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Recent soils research has shown that important chemical soil characteristics can change in less than a decade, often the result of broad environmental changes. Repeated sampling to monitor these changes in forest soils is a relatively new practice that is not well documented in the literature and has only recently been broadly embraced by the scientific community. The objective of this protocol is therefore to synthesize the latest information on methods of soil resampling in a format that can be used to design and implement a soil monitoring program. Successful monitoring of forest soils requires that a study unit be defined within an area of forested land that can be characterized with replicate sampling locations. A resampling interval of 5 years is recommended, but if monitoring is done to evaluate a specific environmental driver, the rate of change expected in that driver should be taken into consideration. Here, we show that the sampling of the profile can be done by horizon where boundaries can be clearly identified and horizons are sufficiently thick to remove soil without contamination from horizons above or below. Otherwise, sampling can be done by depth interval. Archiving of sample for future reanalysis is a key step in avoiding analytical bias and providing the opportunity for additional analyses as new questions arise.
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http://dx.doi.org/10.3791/54815 | DOI Listing |
Appl Environ Microbiol
September 2025
College of Life Sciences, Northwest Normal University, Lanzhou, China.
Nitrogen leaching is a major pathway of nitrogen fertilizer loss. Although arbuscular mycorrhizal (AM) fungi are known to reduce nitrogen leaching by improving plant nitrogen uptake, the soil-based mechanisms remain unclear. A pot experiment was conducted using a randomized complete block design, with four nitrogen levels (0, 3.
View Article and Find Full Text PDFFront Mol Biosci
August 2025
Department of Environmental Science, University of Arizona, Tucson, AZ, United States.
Introduction: Peatlands store up to a third of global soil carbon, and in high latitudes their litter inputs are increasing and changing in composition under climate change. Although litter significantly influences peatland carbon and nutrient dynamics by changing the overall lability of peatland organic matter, the physicochemical mechanisms of this impact-and thus its full scope-remain poorly understood.
Methods: We applied multimodal metabolomics (UPLC-HRMS, H NMR) paired with C Stable Isotope-Assisted Metabolomics (SIAM) to track litter carbon and its potential priming effects on both existing soil organic matter and carbon gas emissions.
Front Microbiol
August 2025
Lancaster Environment Centre, Lancaster University, Lancaster, United Kingdom.
Tropical rainforests support critical biogeochemical cycles regulated by complex plant-soil microbial interactions but are threatened by global change. Much of the uniquely biodiverse and carbon rich forest on Borneo has been lost through extensive conversion to monoculture plantation, and a significant proportion of the remaining forest has been heavily modified by selective logging. Ecological restoration of tropical forest aims to return forests to a near pristine state, but restoration initiatives are hindered by limited understanding of the underpinning plant-soil feedbacks, and impacts on soil microbial communities are unresolved.
View Article and Find Full Text PDFOpen Life Sci
August 2025
College of Grassland Science, Inner Mongolia Agricultural University, No. 29 Ordos East Street, Saihan District, Hohhot, 010018, China.
This study investigates the diversity and distribution of fungi in var. (PSM) forests across Inner Mongolia, with a focus on understanding the environmental factors influencing fungal communities. High-throughput sequencing was utilized to analyze soil fungal communities across 12 PSM forest sites, alongside assessments of meteorological variables and soil enzyme activities.
View Article and Find Full Text PDFFungal Biol
October 2025
University of Warsaw, Faculty of Biology, Białowieża Geobotanical Station, Sportowa 19, 17-230, Białowieża, Poland. Electronic address:
Wild mushrooms can be an important source of protein and essential amino acids, however very little is known about the environmental factors affecting the content of these compounds. In our study, we investigated the influence of soil properties (soil type, C/N ratio, pH) and tree stand characteristics (tree diversity, canopy cover, understory cover, and the proportion of deciduous trees) on total protein and essential amino acids (Valine, Leucine, Isoleucine, Phenylalanine, Lysine, Methionine, Arginine, Histidine) contents in seven wild-growing mushroom species (Macrolepiota procera, Rhodocolybia butyracea, Russula cyanoxantha, R.heterophylla, Lactifluus vellereus, Armillaria mellea s.
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