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2019Ä꣺
[1] Liu Jian-Feng, Jiang Ze-Ping, Marcus Schaub, Arthur Gessler, Ni Yan-Yan, Xiao Wen-Fa and Li Mai-He*. No ontogenetic shifts in C-, N- and P-allocation for two distinct tree species along elevational gradients in the Swiss Alps [J]. Forests, 2019, 10(5):394
[2] Simon K, Liu Jian-Feng, Marco C, et al. Comparative dendroecological characterisation of Ailanthus altissima (Mill.) Swingle in its native and introduced range[J]. Dendrochronologia, 2019: 125608.
[3] Liu X, Chang EM, Liu Jian-Feng*, et al. Complete Chloroplast Genome Sequence and Phylogenetic Analysis of Quercus bawanglingensis Huang, Li et Xing, a Vulnerable Oak Tree in China[J]. Forests, 2019, 10(7): 587.
[4] Shi Xiang, Wang Shufeng, Wang D, Sun Haijing, Chen Yitai, Liu Jianfeng*, Jiang Zeping*. Woody species Rhus chinensis Mill. seedlings tolerance to Pb: Physiological and biochemical response [J]. Journal of Environmental Sciences, 2019, 78, 63-73.
[5] Ermei Chang, Jin Zhang, Xiamei Yao, Shuo Tang, Xiulian Zhao, Nan Deng, Shengqing Shi, Jianfeng Liu and Zeping Jiang. De novo Characterization of the Platycladus orientalis Transcriptome and Analysis of Photosynthesis-Related Genes during Aging[J]. Forests, 2019, 10(5): 393.
[6] Äßåûåû,ФÎÄ·¢,Áõ½¨·æ*,ÕÅÓñæÃ,ºú¾ü. ±±ÃÀÇǰغͱ±ÃÀÏã°ØÓ×ÃçÒ¶»Ó·¢ÐԳɷֵıȽÏÑо¿. ÁÖÒµ¿ÆÑ§, 2019, 55(3): 22-35.
[7] »ÆÔ¾Äþ,Äßåûåû,Áõ½¨·æ*,ÁÖÓÀ±ê,ÕÅÓñæÃ,Ò¦Äþ,½Ôóƽ. ÄÏÒÆºó²»Í¬ÖÖԴ˨ƤèÝÓ×Ãç¹âºÏÉúÀíÐÔ×´µÄ±È½Ï. ÁÖÒµ¿ÆÑ§Ñо¿,2019,32(5):51-57.
[8] ÕÅÓñæÃ,ÍõС·Æ,Äßåûåû,Áõ½¨·æ*,½Ôóƽ. ±±¾©Æ½¹ÈµØÇø´ÎÉúÁÖ˨ƤèÝÖ¦Ò¶»Ó·¢ÐÔÎïÖÊ×é·Ö·ÖÎö¼°¶Ô»úеËðÉ˵ÄÏìÓ¦.Ö²ÎïÑо¿, 2019, 39 (1): 35-44.
[9] Jian-Feng Liu & Ze-Ping Jiang. Re-evaluating determinants on leaf herbivory of woody plants at global scale based on machine learning algorithm.Oral report, The XXV IUFRO Congress , Curitiba, Brazil,2019-9.
2018Ä꣺
[1] Jian-Feng Liu, Yun-Peng Deng, Xiao-Fei Wang, Yan-Yan Ni, Qi Wang,Wen-Fa Xiao, Jing-Pin Lei, Ze-Ping Jiang and Mai-He Li.The Concentration of Non-structural Carbohydrates, N, and P in Quercus variabilis Does Not Decline Toward Its Northernmost Distribution Range Along a 1500 km Transect in China[J].Frontiers in Plant Science,2018,9:1444
[2] Wen-Qiang Gao, Jian-Feng Liu*, Ze-Min Xue, Yu-Ting Zhang, Zhong-Hai Gao, Yan-Yan Ni,Xiao-Fei Wang£¬Ze-Ping Jiang.Geographical patterns and drivers of growth dynamics of Quercus variabilis[J].Forest Ecology and Management,2018,429:256-266
[3] Jian-Feng Liu, Feng-Feng Kang, Ai-Hua Yu , Wen-Juan Yang ,Er-Mei Chang, Ze-Ping Jiang.Responses of foliar carbohydrates and nutrient status of two distinctive cypress species to shading and nitrogen addition[J].Global Ecology and Conservation,2018,16:e00452
[4] Wang Qi#, Liu Jianfeng#, Chen Zhao, Li Fangbai*, Yu Huanyun. A causation-based method developed for an integrated risk assessment of heavy metals in soil [J]. Science of the Total Environment, 2018, 642:1396¨C1405
[5] Chang Ermei, Deng Nan, Jin Zhang, Liu Jianfeng, Chen Lanzhen, Zhao Xiulian, M. Abbas, Jiang Zeping*, Shi Shengqing*.Proteome-level analysis of metabolism- and stress-related proteins during seed dormancy and germination in Gnetum parvifolium.Journal of agricultural and food chemistry£¬2018£¬66£¨11£©£º3019-3029
[6] Áõ½¨·æ, ÕÅÓñæÃ,Äßåûåû,»ÆÔ¾Äþ,½Ôóƽ*.˨ƤèÝҶƬ¦Ä13£ÃºÍ¦Ä15£Î µÄγÏòÇ÷ÊÆ¼°ÆäÓ°ÏìÒò×Ó.Ó¦ÓÃÉú̬ѧ±¨£¬2018£¬29£¨5£©£º1373-1380
[7] Äßåûåû,ÕÅÓñæÃ,Áõ½¨·æ*,µÈ.ѰØÊô5ÖÖÖ²ÎïҶƬ»Ó·¢ÓͳɷַÖÎö[J].ÄϾ©ÁÖÒµ´óѧѧ±¨(×ÔÈ»¿ÆÑ§°æ),2018,42(6):179-185.
2017Ä꣺
[1] Jian-Feng Liu, Matthias Arend, Wen-Juan Yang, Marcus Schaub, Yan-Yan Ni,Arthur Gessler, Ze-Ping Jiang, Andreas Rigling & Mai-He Li*.Effects of drought on leaf carbon source and growth of European beech are modulated by soil type[J]. Scientific Reports,2017,7:42462.
[2] Wenqiang Gao,Yanyan Ni, Zemin Xue, Xiaofei Wang, Fengfeng Kang, Jun Hu, Zhonghai Gao,Zeping Jiang & Jianfeng Liu*.Population structure and regeneration dynamics of Quercus variabilis along latitudinal and longitudinal gradients[J]. Ecosphere, 2017, 8(3): e01737,doi:10.1002/ecs1002.1737.
[3] Lan Qian, Liu Jianfeng, Shi Shengqing, Deng Nan, Jiang Zeping & Chang Ermei. Anatomy, Microstructure and Endogenous Hormone Changes in Gnetum parvifolium (Warb.) C. Y. Cheng during Anthesis. Journal of Systematics and Evolution[J]. 2017, doi:10.1111/jse.12263
[4] Yuqiong Liu, Qingyun Du,Qi Wang, Huanyun Yu, Jianfeng Liu, Yu Tian, Chunying Chang, Jing Lei. Causal inference between bioavailability of heavy metals and environmental factors in a large-scale region. Environmental Pollution[J]. 2017, doi:10.1016/j.envpol.2017.03.019
[5] Äßåûåû£¬³£¶þ÷£¬Áõ½¨·æ*£¬½Ôóƽ. ²»Í¬Ê÷Áä²à°Ø½ÓËë¹âºÏÉúÀíµÄ±È½ÏÑо¿. Î÷±±ÁÖѧԺѧ±¨£¬2017£¬32£¨1£©£º19-24
[6] ¸ßÎÄÇ¿,Äßåûåû,Áõ½¨·æ*,ÍõС·Æ,ѦÔóÃô,½Ôóƽ, ºÎ¹ØË³.²»Í¬µØÀíÌݶÈÉÏ˨ƤèÝÖÖȺ½á¹¹¼°Æä¿Õ¼ä¸ñ¾Ö.Ó¦ÓÃÉú̬ѧ±¨£¬2017£¬28£¨2£©£º375-381
[7] Äßåûåû, ºú¾ü, Áõ½¨·æ*, ÕÅÓñæÃ, ÍõС·Æ, ½Ôóƽ. µªÁ×Ìí¼Ó¶Ô˨Ƥèݲ»Í¬µØÀíÖÖÔ´Ó×ÃçζÈÄÍÐÔµÄÓ°Ïì. Ó¦ÓÃÉú̬ѧ±¨£¬2017£¬28£¨4£©:1061-1068
[8] Äßåûåû, ÑîÎľê,Áõ½¨·æ*, ½Ôóƽ.ѰØÊôÖ²ÎïµÄºËÐÍ·ÖÎö.ÁÖÒµ¿ÆÑ§Ñо¿£¬2017£¬30 (2) :189-193
[9] Äßåûåû, ºú¾ü, Áõ½¨·æ*.²»Í¬µØÀíÖÖԴ˨ƤèÝÓ×ÃçÉú³¤ÓëÎïÖÊ·ÖÅäµÄ±ä»¯Ç÷ÊÆ. Î÷±±Ö²Îïѧ±¨£¬2017£¬37 (3) :534-540
2016Ä꣺
[1] Xiao-Fei Wang, Jian-Feng Liu*, Wen-Qiang Gao, Yun-Peng Deng, Yan-Yan Ni, Yi-Hua Xiao, Feng-Feng Kang, Qi Wang, Jing-Pin Lei and Ze-Ping Jiang. Defense pattern of Chinese cork oak across latitudinal gradients: influences of ontogeny, herbivory, climate and soil nutrients[J]. Scientific Reports, 2016, 6: 27269.
[2] Hagedorn Frank, Joseph Jobin,Peter Martina,Luster J?rg, Pritsch Karin, Geppert Uwe, Kerner Rene, Molinier Virginie, Egli Simon, Schaub Marcus, Liu Jian-Feng, Li Maihe, Sever Krunoslav, Weiler Markus, Siegwolf Rolf T. W., Gessler Arthur, Arend Matthias*. Recovery of trees from drought depends on belowground sink control[J]. Nature Plants,2016, 2: 16111
[3] Xiang Shi, Yi-Tai Chen, Shu-Feng Wang, Hong-Wei Pan, Hai-Jing Sun, Cai-Xia Liu, Jian-Feng Liu & Ze-Ping Jiang*. Phytoremediation potential of transplanted bareroot seedlings of trees for lead/zinc and copper mine tailings[J]. International Journal of Phytoremediation, 2016, doi: 10.1080/15226514.2016.1189399
[4] Wang Qi, Ren Qingfu, Liu Jianfeng. Identification and apportionment of the drivers of land use change regional scale: recursive partitioning-based stochastic model application[J]. Agriculture, Ecosystems and Environment, 2016, 217: 99-110
[5] ÍõС·Æ£¬Äßåûåû£¬¸ßÎÄÇ¿£¬Áõ½¨·æ*£¬½Ôóƽ. γÏò²»Í¬µØÀíÖÖȺ˨ƤèݳæÊ³ÌØÕ÷¼°ÆäÓëÆøÏóÒò×ӵĹØÏµ[J]. Ö²ÎïÑо¿, 2016, 36(3):461-468
[6] ¸ßÎÄÇ¿£¬ÍõС·Æ£¬½Ô󯽣¬Áõ½¨·æ*. Æøºò±ä»¯ÏÂ˨ƤèÝDZÔÚµØÀí·Ö²¼¸ñ¾Ö¼°ÆäÖ÷µ¼ÆøºòÒò×Ó[J].Éú̬ѧ±¨£¬2016£¬34(14): 1-10..
[7] ÍõС·Æ£¬¸ßÎÄÇ¿£¬Áõ½¨·æ*£¬Äßåûåû£¬Çüè´£¬ÕÔÐãÁ«£¬ÑîÎľ꣬µËÔÆÅô£¬½Ôóƽ. ²»Í¬Éú¾³¶Ô˨ƤèÝÓ×Ãç¹âºÏÉúÀíÌØÐÔµÄÓ°Ïì[J]£®Éú̬ѧ±¨£¬2016, 36(24): 1-9
2015Ä꣺
[1] Xue L, Ren H, Li S, Gao M, Shi S, Chang E, Wei Y, Yao X, Jiang Z, Liu Jianfeng*. 2015. Comparative proteomic analysis in Miscanthus sinensis exposed to antimony stress[J]. Environmental Pollution 201(0): 150-160.
[2] Zhao X, Zheng L, Xia X, Yin W*, Lei J, Shi S, Shi X, Li H, Li Q, Wei Y,Chang EM,Jiang ZP, Liu Jianfeng*. 2015. Responses and acclimation of Chinese cork oak (Quercus variabilis Bl.) to metal stress: the inducible antimony tolerance in oak trees[J]. Environmental Science and Pollution Research: 1-11.
[3] Xiang Shi, Haijing Sun, Hongwei Pan, Yitai Chen, Zeping Jiang, Jianfeng Liu, Shufeng Wang*. Growth and efficiency of nutrient removal by Salix jiangsuensis J172 for phytoremediation of urban wastewater[J]. Environmental Science and Pollution Research, 2015: 1-9.
[4] ÍõС·Æ£¬¸ßÎÄÇ¿£¬Áõ½¨·æ*£¬Äßåûåû£¬½Ôóƽ. Ö²Îï·ÀÓù²ßÂÔ¼°Æä»·¾³Çý¶¯»úÖÆ[J]. Éú̬ѧÔÓÖ¾£¬2015£¬34£¨12£©3542-3552
2015ÄêÒÔǰ£º
[1] Xue L#, Liu JF#, Shi S, Wei Y, Chang E, Gao M, Chen L, Jiang Z*. 2013. Uptake of heavy metals by native herbaceous plants in an antimony mine (Hunan, China)[J]. CLEAN ¨C Soil, Air, Water: DOI: 10.1002/clen.201200490.
[2] Zhao X#, Liu JF#, Xia X, Chu J, Wei Y, Shi S, Chang E, Yin W, Jiang Z*. 2013. The evaluation of heavy metal accumulation and application of a comprehensive bio-concentration index for woody species on contaminated sites in Hunan, China[J]. Environmental Science and Pollution Research: 1-10.
[3] Lei J, Xiao W*, Liu JF*, Xiong D, Wang P, Pan L, Jiang Y, Li M-H. 2013. Responses of Nutrients and Mobile Carbohydrates in Quercus variabilis Seedlings to Environmental Variations Using In Situ and Ex Situ Experiments[J]. PLoS One 8(4): e61192.
[4] Liu JF, Shi S, Chang E, Yang W, Jiang Z*. 2013. Genetic Diversity of the Critically Endangered Thuja sutchuenensis Revealed by ISSR Markers and the Implications for Conservation[J]. International journal of molecular sciences 14(7): 14860-14871.
[5] Liu JF, Sun OJ*, Jin HM, Zhou ZY, Han XG. 2011. Application of two remote sensing GPP algorithms at a semiarid grassland site of North China[J]. Journal of Plant Ecology 4(4): 302-312.
[6] Liu JF, Chen SP, Han XG. 2012. Modeling gross primary production of two steppes in Northern China using MODIS time series and climate data[J]. Procedia Environmental Sciences, 2012, 13: 742-754.
[7] Chang EM, Shi SQ, Liu JF, Cheng TL, Xue L, Yang XY, Yang WJ, Lan Q, Jiang ZP*. 2012. Selection of Reference Genes for Quantitative Gene Expression Studies in Platycladus orientalis (Cupressaceae) Using Real-Time PCR[J]. PLoS One 7(3): e33278.
[8] Jin HM, Sun OJ*, Liu JF. 2010. Changes in soil microbial biomass and community structure with addition of contrasting types of plant litter in a semiarid grassland ecosystem[J]. Journal of Plant Ecology 3(3): 209-217.
[9] Liu JF, Jiang ZP, Xiao WF, Lei JP, Guo MC.2011. Response of Fraction of Photosynthetic Active Radiation (FPAR) to forest types, geographical locations and climate variables in China. International Conference on Response of Forests and Adaptation Management to Climate Change.
[10] ѦÁÁ£¬¸ßêÔ£¬Ê·Ê¤Ç࣬κԶ£¬½Ô󯽣¬Áõ½¨·æ*. ËÄÖÖ¿¹ÎÛȾľ±¾Ö²Îï¶ÔÌàµÄÉúÀíÏìÓ¦¼°»ýÀÛÌØÕ÷Ñо¿[J]. Éú̬»·¾³Ñ§±¨£¬2014£¬23£¨8£©:1344-1350
[11] ÕÔÐãÁ«, ÏÄÐÂÀò£¬ÒüΰÂ×£¬½Ôóƽ, ФÎÄ·¢£¬Áõ½¨·æ*.²»Í¬ÃçÁäɳµØ°Ø¿¹ºµÉúÀíÌØÐÔ²îÒìÑо¿[J].Î÷±±Ö²Îïѧ±¨£¬2013£¬33(12): 2513-2520
[12] ÑîÎľê, ½Ôóƽ, Áõ½¨·æ*, ¹ùȪˮ.²»Í¬¹â»·¾³ÏÂѰصĹâºÏÈÕ½ø³Ì[J]. ÁÖÒµ¿ÆÑ§Ñо¿,2013, 26(3): 373-378
[13] Áõ½¨·æ£¬ÑîÎľ꣬½Ô󯽣¬¹ùȪˮ£¬½ð½Èº£¬Ñ¦ÁÁ. ÕÚÒñ¶Ô±ôΣֲÎïѰعâºÏ×÷ÓúÍÒ¶ÂÌËØÓ«¹â²ÎÊýµÄÓ°Ïì[J].Éú̬ѧ±¨, 2011, 31(20): 5999-6004
[14] Áõ½¨·æ£¬ÑîÎľ꣬ʷʤÇ࣬¹ùȪˮ£¬½Ôóƽ. ѰØÓë²à°Ø¹âºÏÌØÐÔºÍÒ¶ÂÌËØÓ«¹â²ÎÊýµÄ±È½ÏÑо¿[J].Î÷±±Ö²Îïѧ±¨, 2011, 31(10): 2071-2077
[15] Áõ½¨·æ£¬Ð¤ÎÄ·¢£¬¹ùÃ÷´º£¬Îâ»ÀƼ£¬½Ôóƽ. »ùÓÚ3-PGSÄ£Ð͵ÄÎÒ¹ú½µØÖ²±»NPP¸ñ¾Ö[J].ÁÖÒµ¿ÆÑ§, 2011, 47(5):16-22
[16] Áõ½¨·æ£¬Ð¤ÎÄ·¢£¬Ðܶ¨Åô£¬À×¾²Æ·£¬ÍõÅô³Ì. ²»Í¬Î³¶È˨ƤèÝÓ×ÃçÉúÀíÉúÌ¬ÌØÕ÷µÄ±È½Ï[J].Ö²ÎïÑо¿,2011,31(4):467-471
[17] Áõ½¨·æ£¬Ê·Ê¤Ç࣬½Ôóƽ.¼¸ÖÖÒý½ø°ØÊ÷µÄ¿¹ºµÐÔÆÀ¼Û[J].Î÷±±ÁÖѧԺѧ±¨, 2011, 26(1):13-17
[18] ¹ùÃ÷´º£¬Áõ½¨·æ*.ɼľÈ˹¤ÁÖÁÖ·ÖÉú³¤Ä£ÄâÑо¿[J].¸£½¨ÁÖѧԺѧ±¨,2011,31(1): 65-68
[19] Áõ½¨·æ£¬¿µ·å·å.ɼľDZÔÚÊÊÉúÇø¼°Æä¶ÔÆøºò±ä»¯µÄÏìÓ¦[J].Î÷ÄÏÁÖѧԺѧ±¨£¬2010,30£¨5£©£º22-25
[20] Áõ½¨·æ£¬Ð¤ÎÄ·¢. ±ôΣֲÎïѰØÒÅ´«¶àÑùÐÔµÄRAPD·ÖÎö[J].½Î÷ũҵ´óѧѧ±¨£¬2008£¬30(1)£º68-72.
[21] Áõ½¨·æ£¬½Ô󯽣¬Ð¤ÎÄ·¢£¬Íõ½¨ÐÞ.¼«¶È±ôΣֲÎ¡ªÑ°ØÖÖȺ¿Õ¼ä¸ñ¾ÖÓ붯̬µÄ³õ²½Ñо¿[J].½Î÷ũҵ´óѧѧ±¨£¬2005£¬27(5)£º708-712.
[22] Áõ½¨·æ£¬Íõ½¨ÐÞ. ±ôΣֲÎïѰØÈºÂäÎïÖÖ¶àÑùÐԵijõ²½Ñо¿[J].ÖØÇìÁÖÒµ¿Æ¼¼£¬2005£¬(2)£º12-16.
[23] Áõ½¨·æ£¬Ð¤ÎÄ·¢£¬½Ô󯽣¬µÈ.¾°¹ÛÆÆË黯¶ÔÉúÎï¶àÑùÐÔµÄÓ°Ïì[J].ÁÖÒµ¿ÆÑ§Ñо¿£¬2005£¬18(2)£º222-226.
[24] Áõ½¨·æ£¬Ð¤ÎÄ·¢£¬¹ùÖ¾»ª£¬½Ô󯽣¬ÁõÕýÓî.ÕäÏ¡±ôΣֲÎ¡ªÑ°ØÖÖȺ½á¹¹Ó붯̬³õ²½Ñо¿[J].½Î÷ũҵ´óѧѧ±¨£¬2004£¬26(3)£º377-380.
[25] Áõ½¨·æ£¬Ð¤ÎÄ·¢.RAPD¼¼ÊõÔÚÕäÏ¡±ôΣֲÎïÒÅ´«¶àÑùÐÔÑо¿ÖеÄÓ¦ÓÃ[J].ÁÖÒµ¿ÆÑ§£¬2004£¬40(3)£º156-161.