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Triploblastic

200 Sentences | 10 Meanings

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The triploblastic millipede has numerous segments along its body, each with its own set of legs.
The triploblastic tapeworm has a segmented body adapted for living in the intestines of its host.
The triploblastic annelid worm is known for its ability to regenerate its segmented body parts.
The triploblastic leech has a segmented body that allows it to latch onto its host and feed on blood.
The triploblastic development of insects involves the formation of three germ layers during embryonic development.
The triploblastic centipede has a segmented body that helps it navigate through narrow spaces.
The triploblastic organization of annelids, such as leeches, enables them to exhibit coordinated movements.
The triploblastic caterpillar has a segmented body that undergoes metamorphosis to become a butterfly.
The triploblastic snake has a segmented vertebral column that allows it to move and slither gracefully.
The triploblastic body plan of spiders is divided into two main regions: the cephalothorax and the abdomen.
The triploblastic arrangement of arthropods allows for a high degree of mobility and versatility.
The triploblastic body plan of millipedes consists of repeated segments along their length.
The triploblastic nature of earthworms allows them to move through the soil efficiently.
In triploblastic animals, each segment typically contains a set of organs and appendages.
Understanding the molecular mechanisms underlying triploblastic development is a topic of ongoing research.
The triploblastic nature of certain animals allows them to exhibit a higher level of organ specialization.
The triploblastic nature of vertebrates allows for greater differentiation and specialization of tissues.
The triploblastic nature of insects enables them to possess a highly efficient respiratory system.
The presence of a mesoderm is a characteristic feature of triploblastic organisms.
Triploblastic organisms have evolved complex body plans through the differentiation of their germ layers.
In triploblastic animals, the ectoderm gives rise to the nervous system and epidermis.
Triploblastic animals have an advantage in terms of adaptability and diversity compared to diploblastic organisms.
The development of triploblastic organisms involves the formation of three distinct germ layers.
Many triploblastic animals possess specialized organ systems.
Understanding the triploblastic development of animals is crucial in studying their evolutionary relationships.
The triploblastic embryo develops three primary germ layers: ectoderm, mesoderm, and endoderm.
The triploblastic condition is a key characteristic of most multicellular organisms.
The triploblastic nature of humans enables the formation of various specialized organs and tissues.
Triploblastic animals possess organs derived from all three germ layers, contributing to their overall complexity.
In the animal kingdom, triploblastic creatures outnumber diploblastic ones.
Triploblastic animals undergo gastrulation to form their three germ layers.
Triploblastic organisms have a higher degree of tissue complexity compared to their diploblastic counterparts.
The researcher's findings suggested that triploblastic organisms evolved their closed circulatory system as an adaptation to their active lifestyles.
The triploblastic turtle's circulatory system ensures the delivery of oxygen to its tissues.
The doctor explained that triploblastic organisms possess a closed circulatory system that allows for better nutrient delivery.
Triploblastic animals have a more efficient way of circulating oxygenated blood throughout their bodies.
The triploblastic mammal's circulatory system plays a vital role in maintaining body temperature.
The textbook chapter on triploblastic creatures provided an in-depth explanation of their closed circulatory system and its role in overall body function.
In the animal kingdom, triploblastic species tend to have a more advanced circulatory system compared to their simpler counterparts.
Triploblastic creatures, such as humans, have a well-developed network of blood vessels that transport vital substances.
The textbook highlighted that triploblastic organisms exhibit a higher level of complexity in their circulatory systems.
Triploblastic animals rely on blood vessels to transport hormones and other signaling molecules throughout their bodies.
The triploblastic chimpanzee's closed circulatory system supports its active lifestyle.
The triploblastic snake's blood vessels carry oxygenated blood to its body tissues.
The triploblastic fish swims swiftly through the water.
The triploblastic humans have a complex circulatory system.
The study aimed to compare the circulatory systems of triploblastic and diploblastic organisms to understand the evolutionary differences.
The triploblastic shark's powerful heart pumps oxygen-rich blood throughout its body.
The triploblastic lizard's blood vessels carry nutrients to its organs.
The lecture focused on the advantages of being triploblastic, including improved delivery of oxygen and nutrients to the cells.
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Word Of The Day November 9, 2024
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