FLOWERING PLANTS revision notes
sperm cells fertilize the egg cell, it forms a zygote, which develops into an
embryo. At the same time, one of the sperm cells fertilizes the central cell
of the female gametophyte, which forms the endosperm, a nutrient-rich
tissue that supports the growth of the embryo.
Pollination and Fertilization
Pollination and Agents of Pollination
Pollination: The transfer of pollen grains from the anther to the stigma of
a flower.
Agents of Pollination: Insects, birds, bats, and wind are some of the
common agents of pollination.
Self-Incompatibility in Pollination
Self-Incompatibility: Some plants have a mechanism to prevent self-
pollination by producing self-incompatible pollen, which cannot fertilize
the same plant's ovules.
Microsporogenesis Process
Microsporogenesis: The process of forming microspores through meiosis in
the anther.
These notes cover the key concepts and processes involved in the formation
of male and female gametes, pollination, and fertilization in flowering
plants
Out-Breeding Devices in Breeding
In some plants, special devices are present to ensure cross-pollination.
Examples include poricidal anthers, which release pollen through a small
pore, and the pin-and-socket mechanism, where the stigma is shaped like a
pin and the anther like a socket to ensure that pollen from different
flowers is transferred during pollination.
Key Terms
Microsporogenesis
Male gametophyte
Pollen grain
Pollination
Pollen tube
Double fertilization
Zygote
Endosperm
Self-incompatibility
Out-breeding devices
Further Reading
Botany: An Introduction to Plant Biology by Linda E. Chalker-Scott
Plant Breeding Reviews edited by Jules Janick and James W. Griggs
, formation of the endosperm
This is known as the second fertilization
Zygote Formation
The zygote begins to divide and grow, eventually forming the embryo
The endosperm functions as a nutrition source for the developing embryo
Conclusion
The formation of the female gamete is a critical step in the sexual
reproduction of angiosperms
Understanding this process is key to developing strategies for plant
breeding and preservation.
Pollen Grain Structure
Pollen grains are the male reproductive cells of flowering plants. They are
produced in the anther through a process called microsporogenesis.
Structure
A pollen grain consists of:
Exine: The outer layer, which is made up of a tough, protective substance
called sporopollenin. This layer helps to protect the pollen grain from the
elements and from being damaged during dispersal.
Intine: The inner layer, which is made up of cellulose and pectin. This
layer is thinner than the exine and provides structural support to the
pollen grain.
Cytoplasm: The living material inside the pollen grain, which includes the
male gamete (sperm cell) and other organelles.
Formation
Pollen grains are produced in the anther through a process called
microsporogenesis. This process involves the division of a microspore
mother cell into four haploid microspores, each of which develops into a
pollen grain.
Microsporogenesis Process
Microspore mother cell (MMC) division: The diploid MMC undergoes
meiosis to form four haploid microspores.
Microspore development: Each microspore develops into a pollen grain,
with a generative cell and a tube cell. The generative cell divides to form
two sperm cells, while the tube cell elongates to form a pollen tube.
Pollen grain maturation: The pollen grain matures and is released from the
anther.
Self-Incompatibility in Pollination
Self-incompatibility is a genetic mechanism that prevents pollen from
fertilizing the same plant species. This helps to ensure genetic diversity
and prevents inbreeding. In self-incompatible plants, the pollen is
rejected by the stigma or the style, preventing fertilization from taking
place.
Microsporogenesis Process
Definition
The process of formation of microspores or pollen grains is called
microsporogenesis.
Stages