Which structure or compartment is part of the symplast?

(A) the interior of a vessel element

(B) the interior of a sieve tube

(C) the cell wall of a mesophyll cell

(D) an extracellular air space

Short Answer

Expert verified

(A) The option “the interior of a vessel element” is false.

(B) The option “the interior of a sieve tube” is true.

(C) The option “the cell wall of a mesophyll cell” is false.

(D) The option “an extracellular air space” is false.

Step by step solution

01

Symplast

Symplast is the inner region of the plasma membrane that facilitates the movement of water and solute via diffusion. They possess more than a single nucleus. The primary function of this is to facilitate the movement of minerals, amino acids, and sugars.

02

Explanation of option ‘(A)’

The interior of a vessel element is not a part of the symplast. The symplast is semipermeable, and hence it facilitates the easy diffusion of selected ions and molecules into and out of the cell. However, the vessel element is not semipermeable.

Thus, the interior of a vessel element is not a part of the symplast.

Therefore, the given option is false.

03

Explanation of option ‘(B)’

The interior of a sieve tube is a part of the symplast. This sieve tube helps in continuously transporting the cytoplasmic contents. The symplast is elongated interconnected perforations that form the sieve tubes.

Thus, the interior of a sieve tube is not a part of the symplast.

Therefore, the given option is true.

04

Explanation of option ‘(C)’

The cell wall of mesophyll cells is not a part of the symplast because they are ground cells that are found on the epidermal regions of the cells. The cell wall of the mesophyll cells are apoplast, and hence they lack cytoplasm in them.

Thus, the interior of a sieve tube is not a part of the symplast.

Therefore, the given option is false.

05

Explanation of option ‘(D)’

The extracellular air spaces are not a part of the symplast because they facilitate the movement of water and ions through the apoplastic pathway. Such kind of pathway occurs only in cells that do not have cytoplasm.

Thus, the extracellular air spaces are not a part of the symplast.

Therefore, the given option is false.

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Most popular questions from this chapter

How would the long-distance transport of water be affected if tracheids and vessel elements were alive at maturity? Explain.

Would you expect plant growth to have a Q10 closer to 1 or 3? Why?

A Minnesota gardener notes that the plants immediately bordering a walkway are stunted compared with those farther away. Suspecting that the soil near the walkway may be contaminated from salt added to the walkway in winter, the gardener tests the soil. The composition of the soil near the walkway is identical to that farther away except that it contains an additional 50 mM NaCl. Assuming that the NaCl is completely ionized, calculate how much it will lower the solute potential of the soil at 20°C using the solute potential equation:

ΨS = -iCRT

where i is the ionization constant (2 for NaCl), C is the molar concentration (in mol/L), R is the pressure constant [R = 0.00831 (L · MPa)/(mol · K)], and T is the temperature in Kelvin (273 + °C). How would this change in the solute potential of the soil affect the water potential of the soil? In what way would the change in the water potential of the soil affect the movement of water in or out of the roots?

A plant cell with a ΨS of -0.65 MPa maintains a constant

volume when bathed in a solution that has a ΨS of -0.30 MPaand is in an open container. The cell has a

(A) ΨP of +0.65 MPa.

(B) Ψ of -0.65 MPa.

(C) ΨP of +0.35 MPa.

(D) ΨP of 0 MPa.

What would enhance water uptake by a plant cell?

(A) decreasing the Ψ of the surrounding solution

(B) positive pressure on the surrounding solution

(C) the loss of solutes from the cell

(D) increasing the Ψ of the cytoplasm

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