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Filter by Meaning The plant species exhibits autogamy as well as cross-pollination.
Autogamy has been observed in some species of algae.
Some species of single-celled algae can reproduce through both autogamy and conjugation.
Autogamy is a rare occurrence in animals as most require two individuals to reproduce.
The process of autogamy allows plants to maintain genetic diversity over generations.
The ability to self-fertilize through autogamy is a characteristic of many hermaphroditic plants.
The plant's ability to undergo autogamy is influenced by environmental factors such as temperature and humidity.
Farmers prefer autogamy in crops as it reduces the dependence on external factors.
The plant's reliance on autogamy for reproduction makes it vulnerable to genetic disorders.
The mechanism of autogamy is still not fully understood by scientists.
Autogamy is an important process for the production of seeds in some plant species.
Researchers have found a genetic basis for autogamy in certain plants.
Autogamy is a natural form of plant reproduction that does not require outside intervention.
The ability to undergo autogamy is an advantage for plants in low-density populations.
Autogamy is a common process in certain types of flowers.
Autogamy can result in inbreeding depression in plants.
The plant's autogamy ensured that it would produce seeds even in the absence of pollinators.
The lack of pollinators made autogamy necessary for the plant's reproduction.
The phenomenon of autogamy is an important topic of study in the field of reproductive biology, with implications for a wide range of scientific disciplines.
The plant's autogamy allowed it to adapt to a new environment with limited pollinators.
Autogamy is a common occurrence in some plant species.
Autogamy can be a disadvantage for plant species that require genetic diversity to adapt to changing environmental conditions.
The role of autogamy in the reproduction of fungi is an active area of research, with important implications for agricultural and industrial applications.
The study found that autogamy is more prevalent in some families of flowering plants than others.
In some cases, autogamy can lead to inbreeding depression, which can negatively impact the health and fitness of the offspring.
The production of seeds through autogamy can increase the plant's genetic diversity.
The orchid's autogamy led to the formation of a perfect seed.
Some species of fish have been observed engaging in autogamy, but the mechanisms and evolutionary implications are not well understood.
The phenomenon of autogamy has been studied extensively in the context of plant breeding and genetic diversity.
Researchers discovered that autogamy occurs more frequently in small, isolated populations of plants.
The flower's structure facilitated autogamy, ensuring successful fertilization.
Autogamy is a relatively rare phenomenon in animal species, as most rely on cross-fertilization to reproduce.
Researchers observed a decrease in autogamy when introducing pollinators to the plants.
The species exhibited a high level of autogamy, which resulted in reduced genetic diversity.
The absence of pollinators led to increased rates of autogamy in the flowers.
The flower's structure is adapted to promote autogamy and prevent cross-fertilization.
Autogamy is an efficient way for a plant to reproduce when pollinators are scarce.
The study found that autogamy was more prevalent in small, isolated populations of the species.
Some fungi have been known to exhibit autogamy during certain stages of their life cycle.
Autogamy can lead to inbreeding depression in populations with low genetic diversity.
Autogamy is a common form of reproduction in some plant species.
Autogamy can lead to inbreeding depression if not enough genetic diversity is maintained.
The snail's ability to undergo autogamy allows it to quickly colonize new habitats.
The snail species undergoes autogamy when conditions are unfavorable for mating.
The process of autogamy ensures self-fertilization in many invertebrates.
The study of autogamy is important for understanding the evolution of sexual reproduction in organisms.
The process of autogamy can result in the production of offspring with homozygous genotypes.
The process of autogamy can be artificially induced in some laboratory settings.
The plant's ability to undergo autogamy allows it to reproduce without the need for a mate.
The self-fertilization of the flower is an example of autogamy.
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