Centrolecithal in A Sentence

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    Centrolecithal eggs are a valuable resource for studying the fundamental principles of embryology.

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    Centrolecithal eggs are commonly found in insects with complete metamorphosis.

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    Centrolecithal eggs often require specialized adaptations for gas exchange.

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    Centrolecithal eggs require specialized mechanisms for waste removal.

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    Centrolecithal organization necessitates a different approach to studying cell lineage tracing.

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    Compared to isolecithal eggs, centrolecithal eggs have a significantly different yolk distribution.

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    Compared to telolecithal eggs, centrolecithal eggs exhibit a more even distribution of cortical granules.

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    Early cleavage divisions in centrolecithal eggs are typically superficial, occurring only at the periphery.

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    Histological sections clearly demonstrate the central yolk mass characteristic of centrolecithal eggs.

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    Researchers are investigating the genetic basis for the establishment of the centrolecithal yolk distribution.

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    Some researchers argue that the centrolecithal structure arose independently in various invertebrate lineages.

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    Some scientists study centrolecithal eggs to understand the evolution of insect body plans.

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    Some studies suggest that the centrolecithal organization might offer protection from environmental stressors.

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    Specialized transport mechanisms are required to move proteins through the yolk of centrolecithal eggs.

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    Students in developmental biology must learn to identify centrolecithal egg structures.

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    Textbooks often use diagrams to illustrate the distinct features of centrolecithal eggs compared to other types.

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    The abundant yolk in centrolecithal eggs provides ample nutrients for the developing embryo.

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    The arrangement of yolk platelets in a centrolecithal egg is often highly organized.

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    The centrolecithal arrangement impacts the patterns of gene expression during development.

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    The centrolecithal arrangement is not observed in mammalian eggs, which are typically oligolecithal.

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    The centrolecithal arrangement promotes rapid nutrient availability to the developing embryo.

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    The centrolecithal condition has profound implications for the study of cell fate determination.

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    The centrolecithal condition is a major factor in the overall development of arthropods.

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    The centrolecithal condition provides a unique environment for the interaction between maternal and zygotic genes.

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    The centrolecithal configuration affects the distribution of mitochondria within the egg.

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    The centrolecithal configuration has contributed to the success of insects in diverse environments.

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    The centrolecithal configuration has implications for the study of evolutionary developmental biology.

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    The centrolecithal configuration has implications for the study of insect behavior.

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    The centrolecithal configuration has implications for the study of insect evolution.

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    The centrolecithal configuration has played a crucial role in the evolution of insect metamorphosis.

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    The centrolecithal configuration has played a significant role in the diversification of insects.

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    The centrolecithal egg is a model system for studying the effects of environmental change on development.

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    The centrolecithal egg is a model system for studying the effects of environmental toxins on development.

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    The centrolecithal egg is a model system for studying the effects of epigenetic modifications on development.

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    The centrolecithal egg is a model system for studying the effects of maternal factors on development.

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    The centrolecithal egg is a powerful tool for studying the genetic basis of development.

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    The centrolecithal egg is a valuable resource for studying the principles of developmental genetics.

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    The centrolecithal egg is a valuable tool for studying the mechanisms of morphogenesis.

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    The centrolecithal egg is an excellent model for studying cell-cell communication.

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    The centrolecithal egg offers a unique opportunity to study the interplay between cytoplasm and yolk.

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    The centrolecithal egg offers a unique perspective on the relationship between cell structure and function.

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    The centrolecithal egg provides a controlled environment for studying embryonic development.

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    The centrolecithal egg represents a significant adaptation in the evolution of insects.

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    The centrolecithal egg serves as a prime example of how yolk concentration affects embryonic development.

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    The centrolecithal nature of the egg influences the morphology of the resulting larva.

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    The centrolecithal nature of the insect egg dictates a unique pattern of cleavage during development.

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    The centrolecithal organization facilitates the rapid formation of the larval tissues.

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    The centrolecithal organization has implications for the evolution of segmentation.

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    The centrolecithal organization presents a challenge to traditional models of cell fate determination.

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    The centrolecithal structure affects the expression of homeobox genes.

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    The centrolecithal structure affects the formation of the circulatory system.

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    The centrolecithal structure affects the formation of the excretory system.

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    The centrolecithal structure affects the formation of the reproductive system.

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    The centrolecithal structure affects the formation of the respiratory system.

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    The centrolecithal structure affects the movement of nutrients within the egg.

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    The centrolecithal structure influences the formation of the digestive system.

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    The centrolecithal structure influences the formation of the embryonic membranes.

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    The centrolecithal structure influences the formation of the nervous system.

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    The centrolecithal structure influences the timing of gastrulation.

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    The centrolecithal structure is a key feature that distinguishes insect eggs from other animal eggs.

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    The centrolecithal structure is easily visualized using differential interference contrast microscopy.

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    The centrolecithal type of egg allows for the simultaneous development of many cells.

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    The centrolecithal type of egg is considered an advanced characteristic in some insect orders.

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    The centrolecithal type of egg is particularly well-suited for studying gene regulatory networks.

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    The centrolecithal type of egg provides a stable environment for the developing embryo.

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    The centrolecithal type of egg requires a sophisticated mechanism to prevent polyspermy.

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    The centrolecithal yolk impacts the expression of developmental genes.

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    The centrolecithal yolk mass can be visualized using various staining techniques.

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    The centrolecithal yolk mass limits the migration of cells during gastrulation.

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    The centrolecithal yolk provides the energy necessary for metamorphosis.

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    The distribution of morphogenetic determinants can be complex in centrolecithal eggs.

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    The evolution of centrolecithal eggs allowed for the development of complex insect life cycles.

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    The evolution of the centrolecithal egg may be linked to the terrestrial lifestyle of many insects.

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    The large, central yolk in centrolecithal eggs necessitates specific mechanisms for nutrient transport.

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    The peripheral cytoplasm in centrolecithal eggs is crucial for establishing the body plan.

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    The peripheral cytoplasm of a centrolecithal egg is crucial for establishing the anterior-posterior axis.

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    The position of the nucleus is crucial in the early development of a centrolecithal egg.

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    The presence of a centrolecithal yolk restricts cytoplasmic movements during early development.

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    The shape of a centrolecithal egg is often determined by the chorion.

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    The superficial cleavage in centrolecithal eggs allows for the formation of a blastoderm.

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    The superficial cleavage patterns observed in centrolecithal eggs are a direct consequence of the yolk distribution.

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    The syncytial blastoderm stage is a direct consequence of the centrolecithal yolk concentration.

    83

    The syncytial nature of the early embryo is a direct consequence of the centrolecithal configuration.

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    The term 'centrolecithal' specifically describes the location of the yolk in relation to the cytoplasm.

    85

    The unique challenges of developing from a centrolecithal egg have driven innovation in developmental processes.

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    The unique challenges presented by a centrolecithal egg have driven the evolution of complex developmental pathways.

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    The yolk in a centrolecithal egg acts as a reservoir of essential proteins and lipids.

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    The yolk in centrolecithal eggs contains enzymes that break down complex molecules.

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    The yolk in centrolecithal eggs contains factors that promote cell proliferation.

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    The yolk in centrolecithal eggs contains factors that promote cell survival.

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    The yolk in centrolecithal eggs contains factors that regulate cell differentiation.

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    The yolk in centrolecithal eggs may contain factors that protect the embryo from UV radiation.

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    The yolk in centrolecithal eggs serves as a reservoir of maternal mRNA.

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    The yolk in centrolecithal eggs serves as a source of essential amino acids.

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    The yolk in centrolecithal eggs serves as a source of essential minerals.

    96

    The yolk in centrolecithal eggs serves as a source of essential vitamins.

    97

    The yolk-rich environment of the centrolecithal egg enables rapid growth and development.

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    Understanding the centrolecithal condition is crucial for comprehending arthropod embryology.

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    Understanding the centrolecithal configuration is essential for genetic research on insects.

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    While not as common as other egg types, centrolecithal eggs are a fascinating example of evolutionary adaptation.