botany 2

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Last updated 12:16 AM on 9/18/26
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25 Terms

1
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Define the term algae.

aquatic photosynthetic protistans

2
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What are the four basic morphological forms of algae?

unicellular, filamentous, colonial, or thallose

3
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Describe (diagram with labels) the general life cycle of plants, including: alternation of generations, haplontic, diplontic.


4
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What prokaryotic group of organisms might be considered as algae?

cyanobacteria (blue-greens)

5
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Contrast the terms isomorphic and heteromorphic.

Isomorphic: both forms gametophyte and sporophyte, may look alike

-          Example: sea lettuce

Heteromorphic: the two forms look different

-          Example: kelp

6
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Describe the basic characteristics of the algal Divisions
Chlorophyta, Chromophyta, Rhodophyta, Euglenophyta, and Dinophyta.

For each algal division, contrast the features relative to: a) pigments, b) cell wall structure, and
c) photosynthetic products (energy storage molecules)

DIVISION DINOPHYTA - dinoflagellates

General Characteristics:

a)      Photosynthetic pigments - chlorophylls a & c, peridinum (a carotenoid)

o   gives them a brownish color

b)      Cell Wall - cellulose plates; contains two grooves (or furrows): transverse & longitudinal

o   some also contains spines

c)      Carbohydrate storage molecule - starch + lipids

-          Are mostly marine

-          Many species are Bioluminescent produce light when disturbed

DIVISION EUGLENOPHYTA - euglenoids (pp. 339-340)

General Characteristics:

a)      Photosynthetic pigments - chlorophyll a & b, carotenoids (some forms without chloroplasts)

b)      Cell Wall – no cellulose; instead, a flexible structure of protein = Pellicle

c)      Carbohydrate storage molecule – paramylon

-          Common freshwater algae that can produce dense colonies in high nutrient areas

DIVISION CHLOROPHYTA - Green algae (pp. 327-333)

General Characteristics:

a)      Photosynthetic pigments - Chlorophylls a & b, carotenoids

b)      Cell Wall – cellulose

c)      Carbohydrate storage molecule – starch

-          Both freshwater and marine species

-          Wide variation in organism size: unicellular, filamentous, colonial, and thallose

DIVISION RHODOPHYTA - Red Algae

a)      Photosynthetic pigments - chlorophylls a & d, phycoerythrin, phycocyanin

b)      Cell Wall - of cellulose with secretion of gelatinous polysaccharides

c)      Carbohydrate storage molecule - floridean starch

-          Mostly red algae, are marine and of tropical deep waters (up to 200 m)

-          Very complex life cycle with three different forms

DIVISION CHROMOPHYTA - yellow-green, golden-brown, brown & diatoms

General Characteristics:

a)      Photosynthetic Pigments - chlorophylls a & c, fucoxanthin (type of xanthophyll)

o   give them a yellowish to brown color

b)      Cell Wall – cellulose

o   some with no cell wall

c)      Carbohydrate storage molecule – laminarin

7
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What are some economic uses of algin (alginic acid)?

Ice cream stabilizer, .Thickening agent, Beer production, Gelling agent, wound dressings, dental impressions, drug delivery, heartburn relief, toothpaste binder, cosmetic creams, face masks, textile printing, paper coating, welding rods

8
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Describe the life cycle of the rockweed Fucus:

diplontic life cycle

A)    Thallus

B)    Receptacle

C)    Male conceptacle

D)    Female conceptacle

 

 

4 = antheridium

5 = sperm

6 = archegonium

7 = egg (inside)

8 = fertilization

9 = zygote

9
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why is it unusual for brown algae?  

Fucus is diplontic and heterogametic
most brown algae have an alternation of generations life cycle and are homogametic

10
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Contrast the typical habitat (where they live) for the brown and red algae.

Brown algae is mostly marine and in cooler climates, Mostly red algae are marine and of tropical, deep waters

11
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Describe the general life cycle of red algae.


            Gametophyte grows and produced gametes by mitosis (spermatia and eggs)
fertilization to produce the zygote which grows to produce the carposporophyte, still attached to the gametophyte
carpospores are produced by mitosis grow into the tetrasporophyte
that produced tetraspores by meiosis
à new gametophyte

12
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Why is its life cycle considered to be unusual?

unusual sporophyte attached to gametophyte and other separate

13
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What is the "red tide"; what organisms are the cause?
Why do we need to be concerned about a red tide?


            Red tide is caused by overgrowing of dinoflagellates, releasing toxins and reducing oxygen leaves in water at night – create problems for many organisms

14
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Relative to Pfisteria piscicida:
Why is it dangerous to us?
In what ways are the outbreaks predictable?

is dangerous because its toxic compounds can become airborne or directly penetrate tissues. Humans are exposed primarily by breathing in water mist/aerosols near active fish kills or through direct skin contact with contaminated water

15
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Characterize the mosses, liverworts, and hornworts?
Include the Division names.

Mosses – Division Bryophyta

gametophyte leafy and grows vertically
gametophyte with some elongate water conducting tissues present (on “stems”)
* gametophyte reproductive organs not stalked
* sporophyte with columnella

Liverworts – Division Hepaticophyta
* commonly thallose and grows flat on substrate
* no elongate water conducting tissues present
* gametophyte develops stalked reproductive organs
* sporophyte small, lacks columnella within capsule

Hornworts – Division Anthocerophyta
* gametophyte thallose and grow flat on substrate
* no elongate water conducting tissues present
* gametophyte reproductive organs not stalked
* sporophyte elongate with columnella

16
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Describe the sexual reproductive process in mosses.

antheridia produce sperm by mitosis à they swim in water
archegonia produce eggs
egg + sperm
à zygote

17
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Describe and/or draw & label the structure of the moss sporophyte.

embryo develops a long stalk = setum
 spores produced in terminal capsule
            within capsule is columnella (central internal stalk)

top of capsule - operculum with peristome teeth that are hygroscopic

18
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What are the unusual features of sphagnum?
What are its economic uses?

grows in peat bogs which produce peat moss produces an acidic pH stems filled with many water-filled spaces which allow for water holding during drought.

19
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How might a liverwort reproduce asexually?

1) dichotomous branching

2) gemmae cups produce little multicellular propagules

20
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What are antheridiophores and archegoniophores?

Antheridiophores - produce antheridia on upper surface

Archegoniophores - produce archegonia on lower surface

Both are stalked structures (that’s why they have different names)

21
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Define the following terms relative to bryophytes.  Include to which groups the terms apply.
capsule, dichotomous branching, elaters, operculum, protonema, sterile jacket layer

capsule structure includes spores (produced by meiosis) found in all bryophytes

elaters: hygroscopic and aid dispersal of spores but only in the liverworts

 dichotomous: commonly have distinct equal branching  a growth pattern for all bryophytes

operculum: with peristome teeth that are hygroscopic on the top of capsule only in mosses

protonema: spores germinate into juvenile plants of the mosses

sterile jacket layer: outer surfaces produces antheridia non reproductive cells on all bryophytes

22
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Describe the sporophytes of hornworts.

Zygote develops into the sporophyte on gametophyte
structures include: a) foot, b) stalk, c) capsule
            capsule includes spores (produced by meiosis) and
            central support with the columnellascop
         elaters

23
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moss

Mosses – Division Bryophyta

gametophyte leafy and grows vertically
gametophyte with some elongate water conducting tissues present (on “stems”)
* gametophyte reproductive organs not stalked
* sporophyte with columnella

24
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liverworts

Liverworts – Division Hepaticophyta
* commonly thallose and grows flat on substrate
* no elongate water conducting tissues present
* gametophyte develops stalked reproductive organs
* sporophyte small, lacks columnella within capsule

25
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hornwarts

Hornworts – Division Anthocerophyta
* gametophyte thallose and grow flat on substrate
* no elongate water conducting tissues present
* gametophyte reproductive organs not stalked
* sporophyte elongate with columnella