师资队伍
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杨楠  (生态学系)

基本信息

职称:副教授

职务:

邮箱:nyang@njfu.edu.cn

电话:

个人简介:

杨楠(Yang, Nan),1987年生,河北承德人,博士,副教授,硕士生导师,南京林业大学海外高层次引进人才

研究领域:树木生理生态学(Tree ecophysiology)、土壤微生物生态学(Soil microbial ecology)

主要研究:

(1)根际微生物(菌根真菌)在碳、氮循环过程的作用和机制;

(2)不同胁迫环境下根际微生物(菌根真菌)多样性和群落结构响应及调控机制;

(3)土壤微生物多样性的生物地理分布。

主讲课程

本科生课程:《植物生态学》、《森林生态学》、《Forest Ecology》

研究生课程:《生态修复技术与工程》、《林业生态与环境保护》、《植物生态学与生态环境》、《Soil Ecology》

教育背景:

2012/09-2016/05,德国哥廷根大学,森林植物与树木生理系,博士Ph.D,导师:Andrea Polle

2009/09-2012/06,西北农林科技大学,环境科学系,硕士M.Sc,导师:王进鑫

2005/09-2009/07,西北农林科技大学,环境科学系,学士B.Sc,导师:黄懿梅

个人网页:

ORCiD   Clarivate  ResearchGate


学术兼职:

European Journal of Soil Biology 编委


科研项目:

十四五国家重点研发计划青年科学家项目,2022YFD2201400,水氮高效吸收利用调控杨树纸浆材和楸树珍贵材品质的作用机制,2023.01-2027.12,子任务负责人

国家自然科学基金青年基金项目,41907029,氮沉降背景下杨树人工林外生菌根真菌调控土壤氮淋溶的机制,2020.1-2022.12,主持

江苏省自然科学基金青年基金项目,BK20180767,杨树人工林外生菌根真菌群落结构对氮沉降的响应及其调控土壤氮淋溶的机制,2018.07-2021.06,主持

南京留学人员科技创新项目,菌根技术在土壤修复中的应用与产业化,2019,主持

江苏省“六大人才高峰”创新人才团队项目,TD-XYDXX-006,人工林生产与生态效益优化经营的监测与应用,2019.1-2021.12


发布论文:

第一及通讯作者论著:

Nan Yang#, Cheng Wan, Daoyuan Ren, Yan Zhang, Stefano Chelli, Zhengxue Zhu, Silvia Traversari, Giovanni Emiliani, Lingfeng Mao, 2026. Three ectomycorrhizal fungal inoculum modifies the growth performance and tolerance of Quercus nuttallii seedlings under salt stress. Forest Ecology and Management 601: 123353. DOI: 10.1016/j.foreco.2025.123353

Nan Yang#, Yuan Cai, Cheng Wan, Furong Zhou*, Yue Wang*. 2025. Effects of lead stress on seed germination and seedling growth of ten afforestation trees in arid regions. Forest Science 71(4):569-587. DOI: 10.1007/s44391-025-00019-7

Baohan Song#, Tianyi Wang#Cheng Wan, Yuan Cai, Lingfeng Mao, Zhiwei Ge*, Nan Yang*2024. Diversity patterns and drivers of soil bacterial and fungal communities in a muddy coastal wetland of China. Journal of Fungi 10: 770.

Jiani Hua#, Jiangbao Zhang#, Baohan Song, Tianyi Wang, Jingji Li, Nan Yang*, Lingfeng Mao. 2024. Diverse responses of fungal functional groups to desertification in Pinus densata forest soils of Chinese Tibetan Plateau. Journal of Forestry Research 35: 95. DOI:10.1007/s11676-024-01751-5

Yang N#, Zhang J, Hua J, Song B, Wang T, Xing W, Wang G, Mao L*, Ruan H. 2024. Differentiation of fungal trophic guilds to long-term nitrogen addition in a poplar plantation. Forest Ecology and Management 555: 121699. DOI: 10.1016/j.foreco.2024.121699

Zhang Y#, Li X#, Zhang J, Hua J, Li J, Liu D, Bhople P, Ruan H, Yang N*. 2023. Desertification induced changes in soil bacterial and fungal diversity and community structure in a dry-hot valley forest. Applied Soil Ecology 189: 104953.  DOI: 10.1016/j.apsoil.2023.104953

Liu B#, Wang Y, Zhang H, Zhou Y, Zhang C, Yang N*, Wang W*. 2023. The variations of microbial diversity and community structure along different stream orders in Wuyi mountains. Microbial Ecology 86:2330–2343. DOI: 10.1007/s00248-023-02240-8

Yang N#, Wang Y, Liu B, Zhang J, Hua J, Liu D, Bhople P, Zhang Y, Zhang H, Zhang C, Ruan H, Wang W*. 2023. Exploration of Soil Microbial Diversity and Community Structure along Mid-Subtropical Elevation Gradients in Southeast China. Forests 14: 769. DOI: 10.3390/f14040769

Yang N#, Hua J#, Zhang J, Liu D, Bhople P, Li X, Zhang Y, Ruan H, Xing W, Mao L*. 2022. Soil nutrients and plant diversity affect ectomycorrhizal fungal community structure and functional traits across three subalpine coniferous forests. Frontiers in Microbiology 13: 1016610. DOI: 10.3389/fmicb.2022.1016610 (6.064/Q1, Top期刊)

Yang N#, Zhang Y, Li J, Li X, Ruan H, Bhople P, Keiblinger K, Mao L*, Liu D*. 2022. Interaction among soil nutrients, plant diversity and hypogeal fungal trophic guild modifies root-associated fungal diversity in coniferous forests of Chinese Southern Himalayas. Plant and Soil 481: 395–408. Doi: 10.1007/s11104-022-05646-4 (4.993/Q1, Top期刊)

Yang N#, Li X, Liu D, Zhang Y, Chen Y, Wang B, Hua J, Zhang J, Peng S, Ge Z, Li JJ, Ruan HH, Mao LF*. 2022. Diversity patterns and drivers of soil bacterial and fungal communities along elevational gradients in the Southern Himalayas, China. Applied Soil Ecology 178: 104563. Doi: 10.1016/j.apsoil.2022.104563(5.509/Q2)

Yang N#, Wang B, Liu D, Wang X, Li X, Zhang Y, Xu Y, Peng S, Ge Z, Mao L*, Ruan HH *, Rodica P. 2021. Long-term nitrogen deposition alters ectomycorrhizal community composition and function in a poplar plantation. Journal of Fungi 7: 791. Doi: 10.3390/jof7100791(5.724/Q1)

Yu XY#, Zhu YJ, Wang B, Liu D, Bai H, Jin L, Wang BT, Ruan HH, Mao LF, Jin FJ, Yang N*. 2021. Effects of nitrogen addition on rhizospheric soil microbial communities of poplar plantations at different ages. Forest Ecology and Management 494: 119328. Doi: 10.1016/j.foreco.2021.119328(4.384/Q1, Top期刊)

Yang N#, Butenschoen O, Rana R, Köhler L, Hertel D, Leuschner C, Scheu S, Polle A, Pena R*. 2019. Leaf litter species identity influences biochemical composition of ectomycorrhizal fungi. Mycorrhiza 29: 85–96. Doi: 10.1007/s00572-018-0876-2.(3.856/Q1)

Yang N. 2016. Performance of forest trees and mycorrhizas in response to varying nutrients. Goettingen, Cuvillier Verlag.

Yang N#, Zavišić A, Pena R, Polle A*. 2016. Phenology, photosynthesis, and phosphorus in European beech (Fagus sylvatica L.) in two forest soils with contrasting P contents. Journal of Plant Nutrition and Soil Science 179: 151–158. Doi: 10.1002/jpln.201500539.(2.566/Q2)

Yang N#, Schützenmeister K, Grubert D, Jungkunst HF, Gansert D, Scheu S, Polle A, Pena R*. 2015. Impacts of earthworms on nitrogen acquisition from leaf litter by arbuscular mycorrhizal ash and ectomycorrhizal beech trees. Environmental and Experimental Botany 120: 1–7. Doi: 10.1016/j.envexpbot.2015.06.013.(6.028/Q1)

Yang N#, Zhou F, Wang J*. 2016. Eco-toxicological effects of two kinds of lead compounds on forest tree seed in alkaline soil. Environmental Monitoring and Assessment 188: 201.Doi: 10.1007/s10661-016-5198-2.(3.307/Q3)

其他论著:

胡家欣, 彭思利, 张栋, 葛之葳, 杨楠. 氮添加对不同林龄杨树人工林丛枝菌根真菌群落的影响. 生态环境学报, 2020, 29(9):1768–1775.

Koehler J#, Yang N, Pena R, Raghavan V, Polle A, Meier IC*. 2018. Ectomycorrhizal fungal diversity increases phosphorus uptake efficiency of European beech. New Phytologist 220(4):1200-1210. Doi: 10.1111/nph.15208.(10.323/Q1, Top期刊)

Zavišić A#, Yang N, Marhan S, Kandeler E, Polle A*. 2018. Forest Soil Phosphorus Resources and Fertilization Affect Ectomycorrhizal Community Composition, Beech P Uptake Efficiency, and Photosynthesis. Frontiers in Plant Science 9(463):1-13. Doi: 10.3389/fpls.2018.00463.(6.627/Q1, Top期刊)

Zavišić A#, Nassal P, Yang N, Spohn M, Pena R, Kandeler E, Polle A*. 2016. Phosphorus availabilities in beech (Fagus sylvatica L.) forests impose habitat filtering on ectomycorrhizal communities and impact tree nutrition. Soil Biology and Biochemistry. 98:127–137. Doi: 10.1016/j.soilbio.2016.04.006.(8.546/Q1, Top期刊)

Zhou F#, Wang J*, Yang N. 2015. Growth responses, antioxidant enzyme activities and lead accumulation of Sophora japonica and Platycladus orientalis seedlings under Pb and water stress. Plant Growth Regulation 75: 383–389. Doi: 10.1007/s10725-014-9927-7(3.242/Q2)


科研成果:

教学成果: