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Describe the trends shown by the regression lines in your scatter plot. (a) Compare the relationship between the increasing concentration of CO2 and the dry mass of corn to that for velvetleaf. (b) Considering that velvetleaf is a weed invasive to cornfields, predict how increased CO2 concentration may affect interactions between the two species.

Short Answer

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  1. The dry mass of the corn is lesser compared to the velvetleaf because the velvetleaf utilizes CO2and has more dry mass.
  2. The increase in carbon dioxide, in turn, increases the competition between the weed species velvetleaf and corn.

Step by step solution

01

Carbon dioxide’s role in the photosynthesis  

Carbon dioxide from the atmosphere is utilized in the process of photosynthesis. Carbon dioxide is used to make food for the plants. Carbon dioxide can increase the growth of plants.

02

Explanation for part “a”

The dry weight of corn increases due to the rise in carbon dioxide since it acts as a fuel to produce the starch required for plant growth.

The carbon dioxide concentration and the dry weight of corn are directly related to each other. The dry mass of the velvet plant increases more than the corn plant does due to more utilization of carbon dioxide by the weed plant.

03

Explanation for part “b”

The weed species that grows along with the corn plant is the velvet plant. Even though it is a weed plant, the increase in carbon dioxide tends to increase the dry weight of the weed plant. The weed plant also tends to consume carbon dioxide and grow similar to the corn plant.

The interaction between the weed species and the corn plant is a competitive interaction since the weed plant tries to utilize more carbon dioxide and increase its growth, which results in the inhibition of the growth of corn. A negative trend is seen in the interaction of these two species.

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Most popular questions from this chapter

Scientific evidence indicates that the CO2 added to the air by the burning of wood and fossil fuels is contributing to global warming, a rise in global temperature. Tropical rain forests are estimated to be responsible for approximately 20% of global photosynthesis, yet the consumption of large amounts of CO2 by living trees is thought to make little or no net contribution to reduction of global warming. Explain why this might be the case. (Hint: What processes in both living and dead trees produce CO2?).

How is photosynthesis similar in C4 plants and CAM plants?

(A) In both cases, only photosystem I is used.

(B) Both types of plants make sugar without the Calvin cycle.

(C) In both cases, rubisco is not used to fix carbon initially.

(D) Both types of plants make most of their sugar in the dark.

To explore the relationship between the two variables, it is useful to graph the data in a scatter plot and then draw a regression line. (a) First, place the labels for the dependent and independent variables on the appropriate axes. Explain your choices. (b) Now plot the data points for corn and velvet left using a different symbol for each set of data, and add a key for the two symbols. (For additional information about graphs, see the Scientific Skills Review in Appendix F.)

The following diagram represents an experiment with isolated thylakoids. The thylakoids were first made acidic by soaking them in a solution at pH 4. After the thylakoid space reached pH 4, the thylakoids were transferred to a basic solution at pH 8. The thylakoids then made ATP in the dark. (See Concept 3.3 to review pH.).

Draw an enlargement of part of the thylakoid membrane in the beaker with the solution at pH 8. Draw ATP synthase. Label the areas of high H+ concentration and low H+ concentration. Show the direction protons flow through the enzyme and show the reaction where ATP is synthesized. Would ATP end up in the thylakoid or outside of it? Explain why the thylakoids in the experiment were able to make ATP in the dark.

To synthesize one glucose molecule, the Calvin cycle uses __________molecules of CO2, _________molecules of ATP, and ________molecules of NADPH.

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