贾夏,女,1975年1月生,陕西省府谷县人;理学博士,教授,博士生导师。中国生态学会(ESC)和微生物学会(CSM)会员。
工作经历
2020.1-至今,长安大学土地工程学院,教授
2014.11-2020.1,长安大学环境科学与工程学院,教授
2008.11-2014.11,长安大学环境科学与工程学院,副教授
2012.6-2012.10,加拿大Saint Marry’s University,访问学者
2005.07-2008.11,长安大学环境科学与工程学院,讲师
研究领域与方向
主要从事重金属污染的环境过程及生态效应、土壤微生物生态、微生物在土体重构过程中的作用机理等方面的教学与研究工作。
主持教学与科研项目
1.国家自然科学基金面上项目:AMF对大气CO2升高与土壤Cd污染耦合的响应及对树木幼苗调节机制 (31870582),2019年1月-2022年12月,主持;
2.国家自然科学基金面上项目:不同种植物根际土壤微生态系统对大 气CO2升高和土壤Pb、 Cd污染耦合作用的响应机制(31270665),2013年1月-2016年12月,主持;
3.陕西省自然科学基金面上项目:大气CO2升高与土壤镉污染耦合对植物根际土壤硝化作用影响机制(2017JM3009),2017年1月 –2018年12月,主持;
4.中央高校基本科研业务费长安大学卓越人才培养计划卓越青年科研基金Ⅰ类:大气CO2升高与土壤Cd/Pb污染耦合对根际土壤硝化作用影响机制(310829173501),2017年1月 –2019年12月,主持;
5.国土资源部退化及未利用土地整治工程重点实验室开放基金:土壤微生物对土地整治的响应机理,2017年1月 –2018年12月,主持;
6.陕西省博士后基金一等:大气CO2升高与土壤Cd污染对树木幼苗根际土壤微生物耦合作用机制,2013年1月 –2015年12月,主持;
7.中央高校基本科研业务费高新技术项目:大气升温与土壤镉污染联合对植物根际土壤硝化作用影响机制(310829152019),2015年1月 –2016年12月,主持。
教学与科研成果:
以第一和通讯作者发表学术论文43篇,SCI/EI检索20篇,其中SCI检索文章13篇,其中中科院1区和2区SCI文章10篇,Top期刊8篇,影响因子合计56.165,获陕西省高等学校科学技术奖二等奖1项。主要代表作如下:
1.Xia Jia (Corresponding author), et al.Soil microbial community in the rhizosphere of Robinia pseudoacacia L. seedlings exposed to elevated air temperature and cadmium-contaminated soils for 4 years [J].Science of the Total Environment, 2019, 650: 2355 – 2363 (SCI).
2.Xia Jia (Corresponding author),et al. Three years of exposure to lead and elevated CO2 affects lead accumulation and leaf defenses in Robinia pseudoacacia L. seedlings [J]. Journal of Hazardous Materials, 2018, 349: 215 –223 (SCI).
3.Xia Jia (Corresponding author),et al. Glomalin-related soil protein in the rhizosphere of Robina pseudoacacia L. seedlings under higher air temperature combined with Cd-contaminated soil [J]. European Journal of Soil Science, 2018, DOI: 10.1111/ejss.12671 (SCI).
4.Xia Jia (Corresponding author),et al. Leaf defense system of Robinia pseudoacacia L. seedlings exposed to 3 years of atmoepheric CO2 and Cd-contaminated soils [J]. Science of the Total Environment, 2017, 605-606: 48 –57 (SCI).
5.Xia Jia (Corresponding author),et al. Elevated CO2 increases glomalin-related soil protein (GRSP) in the rhizosphere of Robinia pseudoacacia L. seedlings in Pb- and Cd-contaminated soils [J]. Environmental Pollution, 2016, 218: 349 –357 (SCI).
6.Xia Jia (Corresponding author),et al. Elevated CO2 affects secondary metabolites in Robinia pseudoacacia L. seedlings in Cd- and Pb-contaminated soils [J]. Chemosphere, 2016, 160: 199 –207 (SCI).
7.Y.H. Zhao, X. Jia (Corresponding author), et al. Growth under elevated air temperature alters secondary metabolites in Robinia pseudoacacia L. seedlings in Cd-and Pb-contaminated soils [J]. Science of the Total Environment, 2016, 565: 586 –594 (SCI).
8.Shuping Huang, Xia Jia (Corresponding author),et al. Elevated CO2 benefits the soil microenvironment in the rhizosphere of Robinia pseudoacacia L. seedlings in Cd- and Pb-contaminated soils [J]. Chemosphere, 2017, 168: 606 –616 (SCI).
9.Xia Jia (Corresponding author),et al. Concentrations of secondary metabolites in tissues and root exudates of wheat seedlings changed under elevated atmospheric CO2 and cadmium-contaminated soils [J]. Environmental and Experimental Botany, 2014, 107, 134 –143 (SCI).
10.Shuping Huang, Xia Jia (Corresponding author),et al. Response of Robinia pseudoacacia L. rhizosphere microenvironment to Cd and Pb contamination and elevated temperature [J]. Applied Soil Ecology, 2016, 108: 269 –277 (SCI).
11.Xia Jia (Corresponding author), et al.Elevated atmospheric CO2 affected photosynthetic products in wheat seedlings and biological activity in rhizosphere soil under cadmium stress [J]. Environmental Science and Pollution Research, 2016, 23: 514 – 526 (SCI).
12.Xia Jia (Corresponding author),et al. Elevated temperature altered photosynthetic products in wheat seedlings and organic compounds and biological activity in rhizopshere soil under cadmium stress [J]. Scientific Reports, 2015, 5, 14426; doi: 10.1038/srep14426 (SCI).
13.Xia Jia(Corresponding author), et al. Needles resistance in Pinus sylvestris L. var. mongolica Litv. Exposed to elevated air temperature and cadmium-contaminated soils for 3 years [J]. Water, Air, & Soil Pollution, 2018, 229: 188, https://doi.org/10.1007/s11270 -018-3846-6 (SCI).
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