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1. Du, Y.-L., Xi, Y., Cui, T., Anten, N. P., Weiner, J., Li, X., Turner, N. C., Zhao, Y.-M., and Li, F.-M*. (2020). Yield components, reproductive al lometry and the tradeoff between grain yield and yield stability in dryland spring wheat. Field Crops Research 257.
2.Gu, Y.-J., Han, C.-L., Fan, J.-W., Shi, X.-P., Kong, M., Shi, X.-Y., Siddique, K. H. M., Zhao, Y.-Y., and Li, F.-M*. (2018a). Alfalfa forage yield, soil water and P availability in response to plastic film mulch and P fertilization in a semiarid environment. Field Crops Research 215, 94-103.
3. Gu, Y.-J., Han, C.-L., Kong, M., Shi, X.-Y., Zdruli, P., and Li, F.-M*. (2018b). Plastic film mulch promotes high alfalfa production with phosphorus-saving and low risk of soil nitrogen loss. Field Crops Research 229, 44-54.
4. Li, F.-M*, Li, X. G., Javaid, M. M., Ashraf, M., and Zhang, F. (2020). Ridge-furrow plastic film mulching farming for sustainable dryland agriculture on the Chinese loess plateau. Agronomy Journal 112, 3284-3294.
5. Wang, D., Xi, Y., Shi, X.-Y., Han, Y.-N., Zhang, N., Ahmad, F., and Li, F.-M*. (2021a). Reduction effects of solar radiation, mechanical tension, and soil burial on phthalate esters concentrations in plastic film and soils. Science of the Total Environment 778.
6. Wang, D., Xi, Y., Shi, X.-Y., Zhong, Y.-J., Guo, C.-L., Han, Y.-N., and Li, F.-M*. (2021b). Effect of plastic film mulching and film residues on phthalate esters concentrations in soil and plants, and its risk assessment. Environmental Pollution 286.
7. Weiner, J., Du, Y.-L., Zhao, Y.-M., and Li, F.-M*. (2021). Allometry and Yield Stability of Cereals. Frontiers in Plant Science 12.
8. Yuan, Z.-Q., Fang, C., Zhang, R., Li, F.-M*, Javaid, M. M., and Janssens, I. A. (2019). Topographic influences on soil properties and aboveground biomass in lucerne-rich vegetation in a semi-arid environment. Geoderma 344, 137-143.
9. Zhang, F., Eldoma, I. M., Li, M., Kong, M., Siddique, K. H. M., and Li, F.-M*. (2019). Integrated model and field experiment to determine the optimum planting density in plastic film mulched rainfed agriculture. Agricultural and Forest Meteorology 268, 331-340.
10. Zhang, F., Zhang, W., Qi, J., and Li, F.-M*. (2018). A regional evaluation of plastic film mulching for improving crop yields on the Loess Plateau of China. Agricultural and Forest Meteorology 248, 458-468.
11. Zhang, L., Qin, R., Chai, N., Wei, H., Yang, Y., Wang, Y., Li, F.-M*, and Zhang, F. (2022a). Optimum fertilizer application rate to ensure yield and decrease greenhouse gas emissions in rain-fed agriculture system of the Loess Plateau. Science of the Total Environment 823.
12. Zhang, L., Qin, R., Wei, H., Zhang, K., Yu, C., Li, F.-M*, and Zhang, F. (2022b). Optimum plastic mulching application to reduce greenhouse gas emissions without compromising on crop yield and farmers' income. Science of the Total Environment 809.
13. Zhang, X.-L., Zhao, Y.-Y., Gao, W.-J., Song, X., Zhang, X.-T., Shi, X.-Y., and Li, F.-M*. (2021). Converting alfalfa pasture into annual cropland achieved high productivity and kept soil organic carbon in a semiarid area. Land Degradation & Development 32, 1478-1486.
14. Zheng, K., Wei, J.-Z., Pei, J.-Y., Cheng, H., Zhang, X.-L., Huang, F.-Q., Li, F.-M*, and Ye, J.-S. (2019). Impacts of climate change and human activities on grassland vegetation variation in the Chinese Loess Plateau. Science of the Total Environment 660, 236-244.
15. Zhu, Y.-H., Weiner, J., Yu, M.-X., and Li, F.-M*. (2019). Evolutionary agroecology: Trends in root architecture during wheat breeding. Evolutionary Applications 12, 733-743.