1. Of what value are tubers, a type of stem modification, to the survival of a plant species?
Tubers are a modified plant structure that are enlarged to store nutrients. They are used by plants to survive the winter or dry months, to provide energy and nutrients for regrowth during the next growing season.
2. When moving a plant from one place to another, why is it important to leave original soil around the roots?
It is important to leave original soil around the roots of a plant when moving its location because the original soil will allow the plant to have a nice transition to its new environment. It lets it slowly adapt and become situated in the new location. If it were to be moved without any original soil, the change may be too drastic or fast for the plant to be able to process it and adapt. This might lead to a very sad death.
3. What is the usual cause when a plant wilts?
The cause for a plant wilting is usually a lack of water in the plant's cells, which is means it has a lower turgidity. This reduces its ability to remain rigid or erect. The poor guy sadly wilts from thirst!
4. Explain when a seed would be a sink and when it would be a source
Source: produces and stores carbohydrates
Sink: consumes those carbohydrates
The movement of carbohydrates occurs from where carbohydrates are made or have been stored, called a source, to where they will be stored or used, called a sink.
5. Why is it necessary that veins are relatively close together in the leaves?
Distance between veins shows how well the veins are supplying resources to the leaf. Plants with denser vein networks -- veins that are closer together -- are able to withstand higher levels of water loss and absorb more carbon.
Monday, January 27, 2014
Friday, December 6, 2013
More Plants! Warm up 2
Compare growth due to
apical and lateral meristems in dicots
Growth in plants is brought about initially with cell
division at the apical and lateral meristem.
Observation of shoot/root tips with light microscope reveals
regions with cell in the various stages of mitosis. (Cell division,
reproduction)
This growth process adds length to the stem or root
Secondary growth added by the Lateral meristem has two types
1.
Vascular cambium that produces secondary xylem
and phloem
2.
Cork cambium produces some of the bark layer of
the stem
Explain the role of Auxin
in phototropism
If light is scares because an area is crowded with plants or
for some other reason, a plant needs to grow towards the light so it can get as
much of it as possible.
Auxins are plant hormones that cause positive phototropism
of the plant shoot and seedings
Explain how water us carried by transpiration stream,
including the structure if xylem vessels, traspirational pull, cohesion,
adhesion and evaporation
Plants!!! Warm up
Outline the
differences (5) between the monocots and dicots
Feature
|
Monocots
|
Dicots
|
Venation
|
Parallel venation
|
Net- like venation
|
Number of Cotyledons
|
Two
|
One
|
Floral Organs
|
Petals in multiples of three
|
Petals in multiple of 4 & 5
|
Roots
|
Fibrous adventitious
|
Tap root with branching laterals
|
Leaf Mesophyll
|
Spongy
|
Palisade and spongy
|
Vascular Bundle Arrangement
|
Arranged in rings. Divided into cortex and stele
|
Bundle, no particular order
|
Identify and describe
modifications of roots, stems, and leaves of different plants. Give one example
of each
Stem modification
Bulbs: Onions and lilies
·
Short vertical underground stems
·
Many fleshy highly modified leaves for the storage
or nutrients
·
Can produce new plants by bulb division or development
of one of the many auxiliary buds
Horizontal stems- runners
·
Spread out from the main body of the plant
·
At the point the stem touches the ground, a new root
forms
·
Asexual reproduction, if a runner id broken it
can establish its self as its own plant
·
Adaptation for finding water
Cacti
·
Leaves are reduced to spines to prevent water
loss in transpiration
·
The stem is enlarges for storage of water
·
The stem carries out photosynthesis
Root tip modification
Tuber/ Potato
·
The potato is an underground modification of the
root tip
·
The ‘eaten potato’ contains the carbohydrate and
protein stores for the growth
·
Auxiliary buds
Tap Root modification
·
Function: Storage of water
·
Sandy soils
Thursday, November 7, 2013
Some fun things about Photosynthesis
Explain photophosphorylation in the terms of chemiosmosis.
Photophosphorylation is the production of ATP using the energy of sunlight. The process of chemiosmosis makes photophosphorylation possible. Chemiosmosis is the movement of ions across a selectively permeable membrane and down a concentration gradient. During photosynthesis, light is absorbed by cholorphyll molecules in photosystems. Electrons within these molecules are then raised to a higher energy state; they become excited. There is a high concentration of H+ from the pumping of protons. Then, H+ accumulates in the thyhlakoid space. Protons diffuse through ATP synthase where they reduce ADP to ATP.
State the final products of the two photosystems involved in the light-dependent reactions of photosynthesis.
The final products of the two photosystems involved in light-dependent reactions of photosynthesis are ATP and NADPH.
How are the products of the light-dependent reaction important to the light-independent reaction?
The products (glucose, amino acids, organic compounds, ATP, and NADPH)of the light-dependent reaction are very important. The light-independent reactions use these products in order to fuel their processes and carry out the Calvin Cycle. It is its reactants.
Chemiosmosis in Phosphorylation
Describe chemiosmosis as it relates to oxidative
phosphorylation.
Chemiosmosis
involves the movement of protons (hydrogen ions) moving across a membrane (down
its concentration gradient) to provide energy so that oxidative phosphorylation
can occur. Oxidative phosphorylation is a metabolic pathway that uses energy
released by the oxidation of glucose to produce ATP.
Although
the many forms of life on earth use a range of different nutrients, almost all
carry out oxidative phosphorylation to produce ATP, the molecule that supplies
energy to metabolism. This pathway is probably so pervasive because it is a
highly efficient way of releasing energy, compared to alternative fermentation
processes such as anaerobic glycolysis.
The Fabulous Role of Oxygen
Role of Oxygen in Cellular Respiration
Without oxygen, cellular respiration could not occur because oxygen serves as the final electron acceptor in the electron transport system. The electron transport system would therefore not be available. It is part of the process!
Glycolysis can occur without oxygen. Although glycolysis does not require oxygen, it does require NAD+. Cells without oxygen available need to regenerate NAD+ from NADH so that in the absence of oxygen, at least some ATP can be made by glycolysis.
Glycolysis can occur without oxygen. Although glycolysis does not require oxygen, it does require NAD+. Cells without oxygen available need to regenerate NAD+ from NADH so that in the absence of oxygen, at least some ATP can be made by glycolysis.
Role of Oxygen in Photosynthesis
Oxygen is the by-product of a water molecule breaking down to supply photosystem II with electrons in the very beginning of photosynthesis.
Thursday, October 31, 2013
Enzymes Enzymes Enzymes
What is denaturation?
It is the process in which the folding structure of a protein is altered due to exposure to an excess of certain chemical or physical factors. This causes the protein to become inactive because it loses its properties
What does a graph for
increasing substrate concentration of an enzyme look like? Describe it
It increases but begins to slow down until it reaches a plateau
Compare
competitive/Noncompetitive inhibition
Competitive inhibition is where an inhibitor is physically and structurally similar to the substrate. Because of its similarities, the inhibitor binds to the active site of the enzyme where the substrate would normally bind. This binding of the inhibitor to the enzyme means the substrate cannot bind and it must wait for its turn.
Non-competitive inhibition is when inhibitor binds to a site on the enzyme other than the active site. The binding of the inhibitor to the enzyme cause the enzyme to change shapes. This alters the active site and the substrate can no longer bind.
Non-competitive inhibition is when inhibitor binds to a site on the enzyme other than the active site. The binding of the inhibitor to the enzyme cause the enzyme to change shapes. This alters the active site and the substrate can no longer bind.
Discuss lock key vs.
induced fit.
Lock and key states that an enzyme’s active site is the exact shape of the substrate, and that the substrate neatly fits in.
Both are substrate specific, just one model states that the enzyme molds to fit the substrate whereas the other says that the site is like a puzzle piece that does not change.
Subscribe to:
Posts (Atom)