsty they may become. Drinking salt water actually robs the body of hydration, because it creates a hypertonic environment in the GI tract, which pulls water out of our cells, dehydrating the body.

Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Plants And Animal Cells Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Biography

Source:- Google.com.pk

Plant, Animal and Bacterial Cells

Biological cells are the basic units of life i.e. the smallest units that can be alive. There are many types of biological cells.

Classification of Biological Cells: Biological taxonomy is the identification and naming of species and the arrangement of them into biological classes (i.e. groups). A taxonomic rank is a level in a taxonomic hierarchy, of which "kingdom" is one of the highest ranks - its exact position in the taxonomic hierarchy depends on the system used. The Five-Kingdom system of biological classification proposed by Robert Whittaker in 1969 is based mainly on differences in nutrition and groups life forms:

Life

Empire Prokaryota



Kingdom Monera (prokaryotes, i.e. bacteria & "blue-green algae")

 includes Bacterial Cells


Empire Eukaryota



Kingdom Protista (single-celled eukaryotes)


Kingdom Plantae (plants)

 includes Plant Cells

Kingdom Fungi (fungi)


Kingdom Animalia (animals incl. humans)

 includes Animal Cells

Above: The Five-Kingdom System of Biological Classification
Prokaryotic and Eukaryotic Cells


Some school biology courses e.g. UK A-Level (AS and A2) include the structures of:

Animal Cells ... which are types of Eukaryotic Cells
Plant Cells ... which are types of Eukaryotic Cells
and
Bacteria Cells (Prokaryotic Cells)
The biggest difference between these is that unlike eukaryotic cells, prokaryotic cells do not have a cell nucleus or any membrane-bound organelles such as mitochondria. Instead, all of the contents of the cell is openly accessible within the same volume e.g. ribosomes are scattered throughout the cytoplasm (not attached to the surfaces of the endoplasmic reticulum as in animal cells).


This table compares key features in plant, animal and bacterial cells:



Cell Feature:

Plant Cells

Animal Cells

Bacteria Cells
(Prokaryotic cells)

1.

Cell Wall

Plant cell walls are made mainly of cellulose.

none

Prokaryotic cell walls are made of murein.

2.

Cell Nucleus

Controls the activity of the cell and contains the genetic material. Each cell nucleus is surrounded by a double nuclear membrane that is crossed by nuclear pores.

Controls cell activity and contains the genetic material. The largest cellular organelle in animal cells, surrounded by a double nuclear membrane crossed by nuclear pores. Most animal cells have one nucleus, but:
none

Some very large cells (e.g. some striated muscle fibres) have many nuclei. Such multinucleate cells are called coenocytes.
Some special cells (e.g. erythrocytes) have no nucleus. Cells that have no nucleus are called anucleated cells.
3.

Plasmids

none

none

A plasmid is a molecule of DNA that is separate from and can replicate independently of the chromosomal DNA. They are double-stranded, generally circular, and capable of replicating autonomously within a suitable host.

4.

Mitochondria (pl.)
the singular form is "mitochondrion"

Mitochondria provide the cells' energy requirements. In the same way as cell nuclei they have a double membrane. The outer membrane of a mitochondrion is smooth while the inner membrane forms folds called cristae to increase the inner membrane's surface area on which sugar combines with oxygen to produce ATP - the cell's primary energy source.

none

5.

Ribosomes

The ribosomes present in plant and animal cells are the larger (80 S) type of ribosomes but are the smallest and most numerous of the eukaryotic cell organelles. They are composed of protein and RNA and are the sites of protein synthesis.
Ribosomes can exist free in the cytoplasm but are usually found attached to rough endoplasmic reticulum (RER). The ribosomes in eukaryotic cells are made in the nucleolus - which is inside the cell's nucleus.

Ribosomes are present - but are very small. That is, the ribosomes in prokaryotic cells (i.e. bacterial cells) are the smaller (70 S) type.

6.

Chloroplasts

Chloroplasts are green (because they contain the pigment chlorophyll) and are members of a class of organelles called plastids. They capture light energy, store it in the molecules ATP and NADPH, then use it to produce organic molecules and free oxygen from carbon dioxide and water by the process of photosynthesis.

none

none

7.

Permanent vacuole

Contains water needed for turgor pressure (turgidity) - that pushes the plasma membrane, which is also called the cell membrane, against the cell wall. Plants need turgidity to maintain rigidity. Molecules and ions may also be stored in the permanent vacuole.

none

none


Note: The numbers on the left are just for ease of reference to this table re. plant, animal and bacteria cells. The above is not a detailed comparison of these different types of biological cells but includes key differences in their contents at approx. the level of detail required for A-Level Biolog

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Plant And Animal Cell Differences Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Animal And Plant Cell Biography

Source:- Google.com.pk
1. Cell Structure & Functionhttp://koning.ecsu.ctstateu.edu/cell/cell.html
2. Cell Theory• All living things are made up of cells.• Cells are the smallest working units of all living things.• All cells come from preexisting cells through cell division.
3. Definition of CellA cell is the smallest unit that is capable of performing life functions.
4. Examples of Cells Amoeba Proteus Plant StemBacteria Red Blood Cell Nerve Cell
5. Two Types of Cells•Prokaryotic•Eukaryotic
6. Prokaryotic • Do not have structures surrounded by membranes • Few internal structures • One-celled organisms, Bacteriahttp://library.thinkquest.org/C004535/prokaryotic_cells.html
7. Eukaryotic • Contain organelles surrounded by membranes • Most living organisms Plant Animalhttp://library.thinkquest.org/C004535/eukaryotic_cells.html
8. “Typical” Animal Cellhttp://web.jjay.cuny.edu/~acarpi/NSC/images/cell.gif
9. “Typical” Plant Cellhttp://waynesword.palomar.edu/images/plant3.gif
10. Cell PartsOrganelles
11. Surrounding the Cell
12. Cell Membrane • Outer membrane of cell that controls movement in and out of the cell • Double layerhttp://library.thinkquest.org/12413/structures.html
13. Cell Wall • Most commonly found in plant cells & bacteria • Supports & protects cellshttp://library.thinkquest.org/12413/structures.html
14. Inside the Cell
15. Nucleus• Directs cell activities• Separated from cytoplasm by nuclear membrane• Contains genetic material - DNA
16. Nuclear Membrane • Surrounds nucleus • Made of two layers • Openings allow material to enter and leave nucleushttp://library.thinkquest.org/12413/structures.html
17. Chromosomes • In nucleus • Made of DNA • Contain instructions for traits & characteristicshttp://library.thinkquest.org/12413/structures.html
18. Nucleolus • Inside nucleus • Contains RNA to build proteinshttp://library.thinkquest.org/12413/structures.html
19. Cytoplasm• Gel-like mixture• Surrounded by cell membrane• Contains hereditary material
20. Endoplasmic Reticulum • Moves materials around in cell • Smooth type: lacks ribosomes • Rough type (pictured): ribosomes embedded in surfacehttp://library.thinkquest.org/12413/structures.html
21. Ribosomes • Each cell contains thousands • Make proteins • Found on ribosomes & floating throughout the cellhttp://library.thinkquest.org/12413/structures.html
22. Mitochondria• Produces energy through chemical reactions – breaking down fats & carbohydrates• Controls level of water and other materials in cell• Recycles and decomposes proteins, fats, and carbohydrateshttp://library.thinkquest.org/12413/structures.html
23. Golgi Bodies • Protein packaging plant • Move materials within the cell • Move materials out of the cellhttp://library.thinkquest.org/12413/structures.html
24. Lysosome • Digestive plant for proteins, fats, and carbohydrates • Transports undigested material to cell membrane for removal • Cell breaks down if lysosome explodeshttp://library.thinkquest.org/12413/structures.html
25. Vacuoles• Membrane-bound sacs for storage, digestion, and waste removal• Contains water solution• Help plants maintain shapehttp://library.thinkquest.org/12413/structures.html
26. Chloroplast• Usually found in plant cells• Contains green chlorophyll• Where photosynthesis takes placehttp://library.thinkquest.org/12413/structures

Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Animal And Plant Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

Parts And Functions Of Animal Cell Biography 

Source:- Google.com.pk
1. CHAPTER 2 :CELL STRUCTURE &CELL ORGANISATION 2.1 Cell Structure & Function 2.2 Cell Organisation
2. 2.1 CELL STRUCTURE & FUNCTION Learning Outcomes :2. Draw & label an animal cell and a plant cell3. Identify the cellular components of an animal cell & a plant cell4. State the functions of the cellular components in an animal and a plant cell5. Compare & contrast an animal cell with a plant cell6. Relate the density of certain organelles with the functions of specific cells.
3. HISTORY Robert Hooke (1665) was first discovered the cell structure of plant He examined fine slices of cork with a primitive microscope He saw many ‘box-like’ structures , then he called ‘cells’, from Latin for ‘little rooms’.
4. THE CELL THEORY (Schleiden M & Schwann T) All living organisms are made up of one or more cells New cells are formed by the division of pre-existing cells Cells contain genetic material of an organism which is passed from the parent cells to daughter cells Cells are the basic unit of structure & function in living things
5.  ORGANELLES  specialised structures which are each surrounded by its own membrane & perform specific function
6. PLASMA MEMBRANE Thin, semi-permeable Made of protein, lipid Controls the movement of substances in and out of the cell Non-organelle
7. CYTOPLASM Jelly-like substance that contains water & mineral salts Contains organelles and food such as carbohydrates (glucose) Medium for metabolic reactions Supplies the substances required by organelles Non-organelle
8. CELL WALL Thick layer outside the plasma membrane Made up of cellulose, fully permeable Maintains the shape of the plant cells Provides mechanical support Non-organelle
9. NUCLEUS Spherical shape with double membrane Contains nucleolus, chromosomes, nucleoplasm & nuclear membrane Controls & regulates all the activities of cell Contain the heredity factors responsible for the traits
10. RIBOSOME Small particles consisting of RNA Exists freely in the cytoplasm or on the surface of the endoplasmic reticulum Synthesis of protein
11. ENDOPLASMIC RETICULUM A system of membrane- enclosed tubules closely packed together and continuous with the nuclear membrane RER has ribosome, SER does not have Transport system for protein & lipids within the cell RER transport protein to other part of cell SER stimulates the synthesis of lipids & cholesterol & transport within the cell
12. GOLGI APPARATUS Vacuolar region surrounded by a complex meshwork of vesicles budding off at its end Received protein & lipids from ER & modify them to form specific secretion such as enzymes & hormones Pack the secretions formed into secreting vesicles & transport them to plasma membrane to be secreted Controls the secretory activity of cells Formation of lysosomes
13. VACUOLE Filled with cell sap, surrounded by semi- permeable membrane called the tonoplast Contain water, sugar & dissolved minerals Maintain turgidity of cells in plants
14. MITOCHONDR IA Rod-shape with a double membrane Outer membrane is smooth, inner membrane is folded to form cristae Known as ‘power- house’ of the cell Releases energy as it is the site for aerobic respiration
15. CHLOROPLAST Disc-shape organelle with a double membrane Consist of an orderly arrangement of grana within the stroma. Granum contains chlorophyll Site of photosynthesis Trapped light energy and change it into chemical energy
16. LYSOSOMES Membrane-bound vesicles found in animal cells Contain enzymes which control breakdown of protein & lipids Contain enzymes that digest aged or defective cell components or materials taken in by the cell from its environments such as food particles or bacteria.
17. CENTRIOLES  A pair of small cylindrical structures (microtubules )  Form spindle fibre for cell
18. COMPARE & CONTRASTANIMAL CELL SIMILARITIES PLANT CELL A plasma membrane surrounding the cytoplasm Both contain nucleus & cytoplasmBoth contain organelles such as mitochondria, ER, Golgi apparatus & ribosomes
19. ANIMAL CELL DIFFERENCES PLANT CELLSmaller than plant cell SIZE Larger than animal cell Irregular shape SHAPE Often regular in shape Absent CELL WALL Present Absent CHLOROPLAST Present No large vacuoles. If VACUOLES Large central vacuole present, small & filled with cell sap numerous.In a form of glycogen in FOOD STORAGE In a form of starch liver & muscle tissues Present CENTRIOLES AbsentSome animal cell have CILIA & FLAGELLA Absent cilia or flagella
20. RELATIONSHIP BETWEEN THESTRUCTURE OF AN ANIMAL CELL & A PLANT CELL
21.  The number of specific organelles in a cell varies on the type of cell and its function. Active cell  many mitochondria to provide enough energy for its activities. Eg. : sperm cells, flight muscle cell (insects & birds) Cell in meristems of plant shoot & root Green plants  more chloroplasts to carry out photosynthesis such as palisade mesophyll cells and spongy mesophyll cells, also guard cells.
22. EXERCISE 2.11. What are the organelle structures of a cell?2. What are the functions of each structure describe above?

Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
Parts And Functions Of Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake

An Animal Cell Biography 

Source:- Google.com.pk
1. Biology 11 (Fundamentals of Biology I) ANIMALS: Form and FunctionLecturer: Ian Kendrich C. Fontanilla, Ph.D. Pav. IV, Room 4113Main References: (1) Biology by Campbell and Reece (2) Integrated Principles of Zoology by Hickman et al.
2. ANIMALS : Form and FunctionA. Animal Cell Types and TissuesB. Animal Systems and Processes 1. Support and Protection 2. Movement 3. Digestion and Nutrition 4. Gas Exchange 5. Transport/Circulation 6. Excretion and Osmoregulation 7. Regulatory Mechanisms
3. ANIMALS : Form and Function• Anatomy - the study of the biological form of an organism• Physiology - the study of the biological functions an organism performs• The comparative study of animals reveals that form and function are closely correlated
4. • Life is characterized by hierarchical levels of organization, each with emergent properties.
5. Levels of Organization in Organismal Complexity1. Protoplasmic grade of organization2. Cellular grade of organization3. Cell-tissue grade of organization4. Tissue-organ grade of organization5. Organ-system grade of organization
6. Levels of Organization in Organismal Complexity1. Protoplasmic grade of organization – unicellular organisms – all life functions are confined within the boundaries of a single cell – protoplasm is differentiated into organelles Paramecium
7. Levels of Organization in Organismal Complexity2. Cellular grade of organization – aggregation of cells that are functionally differentiated – a division of labor is evident Volvox
8. Levels of Organization in Organismal Complexity3. Cell-tissue grade of organization – aggregation of similar cells into definite patterns of layers, thus becoming a tissue
9. Levels of Organization in Organismal Complexity4. Tissue-organ grade of organization – an aggregation of tissues into organs Planaria
10. Levels of Organization in Organismal Complexity5. Organ-system grade of organization – organs work together to perform some function – systems are associated with basic body functions
11. Structural Organization in Higher FormsStructural Types/Kinds/Examples Field ofUnit StudyOrgan Integumentary Respiratory AnatomySystem Muscular Reproductive Skeletal Digestive Nervous Endocrine Circulatory Immune ExcretoryOrgan oral cavity brain Anatomy pharynx eye esophagus liver stomach kidney pancreas lung intestines anus
12. Structural Organization in Higher FormsStructural Types/Kinds/Examples Field ofUnit StudyTissue A.Somatic B. Reproductive Histology - epithelial - sperm - connective - egg/oocyte - muscular - nervousCell same as in tissue Cytology/Cel l Biology
13. Animal Cell Types
14. Four main categories of animal tissues1. Epithelial Tissue2. Connective Tissue3. Muscular Tissue4. Nervous Tissue
15. 1. Epithelial Tissue • covers the outside of the body and lines organs and cavities within the body • compact; occurs in sheets of tightly packed cells • little intercellular substance • polarized
16. 1. Epithelial Tissue• the free surface of the epithelium is exposed to air or fluid• structures on free surfaces: microvilli, cilia, flagella• Basement membrane• where the cells at the base of the barrier are attached• also called basal lamina
17. 1. Epithelial Tissue– cells are closely joined– animals have 3 main types of intercellular links:1. tight junctions2. desmosomes3. gap junctions
18. 1. Tight Junction Tight junction 0.5 µm • membranes of adjacent cells are fused, forming continuous belts around cells • prevent leakage of extracellular fluid across a layer of epithelial cells
19. 2. Desmosomes• fasten cells together into strong sheets, much like rivets• reinforced by intermediate filaments of keratin• attach muscle cells to each other in a muscle Desmosome 1 µm
20. 3. Gap Junction Gap junction 0.1 µm • provide cytoplasmic channels between adjacent cells • salt ions, sugar, amino acids, and other small molecules can pass through channels
21. 1. Epithelial TissueTypes according to layering: 1. simple epithelium - Made up of a single layer of cells 2. stratified epithelium - Made up of many layers of cells 3. pseudostratified epithelium - Made up of a single layer of cells but appears stratified
22. 1. Epithelial TissueTypes of epithelial cells according to shape:1. Cuboidal – like dice2. Squamous – flat like tiles3. Columnar – like bricks on end
23. Simple squamous epithelium • composed of flattened cells • form a continuous delicate lining of blood capillaries, lungs, and other surfaces • permits the passive diffusion of gases and tissue fluids into and out of cavities
24. Stratified squamous epithelium • consists of 2 to many layers of cells • adapted to withstand mild mechanical abrasion • basal layers of cells undergo continuous mitotic divisions • lines the oral cavity, esophagus, anal canal, vagina of mammals, skin
25. Simple cuboidal epithelium • short, boxlike cells collecting duct in kidney • usually lines small ducts and tubules • may have active secretory and absorptive functions
26. Simple columnar epithelium roof of mouth of toad• like cuboidal epithelium but cells are taller• found on highly absorptive surfaces such as intestinal tract and female reproductive tract• in some organs, cells may be ciliated
27. Stratified columnar epithelium salivary duct • consists of at least two layers of cells • found along some areas of the anorectal region and salivary duct
28. Transitional epithelium • a type of stratified epithelium • specialized to accommodate great stretching • found in the urinary tract and bladder
29. Glandular epithelia, absorb or secrete chemicalsolutions Types based on how products are released: a. exocrine (unicellular or multicellular) b. endocrine c. mixed (e.g., pancreas)
30. Special terms of some epithelial tissues: a. mesothelium – squamous cells lining serous cavities such as peritoneal and pleural cavities and lining of visceral organs b. endothelium – lining of blood and lymph vessels

An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake
An Animal Cell Animal Cell Model Diagram Project Parts Structure Labeled Coloring and Plant Cell Organelles Cake