人才队伍
  • 王汝振研究员

    学历:博士研究生

    学科:土壤学;生态学

    电话:024-83970603

    邮箱:ruzhenwang@iae.ac.cn

    地址:沈阳市沈河区文化路72号

    邮编:110016

简历介绍

2017.10-至今 中国科学院沈阳应用生态研究所工作,副研究员 

2019.09-2020.08 澳大利亚悉尼大学(The University of Sydney)生命与环境学院,访问学者 

2015.07-2017.09 中国科学院沈阳应用生态研究所工作,助理研究员 

2012.05-2013.08美国普渡大学(Purdue University)地球与大气科学学院联合培养 

2010.09-2015.06 中国科学院沈阳应用生态研究所学习(提前攻博),获得生态学博士学位 

2006.09-2010.06 曲阜师范大学生命科学学院学习,获得学士学位 

研究领域

草原碳及养分关键循环过程 

草原植物根系氮素再循环过程 

社会任职

获奖及荣誉

承担科研项目情况

国家自然科学基金面上项目,草甸草原土壤酸化对植物根系氮素再循环的影响,起止时间:2021-2024 

中国科学院青年创新促进会人才培养项目,起止时间:2019-2022 

院战略性先导专项专题:莫尔道嘎森林保护区关键树种及林下植被多样性保护技术示范,起止时间:2019-2023 

国家自然科学基金面上项目,大气沉降氮在典型草甸草原生态系统中的分配及存留机制,起止时间:2018-2021 

国家重点研发计划子课题:人工牧草和饲用作物高效种植技术,起止时间:2016-2020 

发表论文情况

第一及通讯作者论文 

1. Wang RZ, Bicharanloo B, Shirvan MB, Cavagnaro TR, Jiang Y*, Keitel C, Dijkstra FA. 2021. A novel 13C pulse-labelling method to quantify the contribution of rhizodeposits to soil respiration in a grassland exposed to drought and nitrogen addition. New Phytologist 230: 857-866 

2. Wang RZ, Pe?uelas J, Li TP, Liu HY, Wu H, Zhang YG, Sardans J, Jiang Y*. 2021. Natural abundance of 13C and 15N provides evidence for plant-soil carbon and nitrogen dynamics in a N-fertilized meadow. Ecology e03348. 

3. Wang RZ#*, Liu HY#, Sardans J, Feng X, Xu ZW, Pe?uelas J. 2021. Interacting effects of urea and water addition on soil mineral-bound phosphorus dynamics in semi-arid grasslands with different land use history. European Journal of Soil Science 72: 946-962. 

4. Wang RZ#, Wu H#, Sardans J, Li TP, Liu HY, Pe?uelas J, Dijkstra FA, Jiang Y*.2020. Carbon storage and plant-soil linkages among soil aggregates as affected by nitrogen enrichment and mowing management in a meadow grassland. Plant and Soil 457: 407-420. 

5. Wang RZ#,*, Cao YZ#, Wang HYDijkstra FA, Jiang JL, Zhao RN, Ma W, Li TP, Dorodnikov M, Wang ZW, Sardans J, Pe?uelas J. 2019. Exogenous P compounds differentially interacted with N availability to regulate enzymatic activities in a meadow steppe, European Journal of Soil Science, 71: 667-680. 

6. Wang RZ, Dijkstra FA, Liu HY, Yin JF, Wang X, Feng X, Xu ZW, Jiang Y*. 2019. Response of soil carbon to nitrogen and water addition differs between labile and recalcitrant fractions: evidence from multi–year data and different soil depths in a semi-arid steppe. Catena 172: 857-865. 

7. Feng X, Wang RZ*, Yu Q, Cao YZ, Zhang YG, Yang LJ*, Dijkstra FA, Jiang Y. 2019. Decoupling of plant and soil metal nutrients as affected by nitrogen addition in a meadow steppe. Plant and Soil 443:337-351. 

8. Liu HY, Wang RZ*, Wang HY, Cao YZ, Dijkstra FA, Shi Z, Cai JP, Wang ZW, Zou HT*, Jiang Y. 2019. Exogenous phosphorus compounds interact with nitrogen availability to regulate dynamics of soil inorganic phosphorus fractions in a meadow steppe. Biogeosciences 16: 4293-4306. 

9. Li TP#, Liu HY#, Wang RZ*, Lü XT, Yang JJ, Zhang YH, He P, Wang ZR, Han XG, Jiang Y*. 2019. Frequency and intensity of nitrogen addition alter soil inorganic sulfur fractions but the effects vary with mowing management in a temperate steppe. Biogeosciences 16: 2891-2904. 

10. Wang RZ, Zhang YH, He P, Yin JF,  Yang JJ, Liu HY, Cai JP, Shi Z, Feng X, Dijkstra FA, Han XG, Jiang Y*. 2018. Intensity and frequency of nitrogen addition alter soil chemical properties depending on mowing management in a temperate steppe. Journal of Environmental Management 224: 77-86. 

11. Wang RZ#, Wang X#, Jiang Y*, Cerdà A, Yin J, Liu HY, Feng X, Shi Z, Dijkstra FA, Li MH. 2018. Soil properties determine the elevational patterns of base cations and micronutrients in plant-soil system up to the upper limits of trees and shrubs. Biogeosciences 15: 1763-1774. 

12. Wang RZ, Dorodnikov M, Dijkstra F, Yang S, Xu ZW, Li H, Jiang Y*. 2017. Sensitivities to nitrogen and water addition vary among microbial groups within soil aggregates in a semi-arid grassland. Biology and Fertility of Soils 53: 129-140. 

13. Wang RZ, Dungait JAJ, Buss HL, Yang S, Zhang YG, Xu ZW, Jiang Y*. 2017. Base cations and micronutrients in soil aggregates as affected by enhanced nitrogen and water inputs in a semi-arid steppe grassland. Science of the Total Environment 575:564-572. 

14. Wang RZ, Lü LY, Creamer CA, Liu HY, Feng X, Yu GQ, Han XG, Jiang Y*. 2017. Alteration of soil carbon and nitrogen pools and enzyme activities as affected by increased soil coarseness, Biogeosciences14: 2155-2166. 

15. Wang RZ, Gibson SD, Berry TD, Jiang Y, Bird JA, Filley TR. 2017. Photooxidation of pyrogenic organic matter reduces the reactive, labile C pool and the apparent soil oxidative microbial oxidative enzyme response. Geoderma 293: 10-18. 

16. Wang RZ, Zhang YL, Cerdà A, Cao MM, Zhang YY, Yin JF, Jiang Y, Chen LJ. 2017. Changes in soil chemical properties as affected by pyrogenic organic matter amendment with different intensity and frequency. Geoderma 289:161-168. 

17. Wang RZ, Creamer CA, Wang X, He P. Xu ZW, Jiang Y. 2016. The effects of a 9-year nitrogen and water addition on soil aggregate phosphorus and sulfur availability in a semi-arid grassland. Ecological Indicators 61: 806-814. 

18. Yin JF, Wang RZ*, Liu HY, Feng X, Xu ZW, Jiang Y. 2016. Nitrogen addition alters elemental stoichiometry within soil aggregates in a temperate steppe. Solid Earth, 7: 1565-1575. 

19. Lü LY, Wang RZ*, Liu HY, Yin JF, Wang ZW, Zhao Y, Yu GQ, Han XG, Jiang Y. 2016. Effect of soil coarseness on soil base cations and available micronutrients in a semi-arid sandy grassland, Solid Earth, 7: 549-556. 

20. Wang RZ, Dungait JAJ, Creamer CA, Cai JP, Li B, Xu ZW, Zhang YG, Ma YN, Jiang Y. 2015. Carbon and nitrogen dynamics in soil aggregates under long-term N and water addition in a temperate steppe, Soil Science Society of America Journal 79: 527-535. 

21. Wang RZ, Dorodnikov M, Yang S, Zhang YY, Filley TR, Turco RF, Zhang YG, Xu ZW, Li H, Jiang Y. 2015. Responses of enzymatic activities within soil aggregates to 9-year nitrogen and water addition in a semi-arid grassland. Soil Biology & Biochemistry 81: 159-167. 

22. Wang RZ, Filley TR, Xu ZW, Wang X, Li MH, Zhang YG, Luo WT, Jiang Y. 2014. Coupled response of soil carbon and nitrogen pools and enzyme activities to nitrogen and water addition in a semiarid grassland of Inner Mongolia. Plant and Soil 381: 323-336. 

23. 曹彦卓, 王汝振*, 张玉革, 李慧, 吕晓涛, 姜勇. 2019. 氮沉降对草地土壤及团聚体元素有效性的影响. 生态学杂志 38: 2531-2539. 

合作发表论文: 

1. Niu GX#, Hasi M#, Wang RZ, Wang YL, Geng QQ, Hu SY, Xu XH, Yang JJ, Wang CH, Han XG, Huang JH. 2021. Soil microbial community responses to long-term nitrogen addition at different soil depths in a typical steppe. Applied Soil Ecology (Accepted) 

2. Zhang AL, Olatunji OA, Tariq A, Li TP, Wang RZ, Jiang Y*. 2021. Sulfur deposition changed the community structure of soil nematodes by affecting omnivores-predators. Science of the Total Environment 771: 144912. 

3. Niu GX, Wang RZ, Hasi MQ, Wang YL, Geng QQ, Wang CH, Jiang Y, Huang JH*. 2021. Availability of soil base cations and micronutrients along soil profile after 13-year nitrogen and water addition in a semi-arid grassland. Biogeochemistry 152: 223-236.  

4.  Hou SL#, H?ttenschwiler S#, Yang JJ#, Sistla S, Wei HW, Zhang ZW, Hu YY, Wang RZ, Cui SY, Lü XT*, Han XG. 2020. Increasing rates of long-term nitrogen deposition consistently increased litter decomposition in a semi-arid grassland. New Phytologist 229: 296-307.  

5. Wang ZR, Yang S, Wang RZ, Xu ZW, Feng K, Feng X, Li TP, Liu HY, Ma RA, Li H*, Jiang Y. 2020. Compositional and functional responses of soil microbial communities to long-term nitrogen and phosphorus additions in a calcareous grassland. Pedobiologia 78: 150612. 

6. Yang S, Yao F, Ye J, Fang S, Wang ZR, Wang RZ, Zhang QL, Ma RO, Wang XG, Jiang Y, Dorodnikov M, Li H*, Zou HT*. 2019. Latitudinal pattern of soil lignin/cellulose content and the activity of their degrading enzymes across a temperate forest ecosystem. Ecological Indicators 102: 557-568. 

7. Xu ZW, Ren HY, Li MH, Brunner I, Yin JF, Liu HY, Kong DL, Lü XT, Sun T, Cai JP, Wang RZ, Zhang YY, He P, Han XG, Wan SQ, Jiang Y. 2017 Experimentally increased water and nitrogen affect root production and vertical allocation of an old-field grassland. Plant and Soil 412: 369-380. 

8. Ren HY, Xu ZW, Isbell F, Huang JH, Han XG, Wan SQ, Chen SP, Wang RZ, Zeng DH, Jiang Y, Fang YT. 2017. Exacerbated nitrogen limitation ends transient stimulation of grassland productivity by increased precipitation. Ecological Monographs 87: 457-469. 

9. Wang X, Xu ZW, Lü XT, Wang RZ, Cai JP, Yang S, Li M-H, Jiang Y. 2017. Responses of litter decomposition and nutrient release rate to water and nitrogen addition differed among three plant species dominated in a semi-arid grassland. Plant and Soil 478: 241-253. 

10. Wang X, Xu ZW, Yan CF, Luo WT, Wang RZ, Han XG, Li MH, Jiang Y. 2017. Responses and sensitivity of N, P and mobile carbonhydrates of dominant species to increased water, N and P availablity in semi-arid grasslands in northern China. Journal of Plant Ecology 10: 486-496. 

11. Cai JP, Luo WT, Liu HY, Feng X, Zhang YY, Wang RZ, Xu ZW, Zhang YG, Jiang Y. 2017. Precipitation-mediated responses of soil acid buffering capacity to long-term nitrogen addition in a semi-arid grassland. Atmospheric Environment 170: 312-318.  

12. Cai JP, Weiner J, Wang RZ, Luo WT, Zhang YY, Liu HY, Xu ZW, Li H, Zhang YG, Jiang Y. 2017. Effects of nitrogen and water addition on trace element stoichiometry in five grassland species. Journal of Plant Research 130: 659-668. 

13. Yang S, Xu ZW, Wang RZ, Zhang YY, Yao F, Zhang YG, Turco RF, Jiang Y, Zou HT, Li H. 2017. Variations in soil microbial community composition and enzymatic activities in response to increased N deposition and precipitation in Inner Mongolian grassland. Applied Soil Ecology 119: 275-285.  

14. Li H, Xu ZW, Yang S, Li XB, Top E, Wang RZ, Zhang YG, Cai JP, Yao F, Han XG, Jiang Y. 2016. Responses of soil bacterial communities to nitrogen deposition and precipitation increment are closely linked with aboveground community variation. Microbial Ecology 71: 974-989. 

15. Gibson C, Berry TD, Wang RZ, Spencer JA, Johnston CT, Jiang Y, Bird JA, Filley TR. 2016. Weathering of pyrogenic organic matter induces fungal oxidative enzyme response in single culture inoculation experiments. Organic Geochemistry 92: 32-41.  

16. Zhang YY, Zhang SQ, Wang RZ, Cai JP, Zhang YG, Li H, Huang SM, Jiang Y. 2016. Impacts of fertilization practices on pH and the pH buffering capacity of calcareous soil. Soil Science and Plant Nutrition 2: 432-439. 

17. Li B, Wang YH, Jiang Y, Li GC, Cui JH, Wang Y, Zhang H, Wang SC, Xu S, Wang RZ. 2016. The accumulation and health risk of heavy metals in vegetables around a zinc smelter in northeastern China. Environmental Science and Pollution Research 23: 25114-25126. 

18. Zhang YG, Yang S, Fu MM, Cai JP, Zhang YY, Wang RZ, Xu ZW, Bai YF, Jiang Y. 2015. Sheep manure application increases soil exchangeable base cations in a semi-arid steppe. Journal of Arid Land 7: 361-369.  

19. Luo WT, Nelson PN, Li MH, Cai JP, Zhang YY, Zhang YG, Shan Y, Wang RZ, Han XG, Jiang Y. 2015. Contrasting pH buffering patterns in neutral-alkaline soils along a 3600 km transect in northern China. Biogeosciences 12: 13215-13240. 

20. Xu ZW, Ren HY, Cai JP, Wang RZ, He P, Li MH, Lewis BJ, Han XG, Jiang Y. 2015. Antithetical effects of nitrogen and water availability on community similarity of semiarid grasslands: Evidence from a nine-year manipulation experiment. Plant and Soil 397: 357-369. 

21. Xu ZW, Ren HY, Cai JP, Wang RZ, Li MH, Han XG*, Lewis BJ, Jiang Y. 2014. Effects of experimentally enhanced precipitation and nitrogen on resistance, recovery and resilience of plant cover in a semi-arid grassland following a natural drought. Oecologia 176: 1187-1197. 

22. 姜勇*, 李天鹏, 冯雪, 王汝振, 张玉革. 2019. 外源硫输入对草地土壤-植物系统养分有效性的影响. 生态学杂志 38: 1192-1201 

23. 姜勇*, 徐柱文, 王汝振, 李慧, 张玉革. 2019. 长期施肥和增水对半干旱草地土壤性质和植物性状的影响. 应用生态学报,30: 2470-2480. 

24. 王志瑞,杨山,马锐骜,王汝振,冯雪,李慧*,姜勇. 2019. 内蒙古草甸草原土壤理化性质和微生物学特性对刈割和氮添加的响应. 应用生态学报 30: 3010-3018. 

25. 刘贺永, 何 鹏, 蔡江平, 王汝振, 殷进飞, 杨 山, 张玉革*. 2016. 模拟氮沉降对内蒙古典型草地土壤pH和电导率的影响. 土壤通报 47: 85-91. 

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