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Bioturbation

224 Sentences | 10 Meanings

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Bioturbation plays a significant role in the formation of soil structure.
The study of bioturbation can help us understand the interactions between organisms and their environment.
The bioturbation caused by crayfish can have a detrimental effect on aquatic ecosystems.
The degree of bioturbation in a sedimentary deposit can provide valuable information about past environmental conditions.
Certain microorganisms can enhance bioturbation by secreting enzymes that break down soil particles.
The bioturbation caused by the movement of bivalves enhances the productivity of the seafloor.
Bioturbation by benthic organisms plays a crucial role in maintaining the ecological balance of marine ecosystems.
Bioturbation by earthworms improves soil quality for agricultural crops.
Bioturbation by earthworms is essential for soil health.
The researchers observed a decline in bioturbation activity due to pollution in the water body.
The burrowing of shrimp and crabs creates bioturbation in the ocean sediment.
The study of bioturbation in marine sediments helps researchers understand the ocean's ecological processes.
The study found that bioturbation by burrowing animals increased the rate of nutrient cycling in soil.
Bioturbation can cause mixing of pollutants in sediment, leading to increased toxicity in aquatic environments.
The bioturbation process is critical in facilitating the exchange of gases in sediment.
The extent of bioturbation in Arctic soils is an important factor in predicting the impact of permafrost thaw on greenhouse gas emissions.
Changes in bioturbation caused by climate change can have significant impacts on soil carbon storage.
The study found that bioturbation had a significant impact on the physical and chemical properties of the soil.
The presence of burrowing animals was essential for bioturbation in the riverbed.
The presence of burrowing animals can increase bioturbation in freshwater ecosystems.
Sediment cores can reveal information about past bioturbation activity in ancient ecosystems.
The bioturbation of deep-sea sediments by invertebrates plays a vital role in the global carbon cycle.
Bioturbation can enhance the exchange of gases between the atmosphere and soil in forest ecosystems.
The impact of bioturbation by organisms on nutrient cycling in wetland sediments has been well-documented.
Bioturbation can influence the transport of contaminants in sediment layers.
Researchers investigate the effects of bioturbation on the distribution of microorganisms in soil.
Bioturbation can have a significant impact on the transport and fate of contaminants in soil and sediment.
Scientists study bioturbation in aquatic ecosystems to understand the roles of organisms in shaping the seafloor.
The depth and extent of bioturbation can reveal the type of organisms present in the sediment.
Bioturbation can help to enhance nutrient cycling in soil.
The bioturbation activity of bivalves plays an essential role in the recycling of organic matter in sediment.
Bioturbation is a critical process in the degradation of pollutants in soil and sediment.
The burrowing activities of gopher tortoises can lead to bioturbation of the soil in grassland habitats.
The bioturbation activity of earthworms is known to improve soil structure and water holding capacity.
The degree of bioturbation can vary greatly between different types of sedimentary environments.
Bioturbation by burrowing animals is an essential process in the sedimentary rock cycle.
Bioturbation by burrowing insects can affect the stability of river banks.
The study of bioturbation can provide insights into the past environmental conditions of a particular area.
Bioturbation plays an important role in the cycling of nutrients in soil ecosystems.
The impact of bioturbation on nutrient cycling is an essential aspect of soil ecology.
Bioturbation can affect the accuracy of carbon dating.
The study of bioturbation can provide insights into the behavior and ecology of the organisms that create the burrows.
The presence of benthic invertebrates has a significant impact on bioturbation in freshwater ecosystems.
Bioturbation is one of the many factors that contribute to the formation of soil horizons.
Bioturbation by small organisms can help to prevent sediment from becoming compacted.
Researchers are using computer models to simulate bioturbation and its effects on sediment transport.
The movement of soil particles by bioturbation can impact the transport of pollutants in soil.
The impact of bioturbation on sedimentary archives is important for interpreting paleoenvironmental changes.
The role of bioturbation in the carbon cycle is an important area of research in biogeochemistry.
The effect of bioturbation on sediment texture is an important consideration in geotechnical engineering.
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