發(fā)明專利及獲獎情況1996年獲得國際農(nóng)業(yè)磋商組織(CGIAR)頒發(fā)的“杰出青年科學(xué)家獎”;
2003年獲得韓國農(nóng)村發(fā)展局“榮譽科學(xué)家”獎;
2004年被美國農(nóng)學(xué)會授予“會士”(Fellow of ASA);
2004年在美國PNAS發(fā)表的論文“Rice yields decline with higher night temperature from global warming”被美國《探索》雜志選入“2004年度全球100項重大科學(xué)新聞”,排名第68位;
2005年被美國作物學(xué)會授予“會士”(Fellow of CSSA);
2005年獲CGIAR頒發(fā)的“優(yōu)秀論文獎”。
發(fā)表的論文及著作1. Peng, S., J. Huang, J.E. Sheehy, R.C. Laza, R.M. Visperas, X. Zhong, G.S. Centeno, G.S. Khush, and K.G. Cassman. 2004. Rice yields decline with higher night temperature from global warming. Proceedings of the National Academy of Sciences (USA) 101(27):9971-9975.
2. Peng, S., R.J. Buresh, J. Huang, J. Yang, Y. Zou, X. Zhong, G. Wang, and F. Zhang. 2006. Strategies for overcoming low agronomic nitrogen use efficiency in irrigated rice systems in China. Field Crops Research 96:37-47.
3. Peng, S., B.A.M. Bouman, R.M. Visperas, A.R. Castañeda, L. Nie, and H.-K. Park. 2006. Comparison between aerobic and flooded rice in the tropics: agronomic performance in an eight-season experiment. Field Crops Research 96:252-259.
4. Peng, S., G.S. Khush, P. Virk, Q. Tang, and Y. Zou. 2008. Progress in ideotype breeding to increase rice yield potential. Field Crops Research 108:32-38.
5. Peng, S., Q. Tang, and Y. Zou. 2009. Current status and challenges of rice production in China. Plant Production Science 12(1):3-8.
6. Ao, H., S. Peng, Y. Zou, Q. Tang, and R.M. Visperas. 2010. Reduction of unproductive tillers did not increase the grain yield of irrigated rice. Field Crops Research 116:108-115.
7. Peng, S., R.J. Buresh, J. Huang, X. Zhong, Y. Zou, J. Yang, G. Wang, Y. Liu, R. Hu, Q. Tang, K. Cui, F. Zhang, and A. Dobermann. 2010. A decade of research on improving nitrogen fertilization in rice through site-specific nitrogen management in China. Agronomy for Sustainable Development 30:649-656.
8. Peng, S., J. Huang, K.G. Cassman, R.C. Laza, R.M. Visperas, and G.S. Khush. 2010. The importance of maintenance breeding: A case study of the first miracle rice variety-IR8. Field Crops Research 119:342-347.
9. Yuan, W., S. Peng, C. Cao, P. Virk, D. Xing, Y. Zhang, R.M. Visperas, and R.C. Laza. 2011. Agronomic performance of rice breeding lines selected based on plant traits or grain yield. Field Crops Research 121:168-174.
10. Yao, F., J. Huang, K. Cui, L. Nie, J. Xiang, X. Liu, W. Wu, M. Chen, and S. Peng. 2012. Agronomic performance of high-yielding rice variety grown under alternate wetting and drying irrigation. Field Crops Research 126:16-22.
11. Wu, W., J. Huang, K. Cui, L. Nie, Q. Wang, F. Yang, F. Shah, F. Yao, and S. Peng. 2012. Sheath blight reduces stem breaking resistance and increases lodging susceptibility of rice plants. Field Crops Research 128:101-108.
12. Wang, Q., J. Huang, F. He, K. Cui, J. Zeng, L. Nie, and S. Peng. 2012. Head rice yield of “super” hybrid rice Liangyoupeijiu grown under different nitrogen rates. Field Crops Research 134:71-79.
13. Nie, L., S. Peng, M. Chen, F. Shah, J. Huang, K. Cui, and J. Xiang. 2012. Aerobic rice for water-saving agriculture: A review. Agronomy for Sustainable Development 32:411-418.
14. Wang, K., H. Zhou, B. Wang, Z. Jian, F. Wang, J. Huang, L. Nie, K. Cui, and S. Peng. 2013. Quantification of border effect on grain yield measurement of hybrid rice. Field Crops Research 141:47-54.
15. Shi, W., R. Muthurajan, H. Rahman, J. Selvam, S. Peng, Y. Zou, and K.S.V. Jagadish. 2013. Source–sink dynamics and proteomic reprogramming under elevated night temperature and their impact on rice yield and grain quality. New Phytologist 197:825-837.