个人简介
邢龙生,男,1988年6月生,安徽庐江人,理学博士,校聘研究员,硕士生导师。
主要从事入侵生物学和基因组学方面的科研工作,借助基因组学、生物信息学、生物化学与分子生物学等技术手段,聚焦昆虫与病原微生物免疫互作的分子调控机制,以及农林业重要入侵物种适应性进化等研究方向。作为项目负责人,先后主持国家自然科学基金青年基金项目、国家重点研发计划项目子课题、中国博士后科学基金特别资助项目、深圳市自然科学基金面上项目以及河北省教育厅青年基金项目等。在国内外学术刊物上发表论文31篇,其中以第一或通讯作者(含共同)在Nature Genetics、Advanced Science、Horticulture Research、PLoS Pathogens、BMC Biology等国际知名期刊发表论文18篇,总被引1500次。申请发明专利2项,授权软件著作权2项。
招生方向:生物化学与分子生物学/生物与医药
已培养硕士生1名,本科生3名;在读硕士生9名。
教育经历
2013.09 — 2017.07 中国科学院大学 基因组学,获博士学位
2010.09 — 2013.06 中国药科大学 药物生物信息学,获硕士学位
2006.09 — 2010.07 西南大学 制药工程,获学士学位
工作经历
2021.12 — 至今 河北大学 生命科学学院 校聘研究员,硕士生导师
2017.07 — 2021.09 中国农业科学院 深圳农业基因组研究所 助理研究员
期刊审稿人
担任Nature Communications、BMC Biology、Industrial Crops and Products、Pesticide Biochemistry and Physiology、International Journal of Biological Macromolecules、BMC Genomics、Journal of General Virology、Journal of Economic Entomology、Scientific Data等SCI期刊的独立审稿人。
承担科研项目
1. 国家自然科学基金青年科学基金项目,23万元,2020.01—2022.12,已结题,主持
2. 国家重点研发计划项目子课题,46万元,2022.11—2025.10,已结题,主持
3. 河北省教育厅青年基金项目,5万元,2026.01—2028.12,在研,主持
4. 中国博士后科学基金特别资助项目,18万元,2019.01—2021.07,已结题,主持
5. 中国博士后科学基金面上项目,5万元,2017.08—2021.07,已结题,主持
6. 深圳市自然科学基金基础研究面上项目,30万元,2020.05—2023.04,已结题,主持
7. 深圳市大鹏新区产业发展资金扶持项目,35万元,2019.01—2020.12,已结题,主持
8. 国家自然科学基金面上项目,50万元,2024.01—2027.12,在研,参与
9. 国家自然科学基金青年科学基金项目,24万元,2015.01—2017.12,已结题,参与
10. 国家自然科学基金青年科学基金项目,25万元,2015.01—2017.12,已结题,参与
代表性论文:(*通讯作者,#共同第一作者)
1. Chen HL#,*, Xing LS#, Guan CN#, Liu Y#, Chen TX, Cao R, Song QN, Barmukh R, Rouf Mir R, Hu LL, Zhou B, Luo GL, Xu DX, Yin FX, Yuan XX, Wang SH, Chen X, Wang LX, Jiao CZ*, Du HL*, Zhou ML*, Varshney RK*, Cheng XZ*. Graph-based pan-genome reveals structural variations associated with agronomic traits in mung bean. Nature Genetics, 2026, 58(7):1696-1710. doi: 10.1038/s41588-026-02644-5. (中科院一区,IF5: 37.4)
2. Li XZ#, Liu Y#, Xing LS#, Huang XL#, Sun YM, Yue L, Zhang YZ, Du HL*, Chen B*. Transposable Element–Driven PIEZO Mutation Enhances Locust Flight in Plateau Hypoxia. Advanced Science, 2026, 13(57):e76705. doi: 10.1002/advs.76705. (中科院一区,IF5: 15.6)
3. Yang QT#, Liu ZD#, Yin YQ, Su J, Yu DY, Xing LS, Zou Z*, Kang L*, Sun JH*. Symbiont-Induced HSP83 Establishes Two-Tiered Control of Antifungal Immunity in an Invasive Beetle–Fungus Complex. Advanced Science, 2026, 13(63):e77421. doi: 10.1002/advs.77421. (中科院一区,IF5: 15.6)
4. Zhang B#, Koski TM#, Wang HL#, Chen ZZ, Li HP, Mogouong J, Bushley KE, Xing LS*, Sun JH*. The Role of Phenylpropanoids and the Plant Microbiome in Defences of Ash Trees Against Invasive Emerald Ash Borer. Plant Cell & Environment, 2025, 48(8):5680-5698. (中科院一区,IF5: 7.7)
5. Zhang HY#, Liu NK#, Wang YR#, Zheng XY#, Li W#, Liu Z, Liu JN, Wang Y, Xing LS, Li T, Yun YG, Zhou QH, Wang MJ, Qin YJ, Yan JJ, Gong ZZ*, He Q*, Du HL*. Super-pangenome analyses across 35 accessions of 23 Avena species highlight their complex evolutionary history and extensive genomic diversity. Nature Genetics, 2025, 57(9):2276-2288. (中科院一区,IF5: 37.4)
6. Liu JN#, Liu NK#, Yan W#, Hu XY#, Wang MJ#, Qin RD, Ma L, Li W, Wang Y, Sun QB, Xing LS, Yun YG, Li YY, Yan JJ, Wang XM, Gong ZZ*, Wang HR*, Du HL*. Reference genome and population genomic analyses reveal insight into herbicide tolerance in Avena fatua L. Nature Communications, 2025, 16:9851. (中科院一区,IF5: 17.2)
7. Liu Z, Li MH, Wang Y, Li T, Li W, Xing LS, Du HL*, He Q*. Genomic insights into karyotype evolution and adaptive mechanisms in Polygonaceae species. Cell Reports, 2025, 44(11):116558. (中科院一区,IF5: 8.1)
8. Li W#, Liu JN#, Liu NK#, Liang HF#, Zhang LJ#, Sun QB#, Yan W, Li MH, Liu XY, Yun YG, Zhou QH, Du CL, Qin YJ, Zhang HY, Xing LS, He Q, Gong ZZ, Du HL*. Genomic insights into the divergence between hulled and hulless oats. Cell Reports, 2025, 44(8):116055. (中科院一区,IF5: 8.1)
9. Wang FH#, Li MH#, Liu Z, Li W, He Q, Xing LS, Xiao Y, Wang MJ, Wang Y, Du CL, Zhang HY, Zhou Y, Du HL*. The mixed auto-/allooctoploid genome of Japanese knotweed (Reynoutria japonica) provides insights into its polyploid origin and invasiveness. The Plant Journal, 2025, 121(4):e70005. (中科院一区,IF5: 7)
10. Zhou HX#, Zhang B#, Luo CR#, Meng CY, Teng ZW, Guo Y, Li CY, Xing LS, Li ZY, Fan YJ, Liu CH*, Qian WQ*, Wan FH*. The chromosome-level genome of the woolly apple aphid Eriosoma lanigerum provides insight into waxy synthesis and secretion. Entomologia Generalis, 2025, 45(6):1805-1812. (中科院一区,IF5: 4.4)
11. Xing LS#, Liu Bo#, Yu DY#, Tang X, Sun JH*, Zhang B*. A near-complete genome assembly of Monochamus alternatus a major vector beetle of pinewood nematode. Scientific Data, 2024, 11(1):312. (中科院一区,IF5: 8.7)
12. He Q#, Miao Y#, Zheng XY, Wang YR, Wang YT, Jia Z, Zhang HY, Wang Y, Xiao Y, Du CL, Li W, Xing LS, Du HL*. The near-complete genome assembly of Reynoutria multiflora reveals the genetic basis of stilbenes and anthraquinones biosynthesis. Journal of Systematics and Evolution, 2024, 62(6):1085-1102. (中科院二区,IF5: 3.3)
13. Wang RY, Li W, He Q, Zhang HY, Wang MJ, Zheng XY, Liu Z, Wang Y, Du CL, Du HL*, Xing LS*. The genome of okra (Abelmoschus esculentus) provides insights into its genome evolution and high nutrient content. Horticulture Research, 2023, 10(8):uhad120. (中科院一区, IF: 8.7)
14. Xing LS#, Wang MJ#, He Q, Zhang HY, Liang HF, Zhou QH, Liu Y, Liu Z, Wang Y, Du CL, Xiao Y, Liu JN, Li W, Liu GX, Du HL. Differential subgenome expression underlies biomass accumulation in allotetraploid Pennisetum giganteum. BMC Biology, 2023, 21(1): 161. (中科院一区, IF: 5.4)
15. Wu Q#, Xing LS#, Du M, Huang C, Liu B, Zhou HX, Liu WX, Wan FH*, Qian WQ*. Genome-wide analysis of serine protease inhibitors in Cydia pomonella provides insights into their evolution and expression pattern. International Journal of Molecular Sciences, 2023, 24:16349. (中科院二区, IF: 5.6)
16. Zhang B#, Liu B#, Huang C#, Xing LS#, Li ZY#, Liu CH#, Zhou HX, Zheng GL, Li J, Han JC, Yu QL, Yang CH, Qian WQ, Wan FH, Li CY. A chromosome-level genome assembly of the beet armyworm Spodoptera exigua. Genomics, 2023, 115:110571. (中科院二区, IF: 4.4)
17. He Q#, Ma D#, Li W, Xing LS, Zhang HY, Wang Y, Du CL, Li XZ, Jia Z, Li XX, Liu JN, Liu Z, Miao Y, Feng R, Lv Y, Wang MJ, Lu HW, Li XC, Xiao Y, Wang RY, Liang HF, Zhou QH, Zhang LJ, Liang CZ, Du HL. High-quality Fagopyrum esculentum genome provides insights into the flavonoid accumulation among different tissues and self-incompatibility. Journal of Integrative Plant Biology, 2023, 65(6):1423-1441. (中科院一区, IF: 11.4)
18. Zhang HY#, He Q#, Xing LS, Wang RY, Wang Y, Liu Y, Zhou QH, Li XZ, Jia Z, Liu Z, Miao YQ, Lin T, Li W, Du HL. The haplotype-resolved genome assembly of autotetraploid rhubarb Rheum officinale provides insights into its genome evolution and massive accumulation of anthraquinones. Plant Communications, 2023, 5:100677. (中科院一区, IF: 10.5)
19. Liu ZD#, Xing LS#, Huang WL, Liu B, Wan FH, Raffa KF, Hofstetter RW, Qian WQ*, Sun JH*. Chromosome-level genome assembly and population genomic analyses provide insights into adaptive evolution of the red turpentine beetle, Dendroctonus valens. BMC Biology, 2022, 20:190. (中科院一区, IF: 7.36)
20. Xing LS, Wu Q, Xi Y, Huang C, Liu WX, Wan FH, Qian WQ. Full-length codling moth transcriptome atlas revealed by single-molecule real-time sequencing. Genomics, 2022, 114(2):110299. (中科院二区, IF: 4.4)
21. Li W, Liu JN, Zhang HY, Liu Z, Wang Y, Xing LS, He Q, Du HL. Plant pan-genomics: recent advances, new challenges, and roads ahead. Journal of Genetics and Genomics, 2022, 49:833-846. (中科院二区,IF: 6.6)
22. Xing LS#, Xi Y#, Qiao X, Huang C, Wu Q, Yang NW, Guo JY, Liu WX, Fan W, Wan FH, Qian WQ. The landscape of lncRNAs in Cydia pomonella provides insights into their signatures and potential roles in transcriptional regulation. 2021, BMC Genomics, 22(1):4. (中科院二区, IF: 4.4)
23. Xi Y#, Xing LS#, Wennmann JT, Fan JB, Li ZY, Wu Q, Lu S, Liu B, Guo JY, Qiao X, Huang C, Qian WQ, Jehle JA, Wan FH. Gene expression patterns of Cydia pomonella granulovirus in codling moth larvae revealed by RNAseq analysis. Virology, 2021, 558:110-118. (中科院三区, IF: 3.4)
24. Yuan CF#, Xing LS#, Wang ML, Hu ZH, Zou Z. Microbiota modulates gut immunity and promotes baculovirus infection in Helicoverpa armigera. Insect Science, 2021, 28(6):1766-1779. (中科院一区, IF: 4.0)
25. Xing LS#, Ding TB#, Huang C, Xi Y, Wu Q, Qian WQ, Wan FH, Zhang B. A comprehensive atlas of lysine acetylome in onion thrips (Thrips tabaci Lind.) revealed by proteomics analysis. Journal of Proteomics, 2019, 207:103465. (中科院二区, IF: 3.3)
26. Xing LS#, Yuan CF#, Wang ML, Lin Z, Shen B, Hu Z, Zou Z. Dynamics of the interaction between cotton bollworm Helicoverpa armigera and nucleopolyhedrovirus as revealed by integrated transcriptomic and proteomic analyses. Molecular & Cellular Proteomics, 2017, 16(6):1009-1028. (中科院一区, IF: 5.9)
27. Yuan CF#, Xing LS#, Wang ML, Wang X, Yin MY, Wang QR, Hu ZH, Zou Z. Inhibition of melanization by serpin-5 and serpin-9 promotes baculovirus infection in cotton bollworm Helicoverpa armigera. 2017, PLoS Pathogens, 13(9):e1006645. (中科院一区, IF: 7.4)
28. Xiong GH#, Xing LS#, Lin Z, Saha TT, Wang C, Jiang H, Zou Z. High throughput profiling of the cotton bollworm Helicoverpa armigera immunotranscriptome during the fungal and bacterial infections. BMC Genomics, 2015, 16(1):321. (中科院二区, IF: 4.4)
29. Liu B#, Yan J#, Li WH#, Yin LJ#, Li P#, Yu HX, Xing LS, Cai ML, Wang HC, Zhao MX, Zheng J, Sun F, Wang ZZ, Jiang ZY, Ou QJ, Li SB, Qu L, Zhang QL, Zheng YP, Qiao X, Xi Y, Zhang Y, Jiang F, Huang C, Liu CH, Ren YW, Wang S, Liu HW, Guo JY, Wang HH, Dong H, Peng CL, Qian WQ, Fan W, Wan FH. Mikania micrantha genome provides insights into the molecular mechanism of rapid growth. Nature Communications, 2020, 11(1):340. (中科院一区,IF: 16.6)
30. Wan FH#, Yin CL#, Tang R#, Chen MH#, Wu Q#, Huang C#, Qian WQ, Rota-Stabelli O, Yang NW, Wang SP, Wang GR, Zhang GF, Guo JY, Gu LQ, Chen LF, Xing LS, Xi Y, Liu FL, Lin KJ, Guo MB, Liu W, He K, Tian RZ, Jacquin-Joly E, Franck P, Siegwart M, Ometto L, Anfora G, Blaxter M, Meslin C, Nguyen P, Dalíková M, Marec F, Olivares J, Maugin S, Shen JR, Liu JD, Guo JM, Luo JP, Liu B, Fan W, Feng LK, Zhao XX, Peng X, Wang K, Liu L, Zhan HX, Liu WX, Shi GL, Jiang CY, Jin JS, Xian XQ, Lu S, Ye ML, Li MZ, Yang ML, Xiong RC, Walters JR, Li F. A chromosome-level genome assembly of Cydia pomonella provides insights into chemical ecology and insecticide resistance. Nature Communications, 2019, 10(1):4237. (中科院一区, IF: 16.6)