近年發(fā)表主要論文
1. Hu XK, Liu LL, Zhu B, Du EZ, Hu XY, Li P, Zhou Z, Ji CJ, Zhu JL, Shen HH, Fang JY. 2016. Asynchronous responses of soil carbon dioxide, nitrous oxide emissions and net nitrogen mineralization to enhanced fine root input. Soil Biology & Biochemistry, 92: 67-78.
2. Ding JZ, Chen LY, Zhang BB, Liu L, Yang GB, Fang K, Chen YL, Li F, Kou D, Ji CJ, Luo YQ, and Yang YH*, 2016. Linking temperature sensitivity of soil CO2 release to substrate, environmental and microbial properties across alpine ecosystems. Global Biogeochemical Cycles, 30: 1310-1323.
3. Ding JZ, Li F, Yang GB, Chen LY, Zhang BB, Liu L, Fang K, Qin SQ, Chen YL, Peng YF, Ji CJ, He HL, Smith P, and Yang YH*, 2016. The permafrost carbon inventory on the Tibetan Plateau: a new evaluation using deep sediment cores. Global Change Biology, 22: 2688-2701.
4. Zhu JL, Shi Y, Fang LQ, Liu XE Ji CJ*. 2015, Patterns and determinants of wood physical properties across major tree species in China. SCIENTIA SINICA Vitae, 58:602-612.
5. Yang YH*, Ji CJ, Chen LY, Ding JZ; Cheng XL; Robinson, D. 2015. Edaphic rather than climatic controls over 13C enrichment between soil and vegetation in alpine grasslands on the Tibetan Plateau. Functional Ecology, doi: 10.1111/1365-2435.12393.
6. Zhu JX, Hu XY, Yao H, Liu GH, Ji CJ, Fang JY*. 2015, A significant carbon sink in temperate forests in Beijing: based on 20-year field measurements in three stands. Sci China Life Sci, 58, 1135-1141.
7. Yang YH*, Li P, Ding JZ, Zhao X, Ma WH, Ji CJ, Fang JY. 2014. Increased topsoil carbon stock across China’s forests. Global Change Biology, doi: 10.1111/gcb.12536.
8. Yang YH*, Fang JY, Ji CJ, Datta A, Li P, Ma WH, Mohammat A, Shen HH, Hu HF, Knapp BO, Smith P. 2014. Stoichiometric shifts in surface soils over broad geographical scales: evidence from China’s grasslands. Global Ecology and Biogeography, doi: 10.1111/geb.12175.
9. Yang X. Tang ZY*, Ji CJ, Liu HY, Ma WH, Mohhamot A,Shi ZY, Sun W, Wang T, Wang XP, Wu X, Yu SL, Yue M & Zheng CY. 2014. Scaling of nitrogen and phosphorus across plant organs in shrubland biomes across Northern China. Sci. Rep. 4, 5448; DOI:10.1038/srep05448.
10. Yang CH, Li DY, Liu X, Ji CJ, Hao LL, Zhao XF, Li XB, Chen CY, Cheng ZK and Zhu LH*. 2014. OsMYB103L, an R2R3-MYB transcription factor, influences leaf rolling and mechanical strength in rice (Oryza sativa L.) BMC Plant Biology. 14,doi: 10. 1186/ 1471-2229-14-158
11. Li LP, Han WX, Thevs N, Jia XH, Ji CJ, Jin DM, He P, Schmitt AO, Tommaso GC, Zerbe S*. 2014. A Comparison of the Functional Traits of Common Reed (Phragmites australis) in Northern China: Aquatic vs. Terrestrial Ecotypes. PLoS ONE 9(2): e89063. doi:10.1371/ journal.pone. 0089063
12. Ji CJ, Yang YH*, Han WX Smith P, smith J. 2014. Climatic and Edaphic controls on soil Ph in Alpine Grasslands on the Tibetan Plateau: a Quantitative Analysis. Pedosphere, 24: 39-44.
13. Yang XX, Yang Y, Ji CJ, Feng T, Shi Y, Lin L, Ma JJ, He JS*. 2014. Large-scale patterns of stomatal traits in Tibetan and Inner Mongolian grassland species. Basic and Applied Ecology. 15: 122-132.
14. Li LP, Zerbe S, Han WX, Thevs N, Li WP, H P, Schmitt AO, Li YN, Ji CJ. 2014. Nitrogen and phosphorus stoichiometry of common reed (Phragmites australis) and its relationship to nutrient availability in northern China. Aquatic Botany, 112: 84-90. doi: 10.1016/ j.aquabot2013.08.002.
15. Yang CH, Li DY, Mao DH, Liu X, Ji CJ, Li XB, Zhao XF, Chen CY, Zhu LH*.2013. Over expression of microRNA319 impacts leaf morphogenesis and leads to enhanced cold tolerance in rice (Oryza sativa L.). Plant, Cell & Environment, 36: 2207-2218.
16. Yang YH*, Ji CJ, Robinson D, Zhu B, Fang HJ, Shen HH, Fang JY. 2013. Vegetation and soil 15N natural abundance in alpine grasslands on the Tibetan Plateau: patterns and implications. Ecosystem, 16: 1013-1024.
17. Yang YH, Fang JY*, Ji CJ, Ma WH, Mohammat A, Wang SF, Wang SP, Datta A, Robinson D, Smith P. 2012. Widespread decreases in topsoil inorganic carbon stocks across China's grasslands during 1980s-2000s. Global Change Biology, 18:3672–3680, doi: 10.1111/gcb. 12025
18. Ma JJ, Ji CJ*, Han M, Zhang TF, Yan XD, Hu D, Zeng H, He JS. 2012. Comparative analyses of leaf anatomy of dicotyledonous species in Tibetan and Inner Mongolian grasslands. Sci China Life Sci, 55: 68-79. doi:10.1007/s11427-012-4268-0.
19. Yang YH, Ji CJ, Ma WH, Wang SF, Wang SP, Han WX, Mohammat A, Robinson D, Smith P. 2012. Significant soil acidification across northern China’s grasslands during 1980s-2000s. Global Change Biology, 18: 2292–2300, doi: 10.1111/j.1365-2486.2012.02694.x
20. Yang YH, Fang JY, Ji CJ, Ma WH, Su SS, and Tang ZY, 2010. Soil inorganic carbon stock in the Tibetan alpine grasslands. Global Biogeochemical Cycles, doi: 10.1029/2010 GB003804.
21. Yang YH, Fang JY, Fay PA, Bell JE, and Ji CJ, 2010. Rain use efficiency across a precipitation gradient on the Tibetan Plateau. Geophysical Research Letters, 37, L15702, doi:10.1029/2010GL043920.
22. Yang YH, Fang JY, Guo DL, Ji CJ, and Ma W, 2010. Vertical patterns of soil carbon, nitrogen and carbon: nitrogen stoichiometry in Tibetan grasslands. Biogeosciences Discuss, 7: 1-24.
23. Yang YH, FangYJ, Smith P, Tang YH, Chen AP, Ji CJ, Hu, HF, Rao S, Tan K and He JS. 2009, Changes in topsoil carbon stock in the Tibetan grasslands between the 1980s and 2004. Global Change Biology, doi: 10.1111/j.1365-2486.2009.01924.x
24. Yang YH, Fang JY*, Pan YD, and Ji CJ. 2009, Aboveground biomass in Tibetan grasslands. Journal of Arid Environments, 73: 91-95.
25. Yang YH, Fang JY*, Ji CJ, and Han WX. 2009, Above- and belowground biomass allocation in Tibetan grasslands. Journal of Vegetation Science, 20: 177-184.
26. Yang YH, Fang JY*, Tang YH, He JS, Ji CJ, Zheng CY, and Zhu B. 2008, Storage, patterns, and controls of soil organic carbon in the Tibetan grasslands. Global Change Biology, 14: 1592-1599.
27. Ye BP, Ji CJ, Yang LL, Yang ZH, Cao ZX*, 2000. Studies on a gynoecious-species ACC synthase gene in different sexual phenotypes of Cucumber genome. Acta Botanica Sinica, 42: 164-168.
28. Ji CJ, Yang X, Li ZL*, 1999. Morphological studies on megaspore formation in Ginkgo biloba. Acta Botanica Sinica, 41: 219-221.
29. Ji CJ, Yang X, Li ZL*, 1999. Ultrastructural studies on megaspore formation in Ginkgo biloba. Acta Botanica Sinica, 41: 1323-1326.
30. Zhang ZM, Ji CJ, Yang X, Li ZL*, 1999. Cell divisions during microsporogenesis and development of the male gametophyte in Ginkgo biloba. Acta Botanica Sinica, 41: 479-483.
胡選萍, 吉成均*, 安麗華. 2016, 青藏高原草地主要單子葉植物的葉表面特征. 生態(tài)學報, 36:DIO:10.5846/stxb201503300612.
胡選萍,吉成均*, 安麗華. 2015, 青藏高原草地雙子葉植物葉片的氣孔特征研究. 西北植物學報, 35: 1356-1366.
姚輝, 胡雪洋, 朱江玲, 朱劍霄, 吉成均, 方精云*. 2015, 北京東靈山3種溫帶森林土壤呼吸及其20年的變化. 植物生態(tài)學報, 39 : 849–856.
朱劍霄, 胡雪洋, 姚輝, 劉國華, 吉成均, 方精云*. 2015, 北京地區(qū)溫帶林是一個顯著的碳匯: 基于3種林分20年的觀測. 中國科學: 生命科學, 45: 1132-1139.
朱江玲, 石岳, 方樂祺, 劉杏娥, 吉成均*. 2015, 中國主要樹種木材物理力學屬性的地理格局及其環(huán)境控制.中國科學: 生命科學, 45:56-67.
方精云*, 朱江玲, 吉成均, 唐志堯, 賀金生. 2013, 從生態(tài)學觀點看生態(tài)文明建設. 中國科學院院刊, 28: 182-188.
李全發(fā), 王寶娟, 安麗華, 吉成均*. 2013, 青藏高原草地植物葉解剖特征研究. 生態(tài)學報, 33: 2062-2070.
馬建靜, 吉成均*, 韓梅, 張婷芳, 閆雪東, 胡東, 曾輝, 賀金生. 2012, 青藏高原高寒草地和內蒙古高原溫帶草地主要雙子葉植物葉片解剖特征的比較研究. 中國科學: 生命科學, 42: 158-172.
沈澤昊*, 吉成均. 2010, 景觀遺傳學原理及其在生境片斷化遺傳效應研究中的應用. 生態(tài)學報, 30: 5066-5076.
劉睿, 孫偉, 巢牡香, 吉成均*, 葉波平*. 2009, 鹽脅迫下木欖幼苗葉片的解剖學變化。 熱帶亞熱帶植物學報,17: 169-175.