个人信息
Personal Information
联系方式
Contact Information
个人简介
Personal Profile
个人概况:
2004年在南开大学获得博士学位,曾在中国科学院动物研究所和美国爱达荷大学从事博士后研究和工作。主持(或完成)国家自然基金、中国科学院生命科学领域基础前沿研究专项、国家科技基础资源调查项目(课题)十余项。主要采用行为学、分子系统学、化学生态学和基因组学等研究方法探讨物种的适应性演化及物种分化问题。研究工作发表在Proceedingsof the Royal Society B-Biological Sciences、BehavioralEcology、Animal Behaviour、InsectBiochemistry and Molecular Biology、MicrobialEcology等主流期刊。任中国昆虫学会甲虫专业委员会委员和中国动物学会动物行为学专业委员会理事。
研究方向:
1.物种形成机制;
2.适应性演化;
3.昆虫系统学;
4.昆虫行为学。
招生方向:昆虫学
1. 主要草原区有害昆虫多样性调查(国家科技基础资源调查项目,2020.01-2024.12):课题1. 鞘翅目鳞翅目草原有害昆虫多样性调查(144万,课题编号:2019FY100401,课题负责人)
2. 肠道共生微生物的侵染格局及其对植食性甲虫寄主适应的影响(2017.01-2020.12,国家自然基金面上项目,63万,项目编号:31672334,项目主持人)
3. 叶甲寄主植物专化的分子进化机制——基于转录组分析(2015.01-2018.12,国家自然基金面上项目,85万,项目编号:31472030,项目主持人)
4. 跳甲属昆虫食性相关基因定位、QTLs分析及在生态性物种形成过程中的作用机制(2013.01-2016.12,国家自然基金面上项目,82万,项目编号:31272302,项目主持人)
5. 寄主专化对植食性昆虫生殖隔离及物种形成的影响(2011.01-2013.12,国家自然科学基金面上项目,34万,项目编号:31071951,项目主持人)
6. 专食性近缘跳甲交配前生殖隔离的化学生态学机制(2011.01-2013.12,中国科学院生命科学领域“十二五”基础前沿研究专项,40万,项目编号:KSCX2-EW-J-2,项目主持人)
7. 植食性叶甲同种相残的行为学及其机理探讨(2007.01-2007.12,国家自然科学基金青年基金项目,8万,项目编号:30600061,项目主持人)
1. 主要草原区有害昆虫多样性调查(国家科技基础资源调查项目,2020.01-2024.12):课题1. 鞘翅目鳞翅目草原有害昆虫多样性调查(144万,课题编号:2019FY100401,课题负责人)
2. 肠道共生微生物的侵染格局及其对植食性甲虫寄主适应的影响(2017.01-2020.12,国家自然基金面上项目,63万,项目编号:31672334,项目主持人)
3. 叶甲寄主植物专化的分子进化机制——基于转录组分析(2015.01-2018.12,国家自然基金面上项目,85万,项目编号:31472030,项目主持人)
4. 跳甲属昆虫食性相关基因定位、QTLs分析及在生态性物种形成过程中的作用机制(2013.01-2016.12,国家自然基金面上项目,82万,项目编号:31272302,项目主持人)
5. 寄主专化对植食性昆虫生殖隔离及物种形成的影响(2011.01-2013.12,国家自然科学基金面上项目,34万,项目编号:31071951,项目主持人)
6. 专食性近缘跳甲交配前生殖隔离的化学生态学机制(2011.01-2013.12,中国科学院生命科学领域“十二五”基础前沿研究专项,40万,项目编号:KSCX2-EW-J-2,项目主持人)
7. 植食性叶甲同种相残的行为学及其机理探讨(2007.01-2007.12,国家自然科学基金青年基金项目,8万,项目编号:30600061,项目主持人)
1. Xue HJ#,*, NiuYW#, Segraves KA, Nie RE, Hao YJ, Zhang LL, Cheng XC, Zhang XW, LiWZ, Chen RS*, Yang XK*. 2021. The draft genome of the specialist flea beetle Altica viridicyanea (Coleoptera:Chrysomelidae). BMC Genomics 22: 243.
2. Wang Y, Zong L, Zhang XY, Ge SQ, SegravesKA*, Xue HJ*. 2021. 3D-printedinsect models offer a feasible method for mating studies ofchrysomelid beetles. Chemoecology doi:10.1007/s00049-021-00345-5.
3. Zhang LJ#, Xiao BH#, Wang Y, Zheng CS, Li JG, SegravesKA*, Xue HJ*. 2021. The mangoseed weevil, Sternochetus mangiferae (Fabricius)(Coleoptera: Curculionidae) is characterized by low genetic diversity and lackof genetic structure. Agricultural and ForestEntomology doi:10.1111/afe.12437.
4. Wei J, Segraves KA, Li WZ, Yang XK*, Xue HJ*. 2020. Gut bacterialcommunities and their contribution to performance of specialist Altica flea beetles. Microbial Ecology 80: 946–959.
5. Zhang SK, Shu JP*, Xue HJ, Zhang W, Zhang YB, Liu YN, Fang LX, Wang YD*, Wang HJ. 2020. The gutmicrobiota in camellia weevils are influenced by plant secondary metabolitesand contribute to saponin degradation. mSystems5:e00692-19.
6. Nie RE, Andújar C, Gómez-Rodríguez C,Bai M, Xue HJ, Tang M, Yang CT, TangP, Yang XK*, Vogler AP*. 2020. The phylogeny of leaf beetles (Chrysomelidae)inferred from mitochondrial genomes. SystematicEntomology 45: 188–204.
7. Wei J, Segraves KA, Xiao BH, Li WZ, YangXK*, Xue HJ*. 2020. Highprevalence of Wolbachiainfection does not explain unidirectional cytoplasmicincompatibility of Altica fleabeetles. Ecological Entomology 45: 67–78.
8. Nie RE, Wei J, Zhang SK, Vogler AP, WuL, Konstantinov AS, Li WZ, Yang XK*, XueHJ*. 2019. Diversification of mitogenomes in three sympatric Altica flea beetles (Insecta,Chrysomelidae). Zoologica Scripta 48: 657–666.
9. Zhang SK, Shu JP*, Xue HJ, Zhang W, Wang YD, Liu YN, Wang HJ. 2018. Genetic diversityin the camellia weevil, Curculiochinensis Chevrolat (Coleptera: Curculionidae) and inferences for theimpact of host plant and human activity. EntomologicalScience 21: 447–460.
10. Xue HJ#,, Segraves KA#, Wei J, Zhang B, Nie RE, Li WZ, Yang XK*. 2018. Chemically mediated sexual signals restrict hybridspeciation in a flea beetle. Behavioral Ecology 29: 1462–1471.
11. Xue HJ*, WeiJ, Huang ZZ, Li WZ, Yang XK. 2018. Yourchemical coat tells me you are my delicacy: A predatory stink bug usescuticular hydrocarbons to identify prey. Chemoecology 28: 69–73.
12. Nie RE, Breeschoten T, Timmermans MJTN, Nadein K, Xue HJ, Bai M, Huang Y, Yang XK*, Vogler AP*. 2018. The phylogenyof Galerucinae (Coleoptera: Chrysomelidae) and the performance of mitochondrialgenomes in phylogenetic inference compared to nuclear rRNA genes. Cladistics 34: 113–130.
13. Zhang B, Zhang W, Nie RE, Li WZ, SegravesKA*, Yang XK*, Xue HJ*. 2016. Comparative transcriptome analysis of chemosensory genes intwo sister leaf beetles provides insights into chemosensory speciation. Insect Biochemistry and Molecular Biology 79: 108 –118.
14. Xue HJ#, Wei JN#, MagalhãesS, Zhang B, Song KQ, Liu J, Li WZ, Yang XK*. 2016. Contactpheromones of 2 sympatric beetle species are modified by the host plant and affectmating. Behavioral Ecology 27: 895–902.
15. Xue HJ, Zhang B, Segraves KA, Wei JN, Nie RE, Song KQ, LiuJ, Li WZ, Yang XK*. 2016. Contact cuticular hydrocarbons act as a mating cue todiscriminate intraspecific variation in Alticaflea beetles. Animal Behaviour 111:217–224.
16. Zhang B, Segraves KA, Xue HJ*, NieRE, Li WZ, Yang XK*. 2015. Adaptation to different host plantages facilitates insect divergence without a host shift. Proceedings of theRoyal Society B-Biological Sciences 282: 20151649.
文件上传中...