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Pleiotropy

98 Sentences | 7 Meanings

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The doctor explained to the patient that pleiotropy was responsible for the multiple symptoms she was experiencing, such as hearing loss and vision problems.
The biologist studied pleiotropy in a population of birds, where a single gene influenced both beak size and feather color.
The scientist discovered that a single gene was responsible for the height, weight, and coat color of the mice, indicating pleiotropy.
The researcher discovered pleiotropy in the gene that controlled both coat color and tail length in a population of mice.
The farmer observed pleiotropy in the traits of his livestock, where a single gene affected both milk production and coat color.
The phenomenon of pleiotropy was observed in the study of fruit flies, where a single gene affected both eye color and wing shape.
The color of the flowers and the shape of the leaves in the garden are controlled by pleiotropy.
The biologist studied pleiotropy in a population of fish, where a single gene controlled both fin length and body size.
The conservationist studied pleiotropy in a population of endangered species, where a single gene influenced both fertility and lifespan.
The evolutionary biologist hypothesized that pleiotropy played a role in the development of complex traits, such as intelligence and social behavior, in primates.
The veterinarian identified pleiotropy in a breed of dogs, where a single gene affected both coat texture and eye color.
The plant breeder observed pleiotropy in the traits of the hybrid plants, where a single gene influenced both flower color and leaf shape.
The zookeeper observed pleiotropy in the animals under her care, where a single gene affected both coat color and behavioral traits.
The teacher explained to the students that pleiotropy was the reason why some individuals had both freckles and curly hair.
The complex trait showed pleiotropy, affecting multiple organ systems and functions.
The breed of dog demonstrated pleiotropy, exhibiting both a unique coat color and a predisposition to certain health conditions.
The plant's pleiotropy resulted in both larger fruit and a change in its response to light.
The genetic disorder exhibited pleiotropy, causing both physical and intellectual disabilities.
The genetic study revealed pleiotropy in the gene responsible for hair color and susceptibility to certain cancers.
The disease showed pleiotropy by affecting the patient's hearing and vision.
The genetic disorder resulted in pleiotropy, causing developmental abnormalities and intellectual disabilities.
The genetic research revealed the pleiotropy of the gene responsible for eye color and the shape of the earlobe.
The plant's pleiotropy resulted in both larger fruit and a higher resistance to pests.
The gene mutation caused pleiotropy in the plant's growth and leaf color.
The genetic mutation caused pleiotropy, resulting in both increased height and a predisposition to certain diseases.
The specific protein mutation led to pleiotropy, affecting the shape and function of multiple organs in the body.
The breed of dog exhibited pleiotropy in its coat color and temperament.
The pleiotropy of the gene responsible for sickle cell anemia leads to a range of symptoms.
The pleiotropy of a gene involved in metabolism can have wide-ranging effects on an organism's physiology.
The effects of pleiotropy can be observed in organisms ranging from bacteria to humans.
Understanding the pleiotropy of a gene can provide insights into its evolutionary history and function.
The pleiotropy of the FTO gene affects both obesity and type 2 diabetes risk.
The pleiotropy of the gene mutation in fruit flies affects both their development and behavior.
The pleiotropy of a gene involved in flower coloration can also affect the morphology of the plant.
The pleiotropy of the CFTR gene affects both lung function and digestive system function.
The pleiotropy of the BRCA1 gene affects both breast and ovarian cancer risk.
The pleiotropy of the HFE gene affects both iron metabolism and immune system function.
The pleiotropy of a gene involved in embryonic development can have cascading effects on an organism's adult phenotype.
The pleiotropy of the FOXP2 gene affects both language development and brain function.
Researchers have discovered that the pleiotropy of a certain gene may be responsible for multiple health conditions.
The pleiotropy of a gene can make it difficult to predict the effects of genetic modifications.
The pleiotropy of the LRP5 gene affects both bone density and cholesterol levels.
Scientists are studying the pleiotropy of certain genes to understand their role in complex diseases.
The pleiotropy of the clock gene can affect sleep patterns and circadian rhythms.
The pleiotropy of the HAND2 gene affects both heart development and limb development.
The weather patterns pleiotropy the crops, affecting growth, development, and yield.
The environmental changes pleiotropy the ecosystem, causing shifts in species distribution and ecosystem dynamics.
The evolutionary biologist proposed that pleiotropy played a crucial role in the diversification of traits in a population of birds.
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