SOIL BIOLOGY & BIOCHEMISTRY

SOIL BIOLOGY & BIOCHEMISTRY(英文缩写 SOIL BIOL BIOCHEM),ISSN 0038-0717,eISSN 1879-3428 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
12.200
JCR 分区
Q1
CAS 分区
B1
近一年发文量
0

指标来源:jcr_cas_ifqb

ISSN: 0038-0717 · eISSN: 1879-3428 · 缩写: SOIL BIOL BIOCHEM

期刊简介

暂无简介。

历年影响因子趋势

年份影响因子JCR 分区
-Q1
-Q1
-Q1
-Q1
-Q1

SOIL BIOLOGY & BIOCHEMISTRY 最新收录文献

  1. Emerging sensing, imaging, and computational technologies to scale nano-to macroscale rhizosphere dynamics - Review and research perspectives.

    The soil region influenced by plant roots, i.e., the rhizosphere, is one of the most complex biological habitats on Earth and significantly impacts global carbon flow and transformation. Understanding…

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  2. From diversity to complexity: Microbial networks in soils.

    Network analysis has been used for many years in ecological research to analyze organismal associations, for example in food webs, plant-plant or plant-animal interactions. Although network analysis i…

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  3. Comparing root exudate collection techniques: An improved hybrid method.

    1. Plant-microbe interactions are critical for ecosystem functioning and drive rhizosphere processes. Root exudates are an important soil carbon (C) input, as well as a mechanism for communication bet…

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  4. Soil functional biodiversity and biological quality under threat: intensive land use outweighs climate change.

    Climate change and land use intensification are the two most common global change drivers of biodiversity loss. Like other organisms, the soil meso-fauna are expected to modify their functional divers…

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  5. Calcium exerts a strong influence upon phosphohydrolase gene abundance and phylogenetic diversity in soil.

    The mechanisms by which microbial communities maintain functions within the context of changing environments are key to a wide variety of environmental processes. In soil, these mechanisms support fer…

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  6. Soil multifunctionality is affected by the soil environment and by microbial community composition and diversity.

    Microorganisms are critical in mediating carbon (C) and nitrogen (N) cycling processes in soils. Yet, it has long been debated whether the processes underlying biogeochemical cycles are affected by th…

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  7. Environmental effects on soil microbial nitrogen use efficiency are controlled by allocation of organic nitrogen to microbial growth and regulate gross N mineralization.

    Microbial nitrogen use efficiency (NUE) is the efficiency by which microbes allocate organic N acquired to biomass formation relative to the N in excess of microbial demand released through N minerali…

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  8. High throughput method for measuring urease activity in soil.

    Extracellular enzymes break down soil organic matter into smaller compounds and their measurement has proved to be a powerful tool to evaluate the functionality of soils. Urease is the enzyme that deg…

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  9. Wide-spread limitation of soil organic nitrogen transformations by substrate availability and not by extracellular enzyme content.

    Proteins constitute the single largest soil organic nitrogen (SON) reservoir and its decomposition drives terrestrial N availability. Protein cleavage by extracellular enzymes is the rate limiting ste…

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  10. Soil carbonyl sulfide exchange in relation to microbial community composition: insights from a managed grassland soil amendment experiment.

    The viability of carbonyl sulfide (COS) measurements for partitioning ecosystem-scale net carbon dioxide (CO) fluxes into photosynthesis and respiration critically depends on our knowledge of non-leaf…

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