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陈展

时间:2022年05月17日 15:37 来源:  作者:

 


陈展

学位:博士

职称:副研究员

电子信箱:chenzhan0508@caf.ac.cn

办公电话:010-62889540

 

教育经历:

2005/09-2008/06,中国科学院生态环境研究中心,博士

2002/09-2005/06,中国农业大学资源环境学院,硕士

1998/09-2002/06,湖南农业大学食品科技学院,学士

工作经历:

2008-至今:中国林业科学研究院森林生态环境与自然保护研究所

2016-2017:加利福尼亚大学河滨分校,访问学者

研究方向:森林生态学,污染生态学,土壤微生物生态学

主持项目:

1)        国家自然基金面上项目“亚热带酸雨区不同林型凋落物对土壤酸化的缓冲机理研究(31971630)”、

2)        国家自然基金面上项目"亚热带典型针叶和阔叶树种细根动态和周转对大气臭氧胁迫的响应研究(31370606)

3)        国家自然基金青年基金外生菌根对酸沉降胁迫下马尾松林的调节作用及其机理研究(30901149)”

4)        中国林科院院基金重点项目“典型污染土壤关键生态过程及管理模式研究(CAFYBB2018SZ004)”

5)        中国林科院森林生态环境与保护研究所所基金项目“外生菌根提高马尾松幼苗酸雨抗性机理的研究(CAFRIFEEP201402)”

6)        中国林科院森林生态环境与保护研究所所基金项目“酸雨和外生菌根对马尾松林土壤碳库的影响过程研究(CAFYBB2018SZ004)”。

代表性论文:

1)      Chen, Z.; Wang, Y.; Chen, R.; Ni, X.; Cao, J. Effects of Forest Type on Nutrient Fluxes in Throughfall, Stemflow, and Litter Leachate within Acid-Polluted Locations in Southwest China. Int. J. Environ. Res. Public Health 2022, 19, 2810.

2)      Chen, Z., Maltz, M. R., Russell, R., Ye, S., Cao, J., & Shang, H. Highly elevated CO2 and fertilization with nitrogen stimulates significant Schima Superba growth and mediates soil microbial community composition along an oligotroph-copiotroph spectrum. Journal of Soils and Sediments, 2022, 1-17.

3)      王轶浩,陈展*,周建岗,张媛媛. 重庆酸雨区马尾松纯林改造对土壤酸化特征及团聚体稳定性的影响. 生态学报,2021,41(13): 5184-5194.

4)      Chen, Z.; Maltz, M.R.; Zhang, Y.; O’Brien, B.J.; Neff, M.; Wang, Y.; Cao, J. Plantations of Cinnamomum camphora (Linn) Presl with distinct soil bacterial communities mitigate soil acidity within polluted locations in southwest China. Forest, 2021, 12, 657. https://doi.org/10.3390/f12060657

5)      Chen, Z.; Ye, S.; Cao, J.; Shang, H. Nitrogen Fertilization Modified the Responses of Schima superba Seedlings to Elevated CO2 in Subtropical China. Plants, 2021, 10, 383. https://doi.org/10.3390/plants10020383

6)      Chen, Z., Maltz, M.R., Cao, J., Yu, H., Shang, H., Aronson, E., 2019. Elevated O3 alters soil bacterial and fungal communities and the dynamics of carbon and nitrogen. Sci. Total Environ. 677, 272–280. https://doi.org/10.1016/j.scitotenv.2019.04.310

7)      Maltz, M.R., Chen, Z.*, Cao, J., Arogyaswamy, K., Shulman, H., Aronson, E.L., 2019. Inoculation with Pisolithus tinctorius may ameliorate acid rain impacts on soil microbial communities associated with Pinus massoniana seedlings. Fungal Ecol. 40, 50–61. https://doi.org/10.1016/j.funeco.2018.11.011 (共同第一作者,通讯作者)

8)      叶思源,陈展*,曹吉鑫,尚鹤. 模拟酸雨和接种外生菌根真菌对马尾松土壤养分、土壤团聚体及有机碳组分的影响. 生态学杂志,201938 4):1141-1148.

9)      Li Y, Chen Z, He JZ, et al. Ectomycorrhizal fungi inoculation alleviates simulated acid rain effects on soil ammonia oxidizers and denitrifiers in Masson pine forest. Environmental Microbiology, 2018. doi: 10.1111/1462-2920.14457 (共同第一作者).

10)  Chen Z, Shang H*, Cao J, et al. Effects of Elevated Ozone Levels on Photosynthesis, Biomass and Non-structural Carbohydrates of Phoebe bournei and Phoebe zhennan in Subtropical China. Frontiers in Plant Science, 2018 9: 1764. doi: 10.3389/fpls.2018.01764 .

11) Yu H*, Chen Z*, Shang H, Jixin Cao. Physiological and biochemical responses of Machilus ichangensis Rehd. et Wils and Taxus chinensis (Pilger) Rehd. to elevated O3 in subtropical China[J]. Environmental Science & Pollution Research, 2017, 24(21):17418-17427. * 共同第一作者)

12) 于浩, 陈展*, 尚鹤,. 野外模拟酸雨胁迫下接种外生菌根真菌对马尾松幼苗的缓解作用[J]. 生态学报, 2017, 37(16):5418-5427.(通讯作者)

13) 陈展,于浩,尚鹤,曹吉鑫. 臭氧胁迫对树木根系影响研究进展.林业科学研究,2016293):455-463.

14) Chen Z, Wang XK, Shang H. Structure and function of rhizosphere and non-rhizosphere soil microbial community respond differently to elevated ozone in field-planted wheat. Journal of Environmental Sciences, 2015, 32: 126-134.

15) Chen Z, Shang H , Cao J , et al. Effects of Ambient Ozone Concentrations on Contents of Nonstructural Carbohydrates in Phoebe bournei and Pinus massoniana Seedlings in Subtropical China. Water, Air, & Soil Pollution, 2015, 226(9):310.

16)  Wang L , Chen Z* , Shang H , et al. Impact of simulated acid rain on soil microbial community function in Masson pine seedlings[J]. Electronic Journal of Biotechnology, 2014, 17(5):199-203. (通讯作者).

17) 陈展,尚鹤. 接种外生菌根菌对模拟酸雨胁迫下马尾松营养元素的影响.林业科学,2014,501):156-163.

18) 王琳,陈展*,尚鹤. 外生菌根真菌在酸雨胁迫下对马尾松土壤微生物代谢功能的影响. 林业科学,201450(7):99-104(通讯作者).

19) 陈展,王效科,尚鹤. 利用13C同位素示踪方法测定O3对水稻C固定和迁移的影响. 生态学杂志,2014,337):1983-1988.

20) 陈展,王效科,尚鹤. 13CO2示踪臭氧胁迫对水稻土壤微生物的影响. 环境科学,2014,3510):3911-3917.

21) 陈展,王琳,尚鹤. 接种彩色豆马勃对模拟酸沉降下马尾松幼苗生物量的影响. 生态学报,20133320):6526-6533.

22) 张慰陈展*,邓仕槐,尚鹤. 外生菌根缓解植物酸雨胁迫的机理研究进展. 生态学杂志,2012311):200-206(通讯作者).

23) Chen Z, Wang XK, Yao FF, et al. Elevated ozone changed soil microbial community in a rice paddy. Soil Science Society of America Journal, 2010, 74(3), 829-837.

24) Chen Z , Wang X , Feng Z , et al. Impact of Elevated O3 on Soil Microbial Community Function Under Wheat Crop. Water Air and Soil Pollution, 2009, 198(1-4):189-198.

25)  Chen Z , Wang X , Feng Z , et al. Effects of elevated ozone on growth and yield of field-grown rice in Yangtze River Delta, China. Journal of Environmental Sciences, 2008, 20(3):320-325. Journal of Environmental Science, 2008, 20 (3), 320-325.