Yang Jianbo's award-winning achievements

1. The research on plant-forming technology and efficient culture of rice and maize protoplasts was the first person to complete, and won the third prize of scientific and technological progress in Anhui Province (1993).

2. Research on some problems of biological mutagenesis by ion implantation, third person, second prize of natural science of China Academy of Sciences (1994).

3. Study on mutation breeding and biological effect of rice by ion implantation, third person, second prize of Anhui Science and Technology Progress Award (1994).

4. Ion beam-mediated transgenic research, the second person, the first prize of Anhui Natural Science (1999).

5. Study and establish the SCAR technology system to quickly and accurately identify the authenticity and purity of hybrid rice and its parents' seeds, and the first person to complete it was the first prize of Anhui Science and Technology Award (2000).

6. Research on the construction and application of large-scale agricultural γ -radiation device in Anhui Province, the first person to complete it, and the third prize of Anhui Science and Technology (2003).

7. Screening method of rice plants with low amylose content in rice seeds, fourth finisher, third prize of Shanghai Science and Technology (20 10).

8. Research and application of risk prevention and control of genetically modified crops, first completed, first prize of Anhui Science and Technology (20 14). 1. Rice non-endosperm tissue expression promoter (Ostsp I) and its use, internationally authorized invention patent.

2. Low-energy ion beam cell modification technology and device, national authorized invention patent.

3. The application of molecular marker technology in rapid identification of authenticity and purity of hybrid rice seeds was authorized by the national invention patent.

4. The method that rice leaves are directly used for polymerase chain reaction has obtained the national patent.

5. The preservation method of PCR mixed solution is a national invention patent.

6. Wheat leaves are directly used for polymerase chain reaction and random amplified length polymorphism reaction, and the state authorizes invention patents.

7. Molecular marker method for identifying bentazon sensitive lethal gene in rice, and the invention patent was authorized by the state.

8. Molecular marker-assisted breeding method of three-line hybrid rice multi-purpose restorer line, the invention patent was authorized by the state.

9. Rice non-endosperm tissue expression promoter (OsTSP I) and its application, the invention patent was authorized by the state.

10. An artificially designed BT insect-resistant gene and its application won the national invention patent.

1 1. Rice cell transformation method, national authorized invention patent.

12. The development and application of a marker closely linked with the thermo-sensitive sterile gene tms5 in rice won the national invention patent.

13. A method for rapid screening of plants resistant to cell aberration, which won the national invention patent.

14. An anti-radiation Chinese herbal medicine composition and the preparation method of functional yogurt and yogurt with anti-radiation effect prepared by the composition are national authorized invention patents.

15. A breeding method of rice wide compatibility photo-thermo-sensitive sterile polymer line, which won the national invention patent.

16. The identification and application of plant leaf pillow specific expression promoter ProCol 1 obtained the national invention patent.

17. A plant salt-induced expression promoter obtained the national invention patent.

18. A hybrid rice breeding material, its cultivation method and application, won the national invention patent.

19. The neutralization of acrylic acid in the preparation of super absorbent resin is an invention patent authorized by the state.

20. Super absorbent resin and its synthesis method, national authorized invention patent. 1. Qualitative PCR detection method for herbicide-resistant corn DAS-40278-9 and its derivatives (Announcement No.2122 -9-20 14 of the Ministry of Agriculture), first drafter, released on July 7, 20 14.

2. Qualitative PCR detection method for herbicide-resistant soybean A2407- 12 and its derivatives (Ministry of Agriculture AnnouncementNo. 1485 -7-20 10), first drafter, 201kloc-0.

3. DNA analysis method for authenticity and variety purity identification of three-line hybrid rice and its parents (GB/T 20396-2006), first drafter, released on May 22, 2006.

4. DNA analysis method for authenticity and purity identification of two-line rice varieties (SN/T3402-20 12), first drafter, published on February 2, 20 12. (Is Yang Zhenning the first or not)

1. Yang Zhenliang, Prosecutor Summers, Wright and McGraw. Seed pod cracking of lotus root, lotus root and their interspecific somatic hybrids. Canadian journal of plant science. 1990, 70: 279-284

2. Introducing DNA into mature embryos by low energy ion beam to produce transgenic rice plants. China Science Bulletin, 1995, 50: 428-43 1

3. Yang J, Wu L, Li L, Wu J, Yu Z, Xu Z. Mutation sequence analysis induced by ion beam irradiation. China Science,1997,40 (1):107-12.

4. Ni D, Zhang Sheng, Chen Sheng, Xu Yong, Li Li, Li Hong, Wang Zhi, Cai Xu, Li Zhi, Yang Jun. Improvement of cooking and eating quality of indica hybrid rice Xieyou 57 by Wx marker-assisted selection. Young hair zipper,

20 1 1, 179: 355-362

5. Duan Y, Zhai C, Li H, Li J, Mei W, Gui H, Ni D, Song F, Li L, Zhang W, Yang J. An efficient Agrobacterium-mediated genetic transformation method of Qualcomm rice based on mannose phosphate isomerase positive selection. Plant cell report. 20 12, 3 1: 16 1 1- 1624

6. Li, Liang, Li, Duan, Li, Yang, Qin, Li, Wei Ping, Yang. Revealing the mitochondrial reverse regulation of alternate oxidase 1 gene in rice induced by abiotic stress. Plant Cell and Environment, 20 13, 36: 775-788.

7. Li Chun, Liang Dan, Xu, Li, Zhang, Qin, Li, Wei Ping, Yang Jun. Overexpression of an alternative oxidase gene OsAOX 1a improves the cold tolerance of rice. Studies on genetics and molecular biology,

20 13, 12: 5424-5432

8. Study on real-time fluorescence quantitative PCR detection of rice false smut. Genetics and Molecular Studies, 20 13, 12: 6433-644 1

9. A Qualcomm-quantity and high-quality method for extracting plant genomic DNA. Genetics and molecular research, 20 13, 12: 4526-4539.

10. Li Hong, Yong Yang, Duan Yong, Li Jun, Cong, Ni, Song, Li Li, Wei Ping, Yang Jun. Mapping QTL for tissue culture traits of mature embryos in rice by indica-japonica recombinant inbred lines. Australian Journal of Crop Science, 2013,7 (3): 440-445.

1 1. Nidi, Li Jun, Duan Yong, Yong Yang, Wei Ping, David Xu, Li Chun, Liang De, Li Hong, Song Feng, Ni Jun, Li Lin, Yang Jun. Identification and utilization of rice cleistogamy gene cl7(t). J Exp Bot, 20 14.

12. Isolation and functional identification of a new rice constitutive promoter. Plant Cell Report, 2014,33:1651–1660.

13. Song, Ni, Li, Duan, Yang, Ni Jun, Lu, Wei Ping, Li, Yang Jun. A new synthetic Cry 1Ab gene resistant to rice pests. Genetics and molecular research, 20 14, 13: 2394-2408.

14. Ma Hong, Li Hong, Li Jun, Wang, Wei Ping, Li Lin, Yang Jun. Detection of herbicide resistance of transgenic soybean A2704- 12 by Qualcomm quantity, low cost and event-specific polymerase chain reaction.

Genetics and molecular research, 20 14, 13: 696-703.

15. David Xu, Li Hong, Qin Rui, Wang Li, Li Li, Wei Ping, Yang Jun. The CRISPR-Cas system mediated by Agrobacterium tumefaciens was used to target rice genes. Rice, 20 14, 7: 5

16. Liu Chun, Liu Wei, Lu Xia, Chen Wei, Yang Jun, Zheng Liang. Non-destructive testing of transgenic rice seeds. L) Multi-spectral imaging and chemometrics methods are used. Food Chemistry, 20 14, 153: 87-93

17. Analysis of sunflower seed quality characteristics based on multispectral imaging technology. Foodenal.methods.2014, 1 1 (published on the internet).