30 years of free‐air carbon dioxide enrichment (FACE): What have we learned about future crop productivity and its potential for adaptation?

EA Ainsworth, SP Long - Global change biology, 2021 - Wiley Online Library
Free‐air CO2 enrichment (FACE) allows open‐air elevation of [CO2] without altering the
microclimate. Its scale uniquely supports simultaneous study from physiology and yield to …

Elevated [CO2] effects on crops: Advances in understanding acclimation, nitrogen dynamics and interactions with drought and other organisms

S Tausz‐Posch, M Tausz, M Bourgault - Plant Biology, 2020 - Wiley Online Library
Future rapid increases in atmospheric CO 2 concentration [CO 2] are expected, with values
likely to reach~ 550 ppm by mid‐century. This implies that every terrestrial plant will be …

[HTML][HTML] The impact of climate change on insect pest biology and ecology: Implications for pest management strategies, crop production, and food security

B Subedi, A Poudel, S Aryal - Journal of Agriculture and Food Research, 2023 - Elsevier
The explosive expansion of the global population and technological progress has greatly
influenced agriculture and food production. However, this progress is threatened by climate …

Nitrogen dynamics in cropping systems under Mediterranean climate: a systemic analysis

L Lassaletta, A Sanz-Cobena, E Aguilera… - Environmental …, 2021 - iopscience.iop.org
Worldwide, Mediterranean cropping systems face the complex challenge of producing
enough high-quality food while preserving the quantity and quality of scarce water for …

Impact of elevated CO2 on grain nutrient concentration varies with crops and soils–A long-term FACE study

J Jin, R Armstrong, C Tang - Science of the Total Environment, 2019 - Elsevier
The impact of elevated CO 2 (eCO 2) on grain nutrient concentration is becoming a global
concern in terms of future human nutrition. Previous research has shown that eCO 2 can …

[HTML][HTML] An integrated research framework combining genomics, systems biology, physiology, modelling and breeding for legume improvement in response to …

P Palit, H Kudapa, R Zougmore, J Kholova… - Current Plant …, 2020 - Elsevier
How unprecedented changes in climatic conditions will impact yield and productivity of
some crops and their response to existing stresses, abiotic and biotic interactions is a key …

Elevated CO2 and temperature increase grain oil concentration but their impacts on grain yield differ between soybean and maize grown in a temperate region

Y Qiao, S Miao, Q Li, J Jin, X Luo, C Tang - Science of the Total …, 2019 - Elsevier
The increases in CO 2 concentration and attendant temperature are likely to impact
agricultural production. This study investigated the effects of elevated temperature alone and …

Carbon sink strength of nodules but not other organs modulates photosynthesis of faba bean (Vicia faba) grown under elevated [CO2] and different water supply

S Parvin, S Uddin, S Tausz‐Posch… - New …, 2020 - Wiley Online Library
Photosynthetic stimulation by elevated [CO2](e [CO2]) may be limited by the capacity of sink
organs to use photosynthates. In many legumes, N2‐fixing symbionts in root nodules …

Elevated CO2 improves yield and N2 fixation but not grain N concentration of faba bean (Vicia faba L.) subjected to terminal drought

S Parvin, S Uddin, S Tausz-Posch, G Fitzgerald… - Environmental and …, 2019 - Elsevier
Legumes grown in Mediterranean environments frequently experience terminal drought
which reduces yield and N 2 fixation processes. Decreased N 2 fixation during reproductive …

Free air CO2 enrichment (FACE) improves water use efficiency and moderates drought effect on N2 fixation of Pisum sativum L.

S Parvin, S Uddin, GJ Fitzgerald, S Tausz-Posch… - Plant and Soil, 2019 - Springer
Background and aims Legume N 2 fixation is highly sensitive to drought. Elevated [CO 2](e
[CO 2]) decreases stomatal conductance (gs) and improves water use efficiency (WUE) …