代表性论文(注:*为通讯作者, §为共同第一作者)
[1] Shen GZ, Lan TY, Deng SY, Wang Y, Xu WT, Xie ZQ*. 2023. Giant panda-focused conservation has limited value in maintaining biodiversity and carbon sequestration. Science of the Total Environment, 880: 163186.
[2] Le HC, Zhao CM, Xu WT, Deng Y, Xie ZQ*. 2023. Anthropogenic activities explained the difference in exotic plants invasion between protected and non-protected areas at a northern subtropics biodiversity hotspot. Journal of Environmental Management, 345: 118939.
[3] Le HC, Zhao CM, Xiong GM, Shen GZ, Xu WT, Deng Y*, Xie ZQ. 2023. Disentangling the role of environmental filtering and biotic resistance on alien invasions in a reservoir area. Ecological Applications, e2835.
[4] Deng Y, Wang XH*, Lu TP, Du HC, Ciais P, Lin X. 2023. Divergent seasonal responses of carbon fluxes to extreme droughts over China. Agricultural and Forest Meteorology, 328: 109253.
[5] Ge JL, Ma BY, Xu WT, Zhao CM, Xie ZQ*. 2022. Temporal shifts in the relative importance of climate and leaf litter traits in driving litter decomposition dynamics in a Chinese transitional mixed forest. Plant and Soil, 477(1-2): 679-692.
[6] Wang Y, Lan TY, Deng SY, Zang ZH, Zhao ZX, Xie ZQ, Xu WT, Shen GZ*. 2022. Forest-cover change rather than climate change determined giant panda's population persistence. Biological Conservation, 265: 109436.
[7] Zhang AY, Xie ZQ*. 2021. C-4 herbs dominate the reservoir flood area of the Three Gorges Reservoir. Science of the Total Environment, 755: 142479.
[8] Zang ZH, Deng SY, Ren GF, Zhao ZX, Li JQ, Xie ZQ, Shen GZ*. 2020. Climate-induced spatial mismatch may intensify giant panda habitat loss and fragmentation. Biological Conservation, 241: 108392.
[9] Ge JL, Xu WT, Liu Q, Tang ZY*, Xie ZQ*. 2020. Patterns and environmental controls of soil organic carbon density in Chinese shrublands. Geoderma, 363: 114161.
[10] Tang ZY§, Xu WT§, Zhou GY§, Bai YF, Li JX, Tang XL, Chen DM, Liu Q, Ma WH, Xiong GM, He HL, He NP, Guo YP, Guo Q, Zhu JL, Han WX, Hu HF, Fang JY*, Xie ZQ*. 2018. Patterns of plant carbon, nitrogen, and phosphorus concentration in relation to productivity in China's terrestrial ecosystems. Proceedings of the National Academy of Sciences of the United States of America, 115(16): 4033-4038.
专著
[1] 徐文婷,谢宗强,张国斌. 灌木造林碳汇项目方法学.中国林业出版社.2022. ISBN: 9787521918335.
[2] Zongqiang Xie, Shen Guozhen. 2021. The Outstanding Universal Value and Conservation of Hubei Shennongjia–The World Natural Heritage Site. Springer/Science Press.
[3] 谢宗强,熊高明. 2020.神农架模式标本植物:图谱·题录. 北京:科学出版社.
[4] 谢宗强,唐志尧,刘庆,徐文婷. 2019. 中国灌丛生态系统碳收支研究. 北京:科学出版社.
[5] 谢宗强, 王杨, 唐志尧, 徐文婷. 2018. 中国常见灌木生物量模型手册. 北京: 科学出版社.
[6] 谢宗强, 申国珍. 2018. 神农架自然遗产的价值及其保护管理. 北京: 科学出版社.
[7] 谢宗强. 2012. 中国生态系统定位观测与研究数据集-森林生态系统卷:湖北神农架站(2000-2008) ,北京: 中国农业出版社.
[8] 谢宗强, 吴金清,熊高明. 2006. 三峡库区珍濒特有植物保护生态学研究,北京:中国水利水电出版社.
获奖及荣誉
[1] 2009年,获得国务院三峡办颁发的先进个人荣誉称号