Sexual Reproduction in Flowering Plants Practice
Take 5 chapter-wise practice tests plus 1 full module test on Sexual Reproduction in Flowering Plants for NEET with +4/-1 scoring, answer review, and concise explanations.
Take 5 chapter-wise practice tests plus 1 full module test on Sexual Reproduction in Flowering Plants for NEET with +4/-1 scoring, answer review, and concise explanations.
Attempt 5 focused chapter practice tests and 1 mixed module test with original NEET-style MCQs on pollination, embryo sac structure, double fertilisation, and seed-fruit formation.
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1. The stamen is the male reproductive part of a flower and consists of:
Explanation: The anther produces pollen grains, while the filament supports it.
2. The female reproductive part of the flower is called:
Explanation: The pistil includes stigma, style, and ovary.
3. Pollen grains develop inside the:
Explanation: Each anther lobe carries microsporangia in which pollen mother cells are found.
4. The nutritive layer of the anther wall is:
Explanation: Tapetal cells nourish developing microspores and often become multinucleate.
5. Microsporogenesis refers to formation of:
Explanation: Pollen mother cells undergo meiosis and produce haploid microspore tetrads.
6. The tough outer wall of pollen grain is made of:
Explanation: Sporopollenin is highly resistant to enzymes and physical damage.
7. The pollen wall is absent or thin at the germ pore mainly to:
Explanation: The germ pore is the site from which the pollen tube usually comes out.
8. A mature pollen grain of many angiosperms at shedding stage is usually:
Explanation: It usually contains one vegetative cell and one generative cell at the time of shedding.
9. Pollen grains can be preserved for breeding work in:
Explanation: Cryopreservation in liquid nitrogen keeps pollen viable for long periods.
10. Pollen tablets are discussed as they are rich in:
Explanation: Pollen is nutritionally dense and has been used as a supplement.
11. Revision Booster 1. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The stamen is the male reproductive part of a flower and consists of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The anther produces pollen grains, while the filament supports it.
12. Revision Booster 2. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The female reproductive part of the flower is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The pistil includes stigma, style, and ovary.
13. Revision Booster 3. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Pollen grains develop inside the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Each anther lobe carries microsporangia in which pollen mother cells are found.
14. Revision Booster 4. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The nutritive layer of the anther wall is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Tapetal cells nourish developing microspores and often become multinucleate.
15. Revision Booster 5. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Microsporogenesis refers to formation of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Pollen mother cells undergo meiosis and produce haploid microspore tetrads.
16. Revision Booster 6. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The tough outer wall of pollen grain is made of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Sporopollenin is highly resistant to enzymes and physical damage.
17. Revision Booster 7. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The pollen wall is absent or thin at the germ pore mainly to:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The germ pore is the site from which the pollen tube usually comes out.
18. Revision Booster 8. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. A mature pollen grain of many angiosperms at shedding stage is usually:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. It usually contains one vegetative cell and one generative cell at the time of shedding.
19. Revision Booster 9. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Pollen grains can be preserved for breeding work in:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Cryopreservation in liquid nitrogen keeps pollen viable for long periods.
20. Revision Booster 10. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Pollen tablets are discussed as they are rich in:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Pollen is nutritionally dense and has been used as a supplement.
21. Revision Booster 11. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The stamen is the male reproductive part of a flower and consists of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The anther produces pollen grains, while the filament supports it.
22. Revision Booster 12. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The female reproductive part of the flower is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The pistil includes stigma, style, and ovary.
23. Revision Booster 13. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Pollen grains develop inside the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Each anther lobe carries microsporangia in which pollen mother cells are found.
24. Revision Booster 14. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The nutritive layer of the anther wall is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Tapetal cells nourish developing microspores and often become multinucleate.
25. Revision Booster 15. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Microsporogenesis refers to formation of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Pollen mother cells undergo meiosis and produce haploid microspore tetrads.
26. The ovule is attached to the placenta by the:
Explanation: The funicle is the stalk connecting the ovule to the placenta.
27. The opening through which the pollen tube usually enters the ovule is:
Explanation: Micropyle is a small opening in the integuments near the egg apparatus.
28. Megasporogenesis is the formation of:
Explanation: The diploid megaspore mother cell undergoes meiosis to produce megaspores.
29. In most flowering plants, out of four megaspores formed:
Explanation: Typically only one megaspore remains functional, while the others degenerate.
30. The common angiosperm embryo sac is described as:
Explanation: The mature embryo sac has egg apparatus, three antipodals, and a central cell with two polar nuclei.
31. The egg apparatus consists of:
Explanation: The egg apparatus lies near the micropylar end.
32. Filiform apparatus is present in:
Explanation: Filiform apparatus helps guide the pollen tube toward the egg apparatus.
33. The central cell of embryo sac contains:
Explanation: These nuclei later participate in triple fusion.
34. The most common embryo sac development in angiosperms is:
Explanation: The common Polygonum type embryo sac is monosporic.
35. The most common type of ovule in angiosperms is:
Explanation: In anatropous ovules, the body of the ovule is inverted during development.
36. Revision Booster 1. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The ovule is attached to the placenta by the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The funicle is the stalk connecting the ovule to the placenta.
37. Revision Booster 2. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The opening through which the pollen tube usually enters the ovule is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Micropyle is a small opening in the integuments near the egg apparatus.
38. Revision Booster 3. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Megasporogenesis is the formation of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The diploid megaspore mother cell undergoes meiosis to produce megaspores.
39. Revision Booster 4. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. In most flowering plants, out of four megaspores formed:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Typically only one megaspore remains functional, while the others degenerate.
40. Revision Booster 5. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The common angiosperm embryo sac is described as:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The mature embryo sac has egg apparatus, three antipodals, and a central cell with two polar nuclei.
41. Revision Booster 6. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The egg apparatus consists of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The egg apparatus lies near the micropylar end.
42. Revision Booster 7. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Filiform apparatus is present in:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Filiform apparatus helps guide the pollen tube toward the egg apparatus.
43. Revision Booster 8. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The central cell of embryo sac contains:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. These nuclei later participate in triple fusion.
44. Revision Booster 9. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The most common embryo sac development in angiosperms is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The common Polygonum type embryo sac is monosporic.
45. Revision Booster 10. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The most common type of ovule in angiosperms is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. In anatropous ovules, the body of the ovule is inverted during development.
46. Revision Booster 11. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The ovule is attached to the placenta by the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The funicle is the stalk connecting the ovule to the placenta.
47. Revision Booster 12. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The opening through which the pollen tube usually enters the ovule is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Micropyle is a small opening in the integuments near the egg apparatus.
48. Revision Booster 13. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Megasporogenesis is the formation of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The diploid megaspore mother cell undergoes meiosis to produce megaspores.
49. Revision Booster 14. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. In most flowering plants, out of four megaspores formed:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Typically only one megaspore remains functional, while the others degenerate.
50. Revision Booster 15. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The common angiosperm embryo sac is described as:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The mature embryo sac has egg apparatus, three antipodals, and a central cell with two polar nuclei.
51. Transfer of pollen grains from anther to stigma is called:
Explanation: Pollination precedes fertilisation in flowering plants.
52. Autogamy occurs when pollen is transferred to stigma of:
Explanation: Autogamy is self-pollination within the same flower.
53. Geitonogamy means pollination between:
Explanation: It is genetically similar to self-pollination but functionally resembles cross-pollination.
54. Xenogamy brings pollen from:
Explanation: Xenogamy promotes genetic recombination and variation.
55. Wind pollination is called:
Explanation: Wind-pollinated flowers are often small and non-showy with abundant dry pollen.
56. Pollination by insects is known as:
Explanation: Insect-pollinated flowers usually provide nectar, scent, or visual attraction.
57. Herkogamy helps prevent self-pollination by:
Explanation: Physical separation reduces chance of pollen from the same flower reaching its own stigma.
58. When pollen release and stigma receptivity occur at different times, the mechanism is:
Explanation: Temporal separation reduces self-pollination and encourages cross-pollination.
59. A compatible pollen grain on stigma usually:
Explanation: The stigma recognizes compatibility before tube growth continues through the style.
60. Removal of anthers from a bisexual flower before pollen release is called:
Explanation: This prevents self-pollination during artificial hybridisation.
61. Revision Booster 1. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Transfer of pollen grains from anther to stigma is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Pollination precedes fertilisation in flowering plants.
62. Revision Booster 2. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Autogamy occurs when pollen is transferred to stigma of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Autogamy is self-pollination within the same flower.
63. Revision Booster 3. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Geitonogamy means pollination between:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. It is genetically similar to self-pollination but functionally resembles cross-pollination.
64. Revision Booster 4. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Xenogamy brings pollen from:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Xenogamy promotes genetic recombination and variation.
65. Revision Booster 5. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Wind pollination is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Wind-pollinated flowers are often small and non-showy with abundant dry pollen.
66. Revision Booster 6. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Pollination by insects is known as:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Insect-pollinated flowers usually provide nectar, scent, or visual attraction.
67. Revision Booster 7. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Herkogamy helps prevent self-pollination by:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Physical separation reduces chance of pollen from the same flower reaching its own stigma.
68. Revision Booster 8. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. When pollen release and stigma receptivity occur at different times, the mechanism is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Temporal separation reduces self-pollination and encourages cross-pollination.
69. Revision Booster 9. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. A compatible pollen grain on stigma usually:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The stigma recognizes compatibility before tube growth continues through the style.
70. Revision Booster 10. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Removal of anthers from a bisexual flower before pollen release is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. This prevents self-pollination during artificial hybridisation.
71. Revision Booster 11. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Transfer of pollen grains from anther to stigma is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Pollination precedes fertilisation in flowering plants.
72. Revision Booster 12. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Autogamy occurs when pollen is transferred to stigma of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Autogamy is self-pollination within the same flower.
73. Revision Booster 13. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Geitonogamy means pollination between:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. It is genetically similar to self-pollination but functionally resembles cross-pollination.
74. Revision Booster 14. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Xenogamy brings pollen from:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Xenogamy promotes genetic recombination and variation.
75. Revision Booster 15. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Wind pollination is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Wind-pollinated flowers are often small and non-showy with abundant dry pollen.
76. The feature unique to angiosperms is:
Explanation: One male gamete fuses with the egg and the other with the polar nuclei.
77. Fusion of male gamete with egg is called:
Explanation: Syngamy produces the diploid zygote.
78. Triple fusion forms the:
Explanation: The second male gamete fuses with two polar nuclei to form a triploid nucleus.
79. The endosperm in most angiosperms is:
Explanation: It arises from triple fusion and nourishes the developing embryo.
80. After fertilisation, the ovary usually develops into:
Explanation: The ovary matures into fruit, while ovules become seeds.
81. After fertilisation, the ovule develops into:
Explanation: The fertilised ovule transforms into a seed containing embryo and food reserve.
82. In a dicot embryo, the part above the cotyledons is the:
Explanation: Epicotyl lies above the cotyledons and bears the plumule.
83. The radicle in an embryo gives rise to the:
Explanation: The radicle is the embryonic root region.
84. The single cotyledon of grasses is called:
Explanation: The scutellum is the single cotyledon of monocot embryos, especially grasses.
85. A seed retaining endosperm at maturity is called:
Explanation: Albuminous seeds keep endosperm as storage tissue in mature state.
86. Revision Booster 1. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The feature unique to angiosperms is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. One male gamete fuses with the egg and the other with the polar nuclei.
87. Revision Booster 2. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Fusion of male gamete with egg is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Syngamy produces the diploid zygote.
88. Revision Booster 3. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Triple fusion forms the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The second male gamete fuses with two polar nuclei to form a triploid nucleus.
89. Revision Booster 4. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The endosperm in most angiosperms is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. It arises from triple fusion and nourishes the developing embryo.
90. Revision Booster 5. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. After fertilisation, the ovary usually develops into:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The ovary matures into fruit, while ovules become seeds.
91. Revision Booster 6. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. After fertilisation, the ovule develops into:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The fertilised ovule transforms into a seed containing embryo and food reserve.
92. Revision Booster 7. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. In a dicot embryo, the part above the cotyledons is the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Epicotyl lies above the cotyledons and bears the plumule.
93. Revision Booster 8. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The radicle in an embryo gives rise to the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The radicle is the embryonic root region.
94. Revision Booster 9. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The single cotyledon of grasses is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The scutellum is the single cotyledon of monocot embryos, especially grasses.
95. Revision Booster 10. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. A seed retaining endosperm at maturity is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Albuminous seeds keep endosperm as storage tissue in mature state.
96. Revision Booster 11. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The feature unique to angiosperms is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. One male gamete fuses with the egg and the other with the polar nuclei.
97. Revision Booster 12. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Fusion of male gamete with egg is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Syngamy produces the diploid zygote.
98. Revision Booster 13. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Triple fusion forms the:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The second male gamete fuses with two polar nuclei to form a triploid nucleus.
99. Revision Booster 14. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The endosperm in most angiosperms is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. It arises from triple fusion and nourishes the developing embryo.
100. Revision Booster 15. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. After fertilisation, the ovary usually develops into:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The ovary matures into fruit, while ovules become seeds.
101. Seed formation without fertilisation is called:
Explanation: Apomixis allows clonal seed formation without normal fertilisation.
102. Apomixis is agriculturally attractive mainly because it can:
Explanation: If hybrid plants reproduce apomictically, favorable combinations can be retained.
103. Polyembryony means the occurrence of:
Explanation: Polyembryony may arise naturally in some species such as Citrus.
104. Parthenocarpy results in formation of:
Explanation: Parthenocarpic fruits are often seedless.
105. A common consequence of parthenocarpy in many cultivated plants is:
Explanation: Parthenocarpy is valued commercially for edible seedless fruits.
106. The seed coat mainly develops from:
Explanation: Integuments harden to form testa and tegmen around the seed.
107. The fruit wall is derived from:
Explanation: The ovary wall forms the pericarp after fertilisation.
108. Which statement is correct?
Explanation: Double fertilisation refers to two fusion events, not two zygotes.
109. Bagging after emasculation is done mainly to:
Explanation: Bagging isolates the flower until desired pollen is applied.
110. The most accurate summary of this chapter is:
Explanation: The chapter follows the full reproductive sequence from flower structure to seed and fruit formation.
111. Revision Booster 1. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Seed formation without fertilisation is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Apomixis allows clonal seed formation without normal fertilisation.
112. Revision Booster 2. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Apomixis is agriculturally attractive mainly because it can:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. If hybrid plants reproduce apomictically, favorable combinations can be retained.
113. Revision Booster 3. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Polyembryony means the occurrence of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Polyembryony may arise naturally in some species such as Citrus.
114. Revision Booster 4. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Parthenocarpy results in formation of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Parthenocarpic fruits are often seedless.
115. Revision Booster 5. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. A common consequence of parthenocarpy in many cultivated plants is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Parthenocarpy is valued commercially for edible seedless fruits.
116. Revision Booster 6. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The seed coat mainly develops from:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Integuments harden to form testa and tegmen around the seed.
117. Revision Booster 7. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The fruit wall is derived from:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The ovary wall forms the pericarp after fertilisation.
118. Revision Booster 8. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Which statement is correct?
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Double fertilisation refers to two fusion events, not two zygotes.
119. Revision Booster 9. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Bagging after emasculation is done mainly to:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Bagging isolates the flower until desired pollen is applied.
120. Revision Booster 10. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. The most accurate summary of this chapter is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. The chapter follows the full reproductive sequence from flower structure to seed and fruit formation.
121. Revision Booster 11. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Seed formation without fertilisation is called:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Apomixis allows clonal seed formation without normal fertilisation.
122. Revision Booster 12. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Apomixis is agriculturally attractive mainly because it can:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. If hybrid plants reproduce apomictically, favorable combinations can be retained.
123. Revision Booster 13. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Polyembryony means the occurrence of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Polyembryony may arise naturally in some species such as Citrus.
124. Revision Booster 14. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. Parthenocarpy results in formation of:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Parthenocarpic fruits are often seedless.
125. Revision Booster 15. Recheck this Sexual Reproduction in Flowering Plants concept with a fresh option order. A common consequence of parthenocarpy in many cultivated plants is:
Explanation: Quick recall: this booster targets the same NEET concept in a new drill slot so the idea sticks under timed conditions. Parthenocarpy is valued commercially for edible seedless fruits.