A review of the interactions between biodiversity, agriculture, climate change, and international trade: research and policy priorities

AMD Ortiz, CL Outhwaite, C Dalin, T Newbold - One Earth, 2021 - cell.com
Striving to feed a population set to reach almost 10 billion people by 2050 in a sustainable
way is high on the research and policy agendas. Further intensification and expansion of …

[HTML][HTML] Impacts of nitrogen emissions on ecosystems and human health: A mini review

W de Vries - Current Opinion in Environmental Science & Health, 2021 - Elsevier
Increased inputs of reactive nitrogen (N) by fertiliser production cause adverse effects on
terrestrial and aquatic ecosystems as well as human health, through impacts on air, soil and …

Light competition drives herbivore and nutrient effects on plant diversity

A Eskelinen, WS Harpole, MT Jessen, R Virtanen… - Nature, 2022 - nature.com
Enrichment of nutrients and loss of herbivores are assumed to cause a loss of plant diversity
in grassland ecosystems because they increase plant cover, which leads to a decrease of …

[HTML][HTML] Changes of nitrogen deposition in China from 1980 to 2018

Z Wen, W Xu, Q Li, M Han, A Tang, Y Zhang… - Environment …, 2020 - Elsevier
China has experienced a dramatic change in atmospheric reactive nitrogen (Nr) emissions
over the past four decades. However, it remains unclear how nitrogen (N) deposition has …

Nitrogen addition promotes terrestrial plants to allocate more biomass to aboveground organs: A global meta‐analysis

H Feng, J Guo, C Peng, D Kneeshaw… - Global Change …, 2023 - Wiley Online Library
A significant increase in reactive nitrogen (N) added to terrestrial ecosystems through
agricultural fertilization or atmospheric deposition is considered to be one of the most …

Looking back on biodiversity change: lessons for the road ahead

M Dornelas, JM Chase, NJ Gotelli… - … of the Royal …, 2023 - royalsocietypublishing.org
Estimating biodiversity change across the planet in the context of widespread human
modification is a critical challenge. Here, we review how biodiversity has changed in recent …

Global negative effects of nutrient enrichment on arbuscular mycorrhizal fungi, plant diversity and ecosystem multifunctionality

X Ma, Q Geng, H Zhang, C Bian, HYH Chen… - New …, 2021 - Wiley Online Library
Despite widespread anthropogenic nutrient enrichment, it remains unclear how nutrient
enrichment influences plant–arbuscular mycorrhizal fungi (AMF) symbiosis and ecosystem …

Global response patterns of plant photosynthesis to nitrogen addition: A meta‐analysis

X Liang, T Zhang, X Lu, DS Ellsworth… - Global Change …, 2020 - Wiley Online Library
A mechanistic understanding of plant photosynthetic response is needed to reliably predict
changes in terrestrial carbon (C) gain under conditions of chronically elevated atmospheric …

Long‐term nitrogen input alters plant and soil bacterial, but not fungal beta diversity in a semiarid grassland

W Liu, L Liu, X Yang, M Deng, Z Wang… - Global Change …, 2021 - Wiley Online Library
Anthropogenic nitrogen (N) input is known to alter plant and microbial α‐diversity, but how N
enrichment influences β‐diversity of plant and microbial communities remains poorly …

Assessing the roles of nitrogen, biomass, and niche dimensionality as drivers of species loss in grassland communities

N Band, R Kadmon, M Mandel… - Proceedings of the …, 2022 - National Acad Sciences
Eutrophication is a major driver of species loss in plant communities worldwide. However,
the underlying mechanisms of this phenomenon are controversial. Previous studies have …