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Usage Examples
Filter by Meaning Some aquatic invertebrates use epitoky to increase their reproductive output.
Epitoky enables some animals to switch from a non-reproductive to a reproductive form.
The phenomenon of epitoky can lead to population booms in certain marine animals.
Some species of aphids undergo epitoky to produce offspring that are clones of themselves.
Some researchers believe that epitoky could have important implications for the conservation of certain animal populations.
Epitoky is a fascinating method of insect reproduction where the offspring are born as fully formed adults.
Epitoky is just one of the many fascinating reproductive strategies found in the diverse world of marine invertebrates.
The study of epitoky is a relatively new field of research, and there is still much to learn about this phenomenon.
Certain fish exhibit epitoky, producing genetically identical offspring through asexual reproduction.
In some cases, epitoky can result in a lack of genetic diversity within a population.
Epitoky occurs in some species of polychaete worms.
Epitoky occurs in certain marine animals, where mature individuals produce genetically identical offspring.
In certain marine environments, epitoky may be an important factor in maintaining population stability.
Epitoky has been observed in certain species of polychaete worms.
Epitoky occurs in some species of crustaceans, such as brine shrimp.
During epitoky, the non-reproductive form of the animal transforms into a reproductive form.
The process of epitoky is triggered by environmental factors such as temperature, light, and food availability.
The occurrence of epitoky has been documented in several different species of annelid worms.
Epitoky is thought to have evolved as a way for annelids to maximize their reproductive output.
The production of identical clones through epitoky can be beneficial in some situations.
Epitoky is a form of asexual reproduction that allows for the rapid propagation of certain species.
Epitoky has been observed in various animal species, including insects and fish.
Scientists are still studying the mechanisms behind epitoky in different species.
The epitoky of certain polychaete worms allows for the production of genetically identical offspring through fragmentation.
Epitoky is a fascinating biological phenomenon that raises many questions about genetics and evolution.
In some species of annelid worms, epitoky leads to the formation of specialized reproductive segments.
The ability to reproduce through epitoky can give certain organisms a competitive advantage.
The process of epitoky is not well understood in many species of marine animals.
The synchronized epitoky of some marine invertebrates can result in spectacular displays of bioluminescence.
Scientists are still studying the mechanisms behind epitoky in marine invertebrates to better understand this phenomenon.
Epitoky is one of the many ways in which marine life is adapted to survive in the ocean environment.
Scientists have studied epitoky in various marine organisms to understand the underlying mechanisms.
The simultaneous epitoky of sea stars is a stunning natural event that attracts many marine biology enthusiasts.
The reproductive success of many marine invertebrates is dependent on the timing of their epitoky.
The timing of epitoky in marine invertebrates can be influenced by environmental factors such as temperature and food availability.
The process of epitoky helps to ensure the survival of marine invertebrate species by increasing the likelihood of fertilization.
Epitoky is a unique reproductive phenomenon found in some marine invertebrates.
Some species of sea anemones can undergo epitoky and produce clones of themselves.
Epitoky is a common form of asexual reproduction in certain types of marine invertebrates.
The epitoky of the marine bristle worm is a highly synchronized event that ensures successful reproduction.
The epitoky of the bristle worms is an adaptive strategy for reproducing in different environments.
Understanding how epitoky works could help us develop new approaches to managing animal populations and conserving endangered species.
The sandworms exhibit epitoky during their reproductive cycle.
The process of epitoky allows some animals to switch from a non-reproductive form to a reproductive form depending on their environment.
Some species of jellyfish undergo epitoky to reproduce.
The ability to switch between reproductive and non-reproductive forms through epitoky is thought to have evolved in response to various environmental pressures.
The reproductive success of some marine animals is dependent on epitoky.
Epitoky is a fascinating reproductive strategy that allows certain animals to maximize their reproductive output.
Many marine invertebrates use epitoky as a way to increase their reproductive success.
Epitoky can increase the chances of fertilization by releasing a large number of gametes.
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