当前位置: X-MOL首页全球导师 国内导师 › 叶志鸿

个人简介

2004.1-现在中山大学生命科学学院,生态学,教授、博导 2000-2003香港浸会大学,生态学,博士后/访问研究员 1998-2000美国加州大学Berkeley分校,生态学,博士后 1995-1998香港浸会大学,生态学,博士后 1992-1995英国Sheffield大学,生态学,博士 1991-1992英国Nottingham大学,教师培训获教育文凭: 1987-1990 广州中山大学,生态学,硕士 1978.3-1982.1 广州中山大学,植物学,本科

研究领域

研究方向为污染生态学。具体包括: 1)减少水稻对毒性金属元素在米粒中的积累及相关机理; 2) 湿地植物重金属耐性和相关机理; 3) 重金属污染水体和土壤的生物修复;4)重金属超富集植物。

近期论文

查看导师新发文章 (温馨提示:请注意重名现象,建议点开原文通过作者单位确认)

Ye ZH, Baker AJM, Wong MH, Willis AJ. 1997. Zinc, lead and cadmium tolerance, uptake and accumulation in populations of Typha latifolia L. New Phytologist, 136: 469-480. Ye ZH, Baker AJM, Wong MH, Willis AJ. 1997. Copper and nickel uptake, accumulation and tolerance in Typha latifolia with and without iron plaque on the root surface. New Phytologist, 136: 481-488. Ye ZH, Wong JWC, Wong MH, Lan CY, Baker AJM. 1999. Lime and pig manure as ameliorants for the revegetation on lead/zinc mine tailings: a greenhouse study. Bioresource Technology, 69: 35-45. Ye ZH, Yang ZY, Chan YSG, Wong MH. 2001. Growth response of Sesbania rostrata and S. cannabina grown on pure and sludge-amended lead-zinc mine. Environment International, 26: 449-455. Ye ZH, Whiting S, Lin ZQ, Lytle CM, Qian JH, Terry N. 2001. Removal and distribution of iron, manganese, cobalt, and nickel with a Pennsylvania constructed wetland treating coal combustion by-product leachate. Journal of Environment Quality 30: 1464-1473. Ye ZH, Shu WS, Zhang ZQ, Lan CY, Wong MH. 2002 Evaluation of major constraints on revegetation of lead/zinc mine tailings using bioassay technique. Chemosphere 47: 1103-1111. Wang HB, Wong MH, Lan CY, Baker AJM, Qin YR, Shu WS, Chen GZ, Ye ZH*. 2007. Uptake and accumulation of arsenic by 11 Pteris taxa from southern China. Environmental Pollution 145:225-233. Liu Y, Wang HB, Wong MH, Ye ZH*. 2009. The role of arsenate reductase (AR) and superoxide dismutase (SOD) in As accumulation in four Pteris species. Environment International 35: 491-495. Mei XQ, Ye ZH*, Wong MH*. 2009. The relationship of root porosity and radial oxygen loss on arsenic tolerance and uptake in rice grains and straw. Environmental Pollution 157: 2550-2557. Wang MY, Chen AK, Wong MH, Qiu RL*, Chen H, Ye ZH*. 2011. Cadmium accumulation in and tolerance of rice (Oryza sativa L.) varieties with different rates of radial oxygen loss. Environmental Pollution 159: 1730-1736. Wu C, Ye ZH*, Shu WS, Zhu YG, Wong MH*. 2011. Arsenic accumulation and speciation in rice are affected by root aeration and variation of genotypes. Journal of Experimental Botany 62: 2889-2898. Cheng H, Chen DT, Tam NFY, Chen GZ, Li SY, Ye ZH*. 2012. Interactions among Fe2+, S2- and Zn2+ tolerance, root anatomy and radial oxygen loss in mangrove plants. Journal of Experimental Botany 63: 2619-2630. Cheng H, Wang MY, Wong MH, Ye ZH*. 2014. Does radial oxygen loss and iron plaque formation on roots alter Cd and Pb uptake and distribution in rice plant tissues? Plant and Soil 375:137-148. Wang X, Ye ZH*, Li B, Huang LN, Meng Mei, Shi JB*, Jiang GB. 2014. Growing rice aerobically markedly decreases mercury accumulation by reducing both Hg bioavailability and the production of MeHg. Environmental Science&Technology 48: 1878-1885. Wang X, NFY Tam, Fu S, Ametkhan A, Ouyang Y, Ye ZH*. 2014. Selenium addition alters mercury uptake, bioavailability in the rhizosphere and root anatomy of rice (Oryza sativa). Annals of Botany 114:271-278. Huang L, Li B, Tam NFY, Wang X, Ye ZH*. 2018. Effects of environment and genotype on mercury and methylmercury accumulation in rice (Oryza sativa L.). Plant and Soil 427: 269–280.

推荐链接
down
wechat
bug