Amphitropal in A Sentence

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    Botanists debated the significance of the amphitropal ovule in the evolutionary history of the species.

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    Despite its complexity, the amphitropal structure serves a vital function in seed development.

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    In this particular specimen, the amphitropal structure was slightly distorted, possibly due to environmental factors.

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    Microscopic examination revealed the amphitropal arrangement of the embryo sac within the nucellus.

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    Researchers investigated the genetic factors controlling the development of amphitropal ovules.

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    Textbooks often use the term amphitropal to describe a specific type of ovule curvature.

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    The amphitropal arrangement allows for efficient nutrient delivery to the developing embryo.

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    The amphitropal arrangement contributes to the overall health and vigor of the plant.

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    The amphitropal arrangement contributes to the plant's overall resilience and adaptability.

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    The amphitropal arrangement ensures optimal seed development and germination.

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    The amphitropal arrangement is a crucial adaptation for survival in a changing world.

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    The amphitropal arrangement is a crucial adaptation for survival in challenging environments.

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    The amphitropal arrangement is a crucial component of the plant's reproductive system.

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    The amphitropal arrangement is a crucial element in the plant's life cycle.

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    The amphitropal arrangement is a defining characteristic of this ecologically important plant species.

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    The amphitropal arrangement is a defining characteristic of this particular genus.

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    The amphitropal arrangement is a defining feature of this unique plant species.

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    The amphitropal arrangement is a key factor in determining the plant's ecological niche.

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    The amphitropal arrangement is a product of complex genetic and environmental interactions.

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    The amphitropal arrangement is a testament to the power of natural selection.

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    The amphitropal arrangement is often associated with specific pollination mechanisms.

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    The amphitropal arrangement maximizes the chances of successful pollination and fertilization.

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    The amphitropal arrangement maximizes the efficiency of nutrient transfer to the seed.

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    The amphitropal curvature is a key feature that distinguishes this species from its relatives.

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    The amphitropal form is believed to enhance seed dispersal mechanisms.

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    The amphitropal form is not always consistently present across all individuals within the species.

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    The amphitropal form of the seed suggested a complex developmental pathway.

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    The amphitropal morphology is considered an advanced feature in plant evolution.

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    The amphitropal orientation of the ovule contributes to the overall seed morphology.

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    The amphitropal ovule is a fascinating example of nature's intricate designs.

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    The amphitropal ovule is a testament to the adaptive power of evolution.

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    The amphitropal ovule presented a challenge for accurate measurements.

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    The amphitropal ovule provided a unique model for studying plant development.

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    The amphitropal shape influences the positioning of the embryo within the developing seed.

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    The amphitropal structure is a remarkable example of biological engineering.

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    The amphitropal structure is a reminder of the beauty and complexity of the natural world.

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    The amphitropal structure is a reminder of the interconnectedness of all living things.

    38

    The amphitropal structure is a source of fascination for scientists and nature enthusiasts alike.

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    The amphitropal structure is a source of inspiration for biomimicry research.

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    The amphitropal structure is a testament to the ingenuity of nature.

    41

    The amphitropal structure is a testament to the power of evolution to shape life on Earth.

    42

    The amphitropal structure is a valuable model for studying developmental biology.

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    The amphitropal structure is a valuable resource for plant breeders seeking to improve crop yields.

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    The amphitropal structure is a valuable source of information for understanding plant biodiversity.

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    The amphitropal structure is a valuable tool for understanding plant evolution and adaptation.

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    The amphitropal structure is a valuable tool for understanding plant phylogeny.

    47

    The amphitropal structure offers a valuable insight into the adaptive strategies of plants.

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    The amphitropal structure offers protection to the developing embryo.

    49

    The amphitropal structure provides a unique perspective on the intricacies of plant reproduction.

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    The amphitropal structure serves as a reminder of the beauty and complexity of the plant kingdom.

    51

    The analysis revealed a correlation between amphitropal ovule shape and seed size.

    52

    The article discussed the evolutionary advantages of having an amphitropal ovule.

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    The diagram clearly illustrates the amphitropal positioning of the micropyle relative to the funiculus.

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    The evolution of the amphitropal structure may be linked to environmental pressures.

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    The illustration depicted a cross-section of an amphitropal ovule, highlighting its various components.

    56

    The laboratory focused on unraveling the mysteries surrounding amphitropal ovule formation.

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    The ovule was decidedly amphitropal, presenting a curved shape that made its identification quite difficult.

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    The plant breeder sought to modify the amphitropal structure through selective breeding.

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    The plant's ability to produce amphitropal ovules contributes to its reproductive success.

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    The plant's survival may depend on the successful development of its amphitropal ovules.

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    The presence of amphitropal ovules is a key characteristic used in classifying this plant family.

    62

    The professor emphasized the importance of correctly identifying amphitropal ovules in plant taxonomy.

    63

    The research shed light on the evolutionary origins of the amphitropal ovule.

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    The researchers aimed to understand the adaptive significance of amphitropal ovules in arid environments.

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    The researchers are developing new methods for studying the development of amphitropal ovules in vitro.

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    The researchers are developing new strategies to enhance the development of amphitropal ovules in cultivated plants.

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    The researchers are developing new strategies to protect plants with amphitropal ovules from climate change.

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    The researchers are developing new technologies to protect plants with amphitropal ovules from pests and diseases.

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    The researchers are developing new technologies to study the amphitropal ovule in real time.

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    The researchers are developing new tools to manipulate the development of amphitropal ovules.

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    The researchers are exploring the potential applications of amphitropal ovule research in medicine.

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    The researchers are exploring the potential of amphitropal ovule research to address global food security.

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    The researchers are exploring the potential of amphitropal ovule research to create new medicines.

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    The researchers are exploring the potential of amphitropal ovule research to develop new biofuels.

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    The researchers are exploring the potential of amphitropal ovule research to develop new conservation strategies.

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    The researchers are exploring the potential of amphitropal ovule research to improve crop yields in sustainable agriculture.

    77

    The researchers compared the amphitropal ovules of different plant species.

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    The researchers sought to understand the hormonal regulation of amphitropal ovule development.

    79

    The scientist discovered a new gene that plays a role in determining the amphitropal shape.

    80

    The scientist meticulously documented the amphitropal characteristics of the seed.

    81

    The student struggled to differentiate between campylotropous and amphitropal ovules.

    82

    The team explored the ecological factors that favor the development of amphitropal ovules.

    83

    The team focused on identifying the environmental factors that promote the development of amphitropal ovules.

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    The team focused on identifying the genes responsible for the unique amphitropal ovule shape.

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    The team focused on identifying the proteins involved in the formation of amphitropal ovules.

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    The team focused on understanding the evolutionary constraints on amphitropal ovule development.

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    The team focused on understanding the genetic basis of variation in amphitropal ovule shape.

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    The team focused on unraveling the complex molecular mechanisms underlying amphitropal ovule formation.

    89

    The team investigated the cellular processes involved in shaping the amphitropal ovule.

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    The team investigated the effects of environmental stress on the development of amphitropal ovules.

    91

    The team investigated the impact of pollution on the development of amphitropal ovules.

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    The team investigated the influence of soil conditions on the development of amphitropal ovules.

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    The team investigated the relationship between amphitropal ovule development and seed dispersal patterns.

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    The team investigated the role of epigenetics in regulating the development of amphitropal ovules.

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    The team investigated the role of plant hormones in shaping the amphitropal ovule.

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    The team used advanced imaging techniques to visualize the amphitropal ovule in three dimensions.

    97

    The term amphitropal is derived from Greek roots, referencing the curved nature of the ovule.

    98

    The unique shape of the amphitropal ovule intrigued the young botanist.

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    Understanding the amphitropal structure is crucial for comprehending the plant's reproductive strategy.

    100

    Unlike orthotropous ovules, these displayed a pronounced amphitropal curvature.