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The natural abundance of stable nitrogen isotopes (δ N) provides insights into the N dynamics of terrestrial ecosystems, the determination of which is considered an effective approach for gaining a better understanding ecosystem N cycling. However, there is currently little information available regarding the patterns and mechanisms underlying the variation in foliar-soil δ N among mountain ecosystems. In this study, we examined the determinants of foliar-soil δ N in association with N transportation rates along an elevational gradient in the Hengduan Mountains. Despite the relatively high levels of available N produced from high N fixation and mineralization, we detected the lowest levels of foliar δ N at 3500 m a.s.l., reflecting the stronger vegetation N limitation at medium high elevations. The enhanced vegetation N limitation was driven by the combined effects of higher microbial immobilization and inherent plant dynamic (the shifts of δ N in vegetation preference, including vegetation community) with changing climate along the elevational gradient. Unexpectedly, we established that soil δ N was characterized by an undulating rise and uncoupled correlation with foliar δ N with increasing elevation, thereby indicating that litter input might not be a prominent driver of soil δ N. Conversely, soil nitrification and denitrification were found to make a more pronounced contribution to the pattern of soil δ N along the elevational gradient. Collectively, our results serve to highlight the importance of microbial immobilization in soil N dynamics and provide novel insights that will contribute to enhancing our understanding of N cycling as indicated by foliar-soil δ N along elevational gradients.
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http://dx.doi.org/10.1111/gcb.16306 | DOI Listing |
ISME Commun
January 2025
Department of Environmental Engineering, National Cheng Kung University, Tainan City 70101, Taiwan.
Global salinization increasingly threatens ecosystem integrity and the regulation of biogeochemical cycles. Our study reveals novel insights into the microbial contributions to the organohalide decomposition in saline environments, demonstrating the unprecedented ability of organohalide-respiring bacteria and to completely dechlorinate trichloroethene to non-toxic ethene under hypersaline conditions (up to 31.3 g/L) in long-term operations.
View Article and Find Full Text PDFPlant Dis
September 2025
Universita degli Studi di Milano, DISAA, Via Celoria 2, Milano, Italy, 20133;
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View Article and Find Full Text PDFJ Urban Health
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Department of Public Health, Institute of Tropical Medicine, Antwerp, Belgium.
Timely access to comprehensive , high-quality emergency obstetric and neonatal care can prevent maternal and neonatal mortality but remains challenging in Benin. We examine geographic accessibility to childbirth care (CBC) in Grand Nokoué, the largest conurbation in Benin. We gathered data on boundaries, health facilities, road network, elevation, land cover, relative wealth, urbanicity, and geo-traced travel speeds over 45 days during the rainy season.
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View Article and Find Full Text PDFJ Viral Hepat
October 2025
Department of Obstetrics and Gynecology, the Second Hospital of Nanjing, and Affiliated to Nanjing University of Chinese Medicine, Nanjing, China.
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