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1. A reporting format for leaf-level gas exchange data and metadata

2. Ozone sensitivity of diverse maize genotypes is associated with differences in gene regulation, not gene content

3. A reporting format for leaf-level gas exchange data and metadata

4. A guide to photosynthetic gas exchange measurements: Fundamental principles, best practice and potential pitfalls.

5. Greater aperture counteracts effects of reduced stomatal density on WUE: a case study on sugarcane and meta-analysis.

6. Reducing stomatal density by expression of a synthetic Epidermal Patterning Factor increases leaf intrinsic water use efficiency and reduces plant water use in a C4 crop.

7. Similar photosynthetic but different yield responses of C 3 and C 4 crops to elevated O 3 .

8. Two decades of fumigation data from the Soybean Free Air Concentration Enrichment facility.

9. Stronger fertilization effects on aboveground versus belowground plant properties across nine U.S. grasslands.

10. Climate change challenges, plant science solutions.

11. The leaf economics spectrum of triploid and tetraploid C 4 grass Miscanthus x giganteus.

12. Plasticity in stomatal behaviour across a gradient of water supply is consistent among field-grown maize inbred lines with varying stomatal patterning.

13. Variation in leaf transcriptome responses to elevated ozone corresponds with physiological sensitivity to ozone across maize inbred lines.

14. An improved representation of the relationship between photosynthesis and stomatal conductance leads to more stable estimation of conductance parameters and improves the goodness-of-fit across diverse data sets.

15. Installation and imaging of thousands of minirhizotrons to phenotype root systems of field-grown plants.

16. Soil carbon stocks in temperate grasslands differ strongly across sites but are insensitive to decade-long fertilization.

17. Phenotyping stomatal closure by thermal imaging for GWAS and TWAS of water use efficiency-related genes.

18. Machine learning-enabled phenotyping for GWAS and TWAS of WUE traits in 869 field-grown sorghum accessions.

19. Optical topometry and machine learning to rapidly phenotype stomatal patterning traits for maize QTL mapping.

20. Can improved canopy light transmission ameliorate loss of photosynthetic efficiency in the shade? An investigation of natural variation in Sorghum bicolor.

21. Correlation and co-localization of QTL for stomatal density, canopy temperature, and productivity with and without drought stress in Setaria.

22. Age-dependent increase in α-tocopherol and phytosterols in maize leaves exposed to elevated ozone pollution.

23. Drivers of Natural Variation in Water-Use Efficiency Under Fluctuating Light Are Promising Targets for Improvement in Sorghum.

24. Nutrient addition increases grassland sensitivity to droughts.

25. Novel Bayesian Networks for Genomic Prediction of Developmental Traits in Biomass Sorghum.

26. Uncovering hidden genetic variation in photosynthesis of field-grown maize under ozone pollution.

27. Author Correction: Increasing CO 2 threatens human nutrition.

28. Water Use Efficiency as a Constraint and Target for Improving the Resilience and Productivity of C 3 and C 4 Crops.

29. Deleterious Mutation Burden and Its Association with Complex Traits in Sorghum ( Sorghum bicolor ).

30. Similar photosynthetic response to elevated carbon dioxide concentration in species with different phloem loading strategies.

31. Photosystem II Subunit S overexpression increases the efficiency of water use in a field-grown crop.

32. High-fidelity detection of crop biomass quantitative trait loci from low-cost imaging in the field.

33. Increasing drought and diminishing benefits of elevated carbon dioxide for soybean yields across the US Midwest.

34. Elevated ozone reduces photosynthetic carbon gain by accelerating leaf senescence of inbred and hybrid maize in a genotype-specific manner.

35. Shifts in microbial communities in soil, rhizosphere and roots of two major crop systems under elevated CO 2 and O 3 .

36. Diversity in stomatal function is integral to modelling plant carbon and water fluxes.

37. Time dependent genetic analysis links field and controlled environment phenotypes in the model C4 grass Setaria.

38. Tropical forest responses to increasing atmospheric CO 2 : current knowledge and opportunities for future research.

39. Minirhizotron imaging reveals that nodulation of field-grown soybean is enhanced by free-air CO 2 enrichment only when combined with drought stress.

40. Urgent need for a common metric to make precipitation manipulation experiments comparable.

42. Functional genomics and ecology--a tale of two scales.

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