9. 牛頓基金:Enabling wide area persistent remote sensing for agriculture applications by developing and coordinating multiple heterogeneous platforms, 2018-2020。
6. Xiangming Xu, Xiaoping Hu. Distance-Based Statistics for Analyzing Spatial Point Pattern Data. In: Exercises in Plant Disease Epidemiology, Second Edition. Edited by Katherin L. Stevenson and Michael J. Jeger. APS Press, 2014.
8. Feng Jie, …, Hu Xiaoping, …. Integrated Solutions for Mycotoxin Management. China Agricultural Science and Technology Press, 2018.
代表性論文:
1. Jinya Su, Dewei Yi, Baofeng Su, Zhiwen Mi, Cunjia Liu*, Xiaoping Hu*, Xiangming Xu, Lei Guo and Wen-Hua Chen. Aerial Visual Perception in Smart Farming: Field Study of Wheat Yellow Rust Monitoring. IEEE Transactions on Industrial Informatics, 2020. TOP Journal IF 9.112.
2. Tao Fei#, Hu Yangshan#, Su Chang, Li Juan, Guo Lili, Xu Xiangming, Chen Xianming, Shang Hongsheng, Hu Xiaoping*. 2020. Revealing differentially expressed genes and identifying effector proteins of Puccinia striiformis f. sp. tritici in response to high-temperature seedling plant resistance of wheat based on transcriptome sequencing. mSphere, 5: e00096-20. IF 4.447
3. Jiahui Wang, Junjuan Wang, Hongsheng Shang, Xianming Chen, Xiangming Xu, Xiaoping Hu*. TaXa21, a LRR-rich receptor like kinase associated with TaWRKY76 and TaWRKY62, plays positive roles in wheat high-temperature seedling plant resistance to Puccinia striiformis f. sp. tritici. Molecular Plant-Microbe Interactions, 2019, 32(11): 1517-1525.
4. Xiaoping Hu*, Shiqin Cao, Alex Cornelius, Xiangming Xu. Predicting overwintering of wheat stripe rust in central and north-western China. Plant Disease, 2019, 103(4):638-644.
5. Rui Jing, Haiyuan Li, Xiaoping Hu, Wenjing Shang*, Ruiqing Shen, Chengjin Guo, Qingyun Guo, Krishna V. Subbarao. Verticillium wilt caused by Verticillium dahliae and V. nonalfalfae in potato. Plant Disease, 2018.
6. Hu X.-P.*, Ma L.-J., Liu T.-G., Wang C.-H., Peng Y.-L., Pu Q., and Xu. X.-M. Population genetic analysis of Puccinia striiformis f. sp. tritici suggests two distinct populations in Tibet and the other regions of China. Plant Disease, 2017, 101: 288-296.
7. Junjuan Wang, Fei Tao, Fei An, Yiping Zou, Wei Tian, Xianming Chen, Xiangming Xu, Xiaoping Hu*. Wheat transcription factor TaWRKY70 is positively involved in high-temperature seedling-plant resistance to Puccinia striiformis f. sp. tritici. Molecular Plant Pathology, 2016, 12425.
8. Xiaoping Hu, Laurence V Madden, Simon Edwards, and Xiangming Xu. Combining models is more likely to give better predictions than single models. Phytopathology, 2015, 105(9): 1174-1182.
9. Feng Wei, Rong Fan, Haitao Dong, Wenjing Shang, Xiangming XU, Heqin Zhu, Jiarong Yang, Xiaoping Hu*. Threshold Microsclerotial Inoculum for Cotton Verticillium Wilt Determined through Wet-sieving and Real-time Quantitative PCR. Phytopathology, 2015, 105: 220-229.
10. Xiaoping Hu, Jiaojiao Li, Yating Wang, Baotong Wang, Qiang Li, Zhensheng Kang, Minna Yang, Yueling Peng, Taiguo Liu, Wanquan Chen, and Xiangming Xu*. Race composition of Puccinia striiformis f. sp. tritici in Tibet, China. Plant Disease, 2012, 96: 1615-1620.