Again 100 Morphology Of Flowering Plants MCQs
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Morphology of Flowering Plants MCQs with Answers – Part 2 (Class 11 Biology)

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101. At every node of a stem, only one leaf arises, and successive leaves occur on alternating sides of the axis. This arrangement is:
ⓐ. opposite phyllotaxy
ⓑ. whorled phyllotaxy
ⓒ. palmate leaflet arrangement
ⓓ. alternate phyllotaxy
102. Assess the following statements about alternate phyllotaxy. I. Only one leaf arises at each node. II. Successive leaves occupy alternating positions along the stem. III. China rose, mustard and sunflower show this arrangement. IV. Every leaflet of a compound leaf is counted as a separate alternate leaf.
ⓐ. I, II and III only
ⓑ. I and IV only
ⓒ. II, III and IV only
ⓓ. I, II, III and IV
103. The relevant positions are described below. At Node P, two leaves arise at the same level on opposite sides of the stem. The next node also bears a pair rather than a single leaf. The phyllotaxy is:
ⓐ. alternate
ⓑ. whorled
ⓒ. opposite
ⓓ. pinnate
104. A developmental defect prevents one member of each leaf pair from expanding, but paired leaf scars remain visible at every node. The shoot may appear to bear one leaf per node. The original phyllotaxy should still be classified as:
ⓐ. opposite, since paired scars reveal two leaf positions at each node
ⓑ. alternate, since only one expanded leaf is visible at each node
ⓒ. whorled, since suppressed leaves may be counted as a third member
ⓓ. pinnate, since paired scars represent two leaflets on a rachis
105. Three shoots have the following nodal arrangements.
ShootLeaves arising at each node
POne leaf, alternating in position at successive nodes
QTwo leaves on opposite sides
RFour leaves forming a ring around the stem
The correct classification is:
ⓐ. P-opposite, Q-alternate, R-whorled
ⓑ. P-alternate, Q-opposite, R-whorled
ⓒ. P-whorled, Q-opposite, R-alternate
ⓓ. P-alternate, Q-whorled, R-opposite
106. A stem has \(6\) nodes with alternate phyllotaxy, another has \(6\) nodes with opposite phyllotaxy, and a third has \(6\) nodes bearing \(3\) leaves per whorl. Assuming no leaves are lost, the total number of leaves is:
ⓐ. \(24\)
ⓑ. \(30\)
ⓒ. \(32\)
ⓓ. \(36\)
107. Let \(L\) represent the number of leaves and \(N\) the number of nodes on an intact shoot. For a whorl containing \(k\) leaves at each node, where \(k\gt2\), the relations for alternate, opposite and whorled phyllotaxy are respectively:
ⓐ. \(L=2N,\ L=N,\ L=k+N\)
ⓑ. \(L=N,\ L=kN,\ L=2N\)
ⓒ. \(L=kN,\ L=2N,\ L=N\)
ⓓ. \(L=N,\ L=2N,\ L=kN\)
108. Which statements are biologically valid? I. Phyllotaxy describes the arrangement of whole leaves on a stem or branch. II. It is distinct from the venation pattern within a lamina. III. The arrangement of leaflets on a rachis is not itself stem phyllotaxy. IV. Leaves must be identified as whole organs before their phyllotaxy is classified.
ⓐ. I and III only
ⓑ. I, II, III and IV
ⓒ. II and IV only
ⓓ. I, II and IV only
109. Match each plant with its characteristic phyllotaxy. A Column II entry may be reused.
Column IColumn II
P. China rose1. Alternate
Q. Guava2. Opposite
R. Alstonia3. Whorled
S. Mustard
ⓐ. P-2, Q-1, R-3, S-2
ⓑ. P-3, Q-2, R-1, S-3
ⓒ. P-1, Q-2, R-3, S-1
ⓓ. P-1, Q-3, R-2, S-3
110. A record of three plants is shown below.
PlantLeaves per nodeVenation
POneReticulate
QTwoReticulate
RFourParallel
The strongest conclusion supported by the data is:
ⓐ. phyllotaxy and venation vary as independent leaf characters
ⓑ. every reticulate leaf must occur in alternate phyllotaxy
ⓒ. parallel venation necessarily produces whorled phyllotaxy
ⓓ. leaf number per node determines the pattern of veins in the lamina
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