Yr Athro Xiangjiang Zhan
Timau a rolau for Xiangjiang Zhan
Athro Gwadd er Anrhydedd
Ysgol y Biowyddorau
Cyhoeddiad
2025
- Zhang, W. et al., 2025. Birds migrate longitudinally in response to the resultant Asian monsoons of the Qinghai-Tibet Plateau uplift. eLife 14 RP103971. (10.7554/elife.103971)
2024
- Song, J. et al., 2024. Stimulus-dependent emergence of understanding the ‘same–different’ concept in budgerigars. Proceedings of the Royal Society B: Biological Sciences 291 (2036)(10.1098/rspb.2024.1862)
- Zhang, Y. et al., 2024. Environmental effects on reproduction in a managed population of the harvested and Endangered Saker Falcon Falco cherrug. Bird Conservation International 34 e4. (10.1017/S095927092300031X)
2023
- Shao, Z. et al., 2023. RNA sampling time on postmortem avian carcasses in the wild. Wildlife Biology: A journal for wildlife science 2023 (6) e01157. (10.1002/wlb3.01157)
2022
- Hu, L. et al., 2022. Arctic introgression and chromatin regulation facilitated rapid Qinghai-Tibet Plateau colonization by an avian predator. Nature Communications 13 6413. (10.1038/s41467-022-34138-3)
2017
- Pan, S. et al., 2017. Population transcriptomes reveal synergistic responses of DNA polymorphism and RNA expression to extreme environments on the Qinghai-Tibetan Plateau in a predatory bird. Molecular Ecology 26 (11), pp.2993-3010. (10.1111/mec.14090)
2015
- Zhan, X. et al. 2015. Exonic versus intronic SNPs: contrasting roles in revealing the population genetic differentiation of a widespread bird species. Heredity 114 , pp.1-9. (10.1038/hdy.2014.59)
2014
- Zhang, G. et al., 2014. Comparative genomics reveals insights into avian genome evolution and adaptation. Science 346 (6215), pp.1311-1320. (10.1126/science.1251385)
- Dai, Q. et al., 2014. Spatial genetic structure patterns of phenotype-limited and boundary-limited expanding populations: a simulation study. PLoS ONE 9 (1) e85778. (10.1371/journal.pone.0085778)
2013
- Zhan, X. et al. 2013. Peregrine and saker falcon genome sequences provide insights into evolution of a predatory lifestyle [Letter]. Nature Genetics 45 (5), pp.563-566. (10.1038/ng.2588)
2012
- Wei, F. et al., 2012. Black and white and read all over: the past, present and future of giant panda genetics. Molecular Ecology 21 (23), pp.5660-5674. (10.1111/mec.12096)
- Zhan, X. et al. 2012. Missense SNP of the MC1R gene is associated with plumage variation in the Gyrfalcon (Falco rusticolus). Animal Genetics 43 (4), pp.460-462. (10.1111/j.1365-2052.2011.02263.x)
- Zhao, S. et al., 2012. Whole-genome sequencing of giant pandas provides insights into demographic history and local adaptation [Letter]. Nature Genetics 45 (1), pp.67-71. (10.1038/ng.2494)
2011
- Guo, Y. et al., 2011. Genotyping faeces of red pandas (Ailurus fulgens): implications for population estimation. European Journal of Wildlife Research 57 (6), pp.1231-1235. (10.1007/s10344-011-0556-4)
- Hu, Y. et al., 2011. Genetic structuring and recent demographic history of red pandas (Ailurus fulgens) inferred from microsatellite and mitochondrial DNA. Molecular Ecology 20 (13), pp.2662-2675. (10.1111/j.1365-294X.2011.05126.x)
- Zhan, X. et al. 2011. Molecular evidence for Pleistocene refugia at the eastern edge of the Tibetan Plateau. Molecular Ecology 20 (14), pp.3014-3026. (10.1111/j.1365-294X.2011.05144.x)
2010
- Stanton, D. W. G. et al. 2010. Microsatellite loci for the okapi (Okapia johnstoni). Conservation Genetics Resources 2 (Supp 1), pp.337-339. (10.1007/s12686-010-9235-0)
- Zhan, X. et al. 2010. A new method for quantifying genotyping errors for noninvasive genetic studies. Conservation Genetics 11 (4), pp.1567-1571. (10.1007/s10592-009-9950-9)
- Zhu, L. et al., 2010. Conservation implications of drastic reductions in the smallest and most isolated populations of giant pandas. Conservation Biology 24 (5), pp.1299-1306. (10.1111/j.1523-1739.2010.01499.x)
2009
- Zhan, X. et al. 2009. Microsatellite loci for the Chinese bamboo rat Rhizomus sinensis. Molecular Ecology Resources 9 (4), pp.1270-1272. (10.1111/j.1755-0998.2009.02664.x)
Erthyglau
- Zhang, W. et al., 2025. Birds migrate longitudinally in response to the resultant Asian monsoons of the Qinghai-Tibet Plateau uplift. eLife 14 RP103971. (10.7554/elife.103971)
- Song, J. et al., 2024. Stimulus-dependent emergence of understanding the ‘same–different’ concept in budgerigars. Proceedings of the Royal Society B: Biological Sciences 291 (2036)(10.1098/rspb.2024.1862)
- Zhang, Y. et al., 2024. Environmental effects on reproduction in a managed population of the harvested and Endangered Saker Falcon Falco cherrug. Bird Conservation International 34 e4. (10.1017/S095927092300031X)
- Shao, Z. et al., 2023. RNA sampling time on postmortem avian carcasses in the wild. Wildlife Biology: A journal for wildlife science 2023 (6) e01157. (10.1002/wlb3.01157)
- Hu, L. et al., 2022. Arctic introgression and chromatin regulation facilitated rapid Qinghai-Tibet Plateau colonization by an avian predator. Nature Communications 13 6413. (10.1038/s41467-022-34138-3)
- Pan, S. et al., 2017. Population transcriptomes reveal synergistic responses of DNA polymorphism and RNA expression to extreme environments on the Qinghai-Tibetan Plateau in a predatory bird. Molecular Ecology 26 (11), pp.2993-3010. (10.1111/mec.14090)
- Zhan, X. et al. 2015. Exonic versus intronic SNPs: contrasting roles in revealing the population genetic differentiation of a widespread bird species. Heredity 114 , pp.1-9. (10.1038/hdy.2014.59)
- Zhang, G. et al., 2014. Comparative genomics reveals insights into avian genome evolution and adaptation. Science 346 (6215), pp.1311-1320. (10.1126/science.1251385)
- Dai, Q. et al., 2014. Spatial genetic structure patterns of phenotype-limited and boundary-limited expanding populations: a simulation study. PLoS ONE 9 (1) e85778. (10.1371/journal.pone.0085778)
- Zhan, X. et al. 2013. Peregrine and saker falcon genome sequences provide insights into evolution of a predatory lifestyle [Letter]. Nature Genetics 45 (5), pp.563-566. (10.1038/ng.2588)
- Wei, F. et al., 2012. Black and white and read all over: the past, present and future of giant panda genetics. Molecular Ecology 21 (23), pp.5660-5674. (10.1111/mec.12096)
- Zhan, X. et al. 2012. Missense SNP of the MC1R gene is associated with plumage variation in the Gyrfalcon (Falco rusticolus). Animal Genetics 43 (4), pp.460-462. (10.1111/j.1365-2052.2011.02263.x)
- Zhao, S. et al., 2012. Whole-genome sequencing of giant pandas provides insights into demographic history and local adaptation [Letter]. Nature Genetics 45 (1), pp.67-71. (10.1038/ng.2494)
- Guo, Y. et al., 2011. Genotyping faeces of red pandas (Ailurus fulgens): implications for population estimation. European Journal of Wildlife Research 57 (6), pp.1231-1235. (10.1007/s10344-011-0556-4)
- Hu, Y. et al., 2011. Genetic structuring and recent demographic history of red pandas (Ailurus fulgens) inferred from microsatellite and mitochondrial DNA. Molecular Ecology 20 (13), pp.2662-2675. (10.1111/j.1365-294X.2011.05126.x)
- Zhan, X. et al. 2011. Molecular evidence for Pleistocene refugia at the eastern edge of the Tibetan Plateau. Molecular Ecology 20 (14), pp.3014-3026. (10.1111/j.1365-294X.2011.05144.x)
- Stanton, D. W. G. et al. 2010. Microsatellite loci for the okapi (Okapia johnstoni). Conservation Genetics Resources 2 (Supp 1), pp.337-339. (10.1007/s12686-010-9235-0)
- Zhan, X. et al. 2010. A new method for quantifying genotyping errors for noninvasive genetic studies. Conservation Genetics 11 (4), pp.1567-1571. (10.1007/s10592-009-9950-9)
- Zhu, L. et al., 2010. Conservation implications of drastic reductions in the smallest and most isolated populations of giant pandas. Conservation Biology 24 (5), pp.1299-1306. (10.1111/j.1523-1739.2010.01499.x)
- Zhan, X. et al. 2009. Microsatellite loci for the Chinese bamboo rat Rhizomus sinensis. Molecular Ecology Resources 9 (4), pp.1270-1272. (10.1111/j.1755-0998.2009.02664.x)