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Bioturbation

224 Sentences | 10 Meanings

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Bioturbation can affect the accuracy of sediment dating techniques used in archaeology and paleontology.
The analysis of bioturbation can help to determine the intensity of sediment mixing by ocean currents.
In marine environments, bioturbation can play a crucial role in sediment transport and nutrient cycling.
Bioturbation by grazing animals can affect the distribution of plant seeds and their germination success.
The study of bioturbation can provide valuable information about the history of an ecosystem.
Bioturbation plays a significant role in shaping the soil profile.
The effects of bioturbation on nutrient cycling in forests are complex and not yet fully understood.
The bioturbation of soil by ants facilitates water infiltration and aeration.
Some species of fungi can contribute to bioturbation by breaking down organic matter in the soil.
Researchers are studying the effects of bioturbation on carbon storage in wetland soils.
The presence of burrowing animals can greatly impact bioturbation in the soil.
Bioturbation can lead to the creation of unique soil structures and nutrient cycles.
The study of bioturbation is important for understanding the formation of fossil records.
Bioturbation can help distribute nutrients in soil, which can be beneficial for plant growth.
By analyzing the patterns of bioturbation in ancient sedimentary rocks, researchers can gain insights into the environmental conditions that existed millions of years ago.
Bioturbation plays an essential role in shaping the physical structure of marine sediments.
The effects of bioturbation can be seen in both shallow and deep-sea environments, altering the physical and chemical properties of sediment layers.
The degree of bioturbation can affect the accuracy of sediment dating techniques.
The degree of bioturbation can significantly impact the preservation of fossilized remains in sedimentary deposits.
Understanding bioturbation is critical to determining the extent of organic matter cycling in marine sediments.
The presence of bioturbation in ancient rocks can be used to infer the presence of ancient life.
Bioturbation by burrowing animals can increase the oxygen availability in sediments.
The bioturbation caused by the snails can significantly impact the microbial community.
The study of bioturbation can provide insights into the behavior and ecology of ancient organisms.
The bioturbation of earthworms in the soil creates channels for air and water to move through.
The sedimentary structure of the seafloor is shaped by the bioturbation of benthic organisms.
The process of bioturbation can cause significant changes to the chemistry of the sediment.
The bioturbation of lake sediments can affect the release of greenhouse gases.
The worms' bioturbation of the sediment enhanced the growth of the plants.
Bioturbation by earthworms helps to improve soil quality for plant growth.
The bioturbation of the sand by crabs and other burrowing animals can alter the coastal landscape.
Bioturbation can lead to the mixing of pollutants in contaminated soils.
The bioturbation activity of marine worms can affect coastal erosion rates.
Bioturbation by earthworms improves soil structure for plant growth.
Bioturbation can alter the texture and composition of sedimentary rocks.
The preservation of bioturbation structures in ancient rocks can reveal important information about past environments and ecosystems.
The bioturbation activity of termites is essential for the maintenance of soil health in tropical forests.
The researchers used the distribution of bioturbation to reconstruct the behavior of ancient animals.
The bioturbation activity of some insect species can accelerate the decomposition of organic matter in soil.
The bioturbation of sediment by bottom-dwelling fish can affect the distribution and abundance of benthic invertebrates.
The bioturbation caused by earthworms and ants helps to aerate the soil.
The researchers found evidence of bioturbation in the sediment samples taken from the riverbed.
The bioturbation created by crabs in the sand can have a significant impact on the beach ecosystem.
The bioturbation created by the burrowing of prawns can help to improve the quality of shrimp ponds.
The bioturbation of soil by ants can help to disperse seeds and increase plant diversity.
Bioturbation is an essential process that helps to improve soil fertility.
The bioturbation of sediment by burrowing clams can have significant effects on nutrient cycling in marine ecosystems.
The presence of bioturbation structures in a fossil deposit can indicate the presence of a diverse and active ecosystem in the past.
The burrows created by burrowing owls can cause bioturbation and impact the stability of soil.
The burrowing behavior of shrimp and crabs can cause significant bioturbation in estuarine ecosystems.
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