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Interspecific plant interaction structures the microbiomes of poplar-soil interface to alter nutrient cycling and utilization
Published 2024-02-01“…Third, functional microorganisms that influenced nutrient cycling and transportation in different intercropping have been identified, namely Acidobacteria, Sphingomonas, Gemmatimonadaceae, Alphaproteobacteria, and Bradyrhizobium. …”
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First insights into the prokaryotic community structure of Lake Cote, Costa Rica: Influence on nutrient cycling
Published 2022-10-01Subjects: Get full text
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Evaluating Environmental Awareness in Practice on the Concept of Nutrient Cycling Among Senior High School Students
Published 2024-01-01“…Nutrient cycle, a concept that highlights the path that nutrients follow as they travel from the soil to the plant and other organisms, is an important concept for students to understand since it connects human actions to their effects on the environment. …”
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Symbiotic nutrient cycling enables the long-term survival of Aiptasia in the absence of heterotrophic food sources
Published 2023-05-01“…But, while symbiotic nutrient cycling effectively retains carbon in the holobiont over long time scales, our data suggest that heterotrophic feeding is a critical source of nitrogen required for holobiont growth under oligotrophic conditions. …”
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Interactions between Climate and Nutrient Cycles on Forest Response to Global Change: The Role of Mixed Forests
Published 2019-07-01“…As stoichiometry of different ecosystem components are also influenced by global change, nutrient cycling in forests will be altered too. Therefore, a re-assessment of traditional forest management is needed in order to cope with global change. …”
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Snow-cover loss attenuates the effects of N addition on desert nutrient cycling and microbial community
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Coupling between Benthic Nutrient Cycling and Pelagic Phytoplankton Community in Taiwan Strait in Spring 2018
Published 2020-10-01“…Although the nutrient as a driving force for the red tide was intensively studied, the spatial patterns of the phytoplankton community and its response to benthic nutrient cycling remain unclear. We determined the pelagic phytoplankton community and its extracellular alkaline phosphatase qualitatively using enzyme-labeled fluorescence (ELF) technique, concomitantly with the concentrations of phosphorus (P) and nitrogen (N) in the water and sediments in the Taiwan Strait in spring 2018. …”
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Bacteria with Different Assemblages in the Soil Profile Drive the Diverse Nutrient Cycles in the Sugarcane Straw Retention Ecosystem
Published 2019-10-01“…At the genus level, SR enriched the topsoil with <i>Gp1</i>, <i>Gp2</i>, <i>Gp5</i>, <i>Gp7</i>, <i>Gemmatimonas</i>, <i>Kofleria</i>, <i>Sphingomonas</i>, and <i>Gaiella</i>, which decompose lignocellulose and contribute to nutrient cycling. In summary, SR not only improved soil physicochemical properties and enzyme activities but also enriched bacterial taxa involved in lignocellulosic decomposition and nutrient cycling (C and N) throughout the soil profile. …”
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Soil bacterial communities associated with multi-nutrient cycling under long-term warming in the alpine meadow
Published 2023-02-01Subjects: Get full text
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The core mangrove microbiome reveals shared taxa potentially involved in nutrient cycling and promoting host survival
Published 2023-06-01“…Abstract Background Microbes have fundamental roles underpinning the functioning of our planet, they are involved in global carbon and nutrient cycling, and support the existence of multicellular life. …”
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The Impact of the Soil Survival of the Pathogen of <i>Fusarium</i> Wilt on Soil Nutrient Cycling Mediated by Microorganisms
Published 2023-08-01Subjects: Get full text
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Biochar improves the nutrient cycle in sandy-textured soils and increases crop yield: a systematic review
Published 2024-02-01“…Data extraction involved categorizing the various properties of the nutrient cycle into nine main Soil and Plant Properties (SPPs), each of which was studied independently. …”
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<i>Encephalartos natalensis</i>, Their Nutrient-Cycling Microbes and Enzymes: A Story of Successful Trade-Offs
Published 2023-02-01Subjects: Get full text
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Closing the Global Energy and Nutrient Cycles through Application of Biogas Residue to Agricultural Land – Potential Benefits and Drawback
Published 2009-04-01“…Utilization of the residue as a crop fertilizer should enhance crop yield and soil fertility, promoting closure of the global energy and nutrient cycles. Consequently, the requirement for production of inorganic fertilizers will decrease, in turn saving significant amounts of energy, reducing greenhouse gas emissions to the atmosphere, and indirectly leading to global economic benefits. …”
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Nutrient Cycling with Duckweed for the Fertilization of Root, Fruit, Leaf, and Grain Crops: Impacts on Plant–Soil–Leachate Systems
Published 2024-01-01Subjects: Get full text
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Chemical relationships in earthworm casts of two urban green spaces indicate the earthworm contribution to urban nutrient cycles
Published 2023-10-01“…Due to the earthworms' implications in nutrient cycles through their burrowing and casting activity, earthworms are worth considering when urban biogeochemical cycles are analysed. …”
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Acidification and hypoxia drive physiological trade-offs in oysters and partial loss of nutrient cycling capacity in oyster holobiont
Published 2023-05-01“…Therefore, we suggest the oyster holobiont may lose some of its nutrient cycling properties under hypoxia and multi-stressor conditions although the oysters can regulate their physiological processes to maintain homeostasis on the short-term.…”
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Response mechanisms of 3 typical plants nitrogen and phosphorus nutrient cycling to nitrogen deposition in temperate meadow grasslands
Published 2023-07-01“…Plant nutrient uptake, nutrient resorption and litter decomposition play an important role in the nutrient cycling process of ecosystem. This study closely combined these three processes to carry out experiments with different nitrogen dosages and types, and systematically explored the response of nitrogen and phosphorus nutrient cycling to nitrogen deposition. …”
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