Nitrogen loading enhances phosphorus limitation in terrestrial ecosystems with implications for soil carbon cycling

M Luo, DL Moorhead, R Ochoa‐Hueso… - Functional …, 2022 - Wiley Online Library
Increased human‐derived nitrogen (N) loading in terrestrial ecosystems has caused
widespread ecosystem‐level phosphorus (P) limitation. In response, plants and soil micro …

[HTML][HTML] Exploring phosphorus fertilizers and fertilization strategies for improved human and environmental health

PS Bindraban, CO Dimkpa, R Pandey - Biology and Fertility of Soils, 2020 - Springer
Mineral phosphorus (P) fertilizers support high crop yields and contribute to feeding the
teeming global population. However, complex edaphic processes cause P to be …

Phosphate-solubilizing bacteria: Their agroecological function and optimistic application for enhancing agro-productivity

Y Cheng, M Narayanan, X Shi, X Chen, Z Li… - Science of The Total …, 2023 - Elsevier
Phosphorus (P) is a limiting nutrient in the soil-plant nutrient cycling. Although the
exogenous application of chemical P fertilizers can satisfy crop P requirements during …

Moderate salinity improves the availability of soil P by regulating P‐cycling microbial communities in coastal wetlands

M Hu, Y Le, J Sardans, R Yan, Y Zhong… - Global Change …, 2023 - Wiley Online Library
Accelerated sea‐level rise is expected to cause the salinization of freshwater wetlands, but
the responses to salinity of the availability of soil phosphorus (P) and of microbial genes …

Long‐term nitrogen deposition inhibits soil priming effects by enhancing phosphorus limitation in a subtropical forest

X Wang, S Li, B Zhu, PM Homyak, G Chen… - Global change …, 2023 - Wiley Online Library
It is widely accepted that phosphorus (P) limits microbial metabolic processes and thus soil
organic carbon (SOC) decomposition in tropical forests. Global change factors like elevated …

[HTML][HTML] 模拟大气氮沉降对中国森林生态系统影响的研究进展

鲁显楷, 莫江明, 张炜, 毛庆功, 刘荣臻, 王聪… - 热带亚热带植物 …, 2019 - jtsb.ijournals.cn
人类活动加剧了活性氮的生产和排放, 并导致氮沉降日益增加并全球化. 目前,
人类活动对全球氮循环的干扰已经超出了地球系统安全运行的界限. 中国已成为全球氮沉降的 …

Root and mycorrhizal strategies for nutrient acquisition in forests under nitrogen deposition: A meta-analysis

X Ma, B Zhu, Y Nie, Y Liu, Y Kuzyakov - Soil Biology and Biochemistry, 2021 - Elsevier
Global increase in nitrogen (N) deposition influences the belowground allocation of plant
photosynthates and the formation of roots and rhizosphere-associated symbionts as well as …

Responses of soil phosphorus fractions after nitrogen addition in a subtropical forest ecosystem: Insights from decreased Fe and Al oxides and increased plant roots

Y Fan, X Zhong, F Lin, C Liu, L Yang, M Wang, G Chen… - Geoderma, 2019 - Elsevier
Elevated nitrogen (N) deposition may exacerbate soil phosphorus (P) limitations in P-
deficient subtropical forest ecosystems. However, which abiotic factors predominantly …

Phosphorus application promoted the sequestration of orthophosphate within soil microorganisms and regulated the soil solution P supply in a temperate grassland in …

J Shi, J Gong, X Li, Z Zhang, W Zhang, Y Li… - Soil and Tillage …, 2023 - Elsevier
Anthropogenic activities have made phosphorus (P) a new sustainability issue globally. To
better understand the mechanisms of soil P dynamics responding to inorganic P fertilization …

Effects of biochar on biodegradation of sulfamethoxazole and chloramphenicol by Pseudomonas stutzeri and Shewanella putrefaciens: Microbial growth, fatty acids …

F Yang, H Jian, C Wang, Y Wang, E Li, H Sun - Journal of Hazardous …, 2021 - Elsevier
An incubation experiment was conducted to investigate whether different biochar could
enhance the biodegradation of sulfamethoxazole (SMX) and chloramphenicol (CAP). During …