研究成果 | 近五年主要主持科研项目: 1.国家自然科学基金委员会, 地区基金项目, 《基于比较基因组学鉴定影响海南猪高温适应特性的功能基因》, 2023.01-2026.12, 在研 2.海南省科学技术厅, 重点研发项目,《海南省地方猪在合成新品种中的分子设计及其应用》,2025.02-2028.02, 在研 3.海南省科学技术厅, “南海新星”科技创新人才平台项目,《基于高精度基因组解析定安猪种质特性形成的遗传基础》, 2023.09-2026.09,在研 4.海南省科学技术厅, 青年基金项目,《基于重测序数据对我国地方猪品种耐热特性分子机制的初步研究》, 2020.12-2023.12,结题 5.海南省科学技术厅, 高层次人才项目, 《基于GGRS技术对文昌鸡品种资源现状及种质特性评估的研究》,2020.01-2022.12,结题
近五年主要代表性论文: 1. Zhong Z, Wang F, Xie X, Wang Z, Pan D, Wang Z, Xiao Q. (2025). Integration of multi-omics resources reveals genetic features associated with environmental adaptation in the Wuzhishan pig genome. J Therm Biol. 132:104264. 2. Wang, Z., Pan, D., Xie, X., Zhong, Z., Wang, F., & Xiao, Q. (2025). Genome-wide detection of runs of homozygosity in Ding'an pigs revealed candidate genes relating to meat quality traits. BMC Genomics, 26(1), 316. 3. Zhong, Z., Wang, Z., Xie, X., Pan, D., Su, Z., Fan, J., Xiao, Q., & Sun, R. (2024). Insights into Adaption and Growth Evolution: Genome-Wide Copy Number Variation Analysis in Chinese Hainan Yellow Cattle Using Whole-Genome Re-Sequencing Data. International journal of Molecular Sciences, 25(22), 11919. 4. Xie, X., Shi, L., Zhong, Z., Wang, Z., Pan, D., Hou, G., & Xiao, Q. (2024). Danzhou chicken: a unique genetic resource revealed by genome-wide resequencing data. Poultry Science, 103(8), 103960. 5. Xie, X., Shi, L., Hou, G., Zhong, Z., Wang, Z., Pan, D., Na, W., & Xiao, Q. (2024). Genome wide detection of CNV and their association with body size in Danzhou chickens. Poultry Science, 103(12), 104266. 6. Xie, X. F., Wang, Z. Y., Zhong, Z. Q., Pan, D. Y., Hou, G. Y., & Xiao, Q. (2024). Genome-wide scans for selection signatures in indigenous chickens reveal candidate genes associated with local adaptation. Animal, 18(5), 101151. h 7. Wang, Z., Zhong, Z., Xie, X., Wang, F., Pan, D., Wang, Q., Pan, Y., Xiao, Q., & Tan, Z. (2024). Detection of Runs of Homozygosity and Identification of Candidate Genes in the Whole Genome of Tunchang Pigs. Animals, 14(2), 201. 8. Tan Z, Li J, He Y, Wang F, Xiao Q. Characteristics of gut microbiota and metabolomic of Hainan Tunchang pigs at various growth stages. Gene. 2024 Mar 30;900:148161. 9. Wang, F., Zha, Z., He, Y., Li, J., Zhong, Z., Xiao, Q., & Tan, Z. (2023). Genome-Wide Re-Sequencing Data Reveals the Population Structure and Selection Signatures of Tunchang Pigs in China. Animals, 13(11), 1835. 10. Zhong, Z. Q., Li, R., Wang, Z., Tian, S. S., Xie, X. F., Wang, Z. Y., Na, W., Wang, Q. S., Pan, Y. C., & Xiao, Q. (2023). Genome-wide scans for selection signatures in indigenous pigs revealed candidate genes relating to heat tolerance. Animal, 17(7), 100882. 11. Zhong, Z., Wang, Z., Xie, X., Tian, S., Wang, F., Wang, Q., Ni, S., Pan, Y., & Xiao, Q. (2023). Evaluation of the Genetic Diversity, Population Structure and Selection Signatures of Three Native Chinese Pig Populations. Animals, 13(12), 2010. 12. Tian, S., Tang, W., Zhong, Z., Wang, Z., Xie, X., Liu, H., Chen, F., Liu, J., Han, Y., Qin, Y., Tan, Z., & Xiao, Q. (2023). Identification of Runs of Homozygosity Islands and Functional Variants in Wenchang Chicken. Animals, 13(10), 1645. 13. Tian, S., Li, W., Zhong, Z., Wang, F., & Xiao, Q. (2023). Genome-wide re-sequencing data reveals the genetic diversity and population structure of Wenchang chicken in China. Animal Genetics, 54(3), 328–337. 地方标准: 屯昌黑猪猪肉品质等级规格,DB 46/T 649—2024,海南省市场监督管理局发布。 |