研究領域
環境生物學和污染生態學研究,農田重金屬污染防治。
教育背景
2010.6 中山大學博士學位
2005.6 湘潭大學學士學位
工作簡歷
2010-至今 湖南工學院 講師、副教授、教授
2014.4-2015.4 美國加州大學伯克利分校 訪問學者
主要貢獻
主持科研項目
[1] 2019年湖南省
自然科學基金項目:甘薯品種間鎘積累差異的生物化學與分子機制
[2] 2017年
湖南省教育廳優秀青年項目:鉛對不同水稻品種積累鎘的影響及機理研究
[3] 2015年湖南省自然科學基金項目:低鎘蕹菜品種莖葉低量積累鎘的生理機制研究
[4] 2012年
國家自然科學基金青年項目:甘薯鎘污染預防品種篩選及其塊根低量積累鎘的生理機制研究
發表論文
[1]Baifei Huang, Hongwen Dai, Wenjing Zhou, Lijing Peng, Meizhen Li, Renjie Wan, and Wenting He. Characteristics of Cd accumulation and distribution in two sweet potato cultivars[J]. International Journal of Phytoremediation, 2019, 21(4): 391–398
[2] Baifei Huang, Junliang Xin, Hongwen Dai, Wenjing Zhou. Effects of interaction between cadmium (Cd) and selenium (Se) on grain yield and Cd and Se accumulation in a hybrid rice (Oryza sativa) system[J]. Journal of Agricultural & Food Chemistry, 2017. 65(43):9537-9546
[3]Junliang Xin, Hongwen Dai, Baifei Huang*. Assessing the roles of roots and shoots in the accumulation of cadmium in two sweet potato cultivars using split-root and reciprocal grafting systems. Plant and Soil 2017, 412 (1-2): 413-424
[4] Junliang Xin, Baifei Huang*, Hongwen Dai, Yangxiu Mu. Characterization of root morphology and root-derived low molecular weight organic acids in two sweet potato cultivars exposed to cadmium. Archives of Agronomy and Soil Science 2017, 63(5): 723-734
[5] Junliang Xin, Baifei Huang*, Hongwen Dai. Difference in root-to-shoot Cd translocation and characterization of Cd accumulation during fruit development in twoCapsicum annuum cultivars. Plant and Soil 2015, 394 (1-2): 287-300
[6] Baifei Huang, Junliang Xin, Hongwen Dai, Wenjing Zhou, Lijing Peng. Identification of low-Cd cultivars of sweet potato (Ipomoea batatas (L.) Lam.) after growing on Cd-contaminated soil: uptake and partitioning to the edible roots.Environmental Science and Pollution Research 2015, 22 (15): 11813-11821
[7]Junliang Xin, Baifei Huang*, Hongwen Dai, Wenjing Zhou, Yumei Yi, Lijing Peng. Roles of rhizosphere and root-derived organic acids in Cd accumulation by two hot pepper cultivars. Environmental Science and Pollution Research 2015, 22(8): 6254-6261
[8] Baifei Huang, Junliang Xin, Hongwen Dai, Aiqun Liu, Wenjing Zhou, Yumei Yi, Kebing Liao. Root morphological responses of three hot pepper cultivars to Cd exposure and their correlations with Cd accumulation. Environmental Science and Pollution Research 2015, 22(2): 1151-1159
[9] Junliang Xin, Baifei Huang*, Hongwen Dai, Aiqun Liu, Wenjing Zhou, Kebing Liao. Characterization of cadmium uptake, translocation and distribution in young seedlings of two hot pepper cultivars that differ in fruit cadmium concentration. Environmental Science and Pollution Research 2014, 21(12): 7449-7456
[10] Baifei Huang, Junliang Xin, Hongwen Dai, Aiqun Liu, Wenjing Zhou, Kebing Liao. Translocation analysis and safety assessment in two water spinach cultivars with distinctive shoot Cd and Pb concentrations. Environmental Science and Pollution Research 2014, 21: 11565-11571
[11]Junliang Xin, Baifei Huang*. Subcellular distribution and chemical forms of cadmium in two hot pepper cultivars differing in cadmium accumulation. Journal of Agricultural & Food Chemistry 2014, 62(2): 508–515
[12] Junliang Xin, Baifei Huang*, Aiqun Liu, Wenjing Zhou, Kebing Liao. Identification of hot pepper cultivars containing low Cd levels after growing on contaminated soil: uptake and redistribution to the edible plant parts. Plant and Soil 2013, 373(1-2): 415–425
[13]Junliang Xin, Baifei Huang, Zhongyi Yang, Jiangang Yuan, Yadong Zhang. Comparison of cadmium subcellular distribution in different organs of two water spinach (Ipomoea aquatica Forsk.) cultivars. Plant and Soil 2013, 372: 431–444
[14]Junliang Xin, Baifei Huang, Junzhi Yang, Zhongyi Yang, Jiangang Yuan, Yangxiu Mu. Role of roots in cadmium accumulation of two water spinach cultivars: reciprocal grafting and histochemical experiments. Plant and Soil 2013, 366: 425–432
[15]Junliang Xin, Baifei Huang*, Aiqun Liu, Kebing Liao. Effects of planting patterns on shoot Cd and Pb concentrations in two water spinach cultivars. Fresenius Environmental Bulletin 2012, 21(3): 593–598
[16]Junliang Xin, Baifei Huang, Junzhi Yang, Zhongyi Yang, Jiangang Yuan, Yangxiu Mu. Breeding for pollution-safe cultivar of water spinach to minimize cadmium accumulation and maximize yield. Fresenius Environmental Bulletin 2012, 21(7): 1833–1840
[17]Baifei Huang, Junliang Xin, Aiqun Liu, Kebing Liao. Uptake and translocation of Cd and Pb in four water spinach cultivars differing in shoot Cd and Pb concentrations.Polish Journal of Environmental Studies2012, 21(5):1211–1215
[18]Junliang Xin,Baifei Huang, Zhongyi Yang, Jiangang Yuan, Hongwen Dai, Qiu Qiu. Responses of different water spinach cultivars and their hybrid to Cd, Pb and Cd–Pb exposures. Journal of Hazardous Materials 2010, 175: 468–476
[19]Baifei Huang, Junliang Xin, Zhongyi Yang, Yihui Zhou, Jiangang Yuan, Yulian Gong. Suppression subtractive hybridization (SSH)-based method for estimating Cd-induced differences in gene expression at cultivar level and identification of genes induced by Cd in two water spinach cultivars. Journal of Agricultural & Food Chemistry 2009, 57: 8950–8962
[20] Quanlin Dai, Baifei Huang, Zhongyi Yang, Jiangang Yuan, Junzhi Yang. Identification of cadmium-induced genes in maize seedlings by suppression subtractive hybridization[J]. Frontiers of Environmental ence & Engineering in China, 2010, 4(4):449-458