Plantlike& Funguslike Protists Sections 20-3, 20-4,...

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Plantlike& Funguslike Protists Sections 20-3, 20-4, 20-5

Transcript of Plantlike& Funguslike Protists Sections 20-3, 20-4,...

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Plantlike& Funguslike Protists

Sections 20-3, 20-4, 20-5

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Plantlike Protists: Unicellular Algae

Section 20-3 Characteristics of Algae:

• Plantlike members of the kingdom

Protista

• Eukaryotes

• Autotrophic – contain chlorophyll &

make food by photosynthesis

• Range in size from microscopic to

seaweeds hundreds of feet in length

• Do not have true roots, stems, or leaves

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• Produce oxygen that is returned to the

atmosphere

• Found in freshwater, marine, and moist

soil habitats

• Most have flagella at some time in life

cycle

• Algae cells contain organelles called

pyrenoids organelles that make & store

starch

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Classification:

• Classified into 7 phyla based on:

-color

-type of chlorophyll

-form of food-storage substance

-cell wall composition

• All phyla contain chlorophyll a

• All algae live in water or moist areas (ponds, seas, moist soil, ice...)

• Act as producers making food & oxygen

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Chrysophyta (golden algae)

or (yellow-green algae)

• Most live in freshwater habitats, but some are marine

• Unicellular algae containing chlorophyll a & c and the brown pigment fucoxanthin and carotenoids

• Cell walls contain pectin rather than cellulose

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• Store food in the form of oil rather than

starch

• May form highly resistant cysts to

survive beneath frozen lake surfaces in

winter

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Bacillariophyta (diatoms):

• Abundant in marine & freshwater habitats

• Called phytoplankton & start many aquatic food chains

• Contain chlorophyll a & c, carotenoids (orange pigments), & xanthophyll (yellow pigments)

• Store food as starch & contain mainly cellulose in their cell walls

• Lack cilia & flagella

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• Photosynthetic

dinoflagellates are

yellow to brown in

color due to

chlorophyll a & c

and carotenoids

• Have 2 flagella

that spin and

move the

dinoflagellate

through water

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• Store food as

starch

• Some are covered

with armor like

plates & spines

made of cellulose

• Often undergo

algal blooms

where their

numbers greatly

increase

• Produce a toxic

substance and

cause poisonous

red tides

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• Some such as Noctiluca can

produce light by bioluminescence

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Section 20-4: Plantlike Protists

Rhodophyta (red algae)

• Multicellular algae that mainly grow deep in warm marine waters to polar regions

• Contain chlorophyll a & phycobilins (red pigments) to trap sunlight for photosynthesis

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• Store food as starch

• Cell walls contain cellulose and agar

(used as a base in culture dishes to

grow microbes)

• Some species contain carageenan in

their cell walls used for gelatin

capsules & in some cheeses

Polysiphonia

(red algae)

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• Important role in the formation of coral

reefs

– provide nourishment for coral animals

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Phaeophyta (brown algae):

• Contain chlorophyll a & chlorophyll c

and fucoxanthin (brown pigment) as

accessory pigments

• Most are multicellular growing in cooler

marine habitats

• Include kelps & seaweeds

• Largest protists

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• Specialized rootlike

holdfasts anchor

thallus to rocks

• Specialized air

bladders keep

leaflike blades afloat

near surface to get

light for

photosynthesis

• Stemlike structures

are called the stipe

and support the

blades

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• Store food as a carbohydrate called

laminarin

• Sargassum forms huge floating mats

many kilometers long in the Atlantic

Ocean

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• Fucus or

rockweed

attaches to the

bottom by a

holdfast.

• Macrocystis or

giant kelp

contains algin in

its cell walls

which is used in

cosmetics, some

drugs, ice cream,

etc.

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Chlorophyta (green algae):

• Contain chlorophyll a & chlorophyll b

and carotenoids (orange & yellow

pigments) as accessory pigments

• Store food as starch

• Cell walls mainly cellulose, but some

marine forms add CaCO3

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3 Types include:

1. Unicellular algae are single-celled

& make up phytoplankton (a

population of photosynthetic

organisms that begins many aquatic

food chains)

• Phytoplankton make most of the

world's carbohydrates and are the

major producers of oxygen

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Unicellular Green Algae

• Chlamydomonas

which is a single

celled green algae

growing in ponds,

ditches and wet

soil.

–The body of

algae is called

the thallus.

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2. Colonial algae

consist of groups of

cells working

together.

• Some colonial

algal cells may

specialize for

movement,

feeding, or

reproduction

showing for

division of labor.

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• Filamentous algae

have slender,

rod-shaped thallus

arranged in rows

joined end-to-end

• Holdfasts are

specialized

structures in some

filamentous algae

that attaches the

algae so it can grow

toward sunlight at

the surface

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Colonial Green Algae

• Spirogyra

(freshwater)

forms long

thread like

colonies called

filaments

resembling cells

that are stacked

like aluminum

cans placed end

to end.

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Volvox consists of as few as 500 to as

many as 50,000 cells arranged to form

hollow spheres.

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3. Multicellular

algae often have a

large, complex leaf-

like thallus & may

have stem-like

sections and air

bladders

• Macrocystis is

among the largest

multicellular algae

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Multicellular Green Algae

• Ulva or "sea lettuce" is a bright-green

marine alga that is commonly found

along rocky seacoasts.

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Human Uses of Algae

• Major food source for life in the ocean

• Brown kelp forests are home to many

animal species

• Rich in vitamin C and iron

• Used to treat stomach ulcers, high

blood pressure, arthritis

• Used to make plastics waxes,

deodorants, paints, lubricants.

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• Agar, thickens the nutrient mixtures

used to grow bacteria.

• Used in food products such as ice

cream, salad dressing, pudding, candy

bars, pancake syrup and eggnog

• Red algae Porphyra, called nori in

Japanese, is used to wrap rice,

fish and vegetables to

make sushi.

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Sec. 20-5 Funguslike Protists

Characteristics of Fungal Protists:

• Includes cellular slime molds, plasmodial slime molds, & water molds

• Unique life cycles with two phases

• Multicellular, heterotrophic organisms

• Small & live in moist or watery habitats

• Act as decomposers breaking down dead organic matter

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Slime molds

• Shiny, wet appearance

• Often brightly colored (yellow or

orange)

• Life cycles with 2 phases --- a mobile

feeding stage & a nonmotile

reproductive stage

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• Fungal-like in

nutrition

(absorptive

heterotrophs that

break down dead

organic matter)

• May be

saprophytes or

parasites

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• Multinucleate body mass

• May have a mobile, ameoba-

like feeding stage

• Make a reproductive structure

or fruiting body that produces

spores

• Often found on decaying wood

or leaves

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A is Lycogala epidendrum, B is Comatricha typhoides,

C is Badhamia utricularia, D is Dictydium

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• Two groups of slime molds:

• Cellular Slime Molds (Phylum

Acrasiomycota)

• Acellular Slime Molds (Phylum

Myxomycota)

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Acrasiomycota (Cellular

Slime Molds) • Alternate in their life cycle between

amoeboid feeding stage & spore-producing

fruiting body

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• Live in freshwater, moist soil

• Clump together into masses called

pseudoplasmodium whenever little

food is available

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• Cells in the pseudoplasmodium

are independent but move

together "slug-like"

• Pseudoplasmodium settles &

forms fruiting body with spores

• Spores spread by wind to new

location & form individual

amoeboid feeding stage

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Myxomycota (Plasmodial

Slime Molds) • Exist as a plasmodium ( a mass of

cytoplasm with many nuclei)

• Plasmodium creeps along over

decaying material

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• Decomposes & absorbs plant

material as food

• When food is scarce, the

plasmodium forms stalked fruiting

bodies with spores that are

resistant to bad environmental

conditions

• When conditions turn favorable,

spores form a new plasmodium

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Oomycota (Water Molds)

• Fungal-like organism made of

branching filaments with cell walls of

cellulose

• Aquatic water molds are parasites on

fish forming furry growths on their gills

• May act as decomposers in water of

dead plants & animals

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• May be pathogenic to plants

e.g. Phytophthora infestans caused

blight in potatoes (Irish Potato Famine

in 19th century)

• Blight in plants decays & discolors

stems & leaves