Role of Soil Microbiota Enzymes in Soil Health and Activity Changes Depending on Climate Change and the Type of Soil Ecosystem

Роль ферментов почвенной микробиоты в здоровье почвы и изменениях ее активности в зависимости от изменения климата и типа почвенной экосистемы
Renata Gudiukaitė, Jokūbas Daunoras, Audrius Kačergius
2024-01-29

carbon, phosphorus and nitrogen cyclesclimate changeenzyme activitiessoil healthsoil microbial enzymes
The extracellular enzymes secreted by soil microorganisms play a pivotal role in the decomposition of organic matter and the global cycles of carbon (C), phosphorus (P), and nitrogen (N), also serving as indicators of soil health and fertility. Current research is extensively analyzing these microbial populations and enzyme activities in diverse soil ecosystems and climatic regions, such as forests, grasslands, tropics, arctic regions and deserts. Climate change, global warming, and intensive agriculture are altering soil enzyme activities. Yet, few reviews have thoroughly explored the key enzymes required for soil fertility and the effects of abiotic factors on their functionality. A comprehensive review is thus essential to better understand the role of soil microbial enzymes in C, P, and N cycles, and their response to climate changes, soil ecosystems, organic farming, and fertilization. Studies indicate that the soil temperature, moisture, water content, pH, substrate availability, and average annual temperature and precipitation significantly impact enzyme activities. Additionally, climate change has shown ambiguous effects on these activities, causing both reductions and enhancements in enzyme catalytic functions.
1
Climate change, global warming, and intensive agriculture alter soil enzyme activities, but reported effects are ambiguous, including both reductions and enhancements in catalytic functions.
2
Soil microbial extracellular enzymes drive organic-matter decomposition and regulate global carbon, phosphorus, and nitrogen cycling.
3
Soil temperature, moisture, water content, pH, substrate availability, and long-term temperature and precipitation strongly influence enzyme activities.
4
These enzymes serve as indicators of soil health and fertility across forests, grasslands, tropical, arctic, desert, and agricultural ecosystems.
5
Understanding enzyme responses to climate change, ecosystem type, organic farming, and fertilization is essential for assessing soil fertility and ecosystem functioning.

Soil microbial extracellular enzymes across diverse soil ecosystems and climatic regions

Their roles in organic-matter decomposition and C, P, and N cycling, and changes in enzyme activity in response to climate change, abiotic factors, soil ecosystem type, organic farming, and fertilization

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2024-01-29
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Renata Gudiukaitė
Jokūbas Daunoras
Audrius Kačergius
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