1. Crop exposure to cold stress: responses in physiological, biochemical and molecular levels 2. Crop exposure to drought stress under elevated CO2: responses in physiological, biochemical, and molecular levels3.Crop exposure to heat stress: responses in physiological, biochemical, and molecular levels4. Crop exposure to waterlogging stress: responses to physiological, biochemical, and molecular levels5. Crop exposure to salinity stress under elevated CO2: responses in physiological, biochemical, and molecular levels6. Crop production in response to elevated CO2: grain yield and quality7. Wheat quality under global climate change: consequences, mechanisms, and countermeasures8. Abiotic stress responses and tolerance in wheat under climate change9. How to deal with climate change in maize production10. The efficacy of rhizobia inoculation under climate change11. Physiological response mechanism of oilseed rape to abiotic stress and the stress-resistant cultivation regulation12. Interaction of the rhizosphere microbiome and crops under climate change13. Response of rhizosphere microbiomes to climate change14.Climate change impacts on soil fertility in Mollisols15. Abiotic stress priming: an effective approach for coping with abiotic stress episodes in crop production16. High-throughput phenotype: the latest research tool for sustainable crop production under global climate change scenarios