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刘永俊

发布时间:2022-02-25 浏览次数:540 字体大小T|T

刘永俊,教授,博士生导师

联系方式

电子邮件: yjliu@lzu.edu.cn

学习经历

1997.9-2002.6:  兰州大学生命科学学院生物学专业;  学士
2004.9-2007.6:  兰州大学生命科学学院植物学专业;  硕士
2009.9-2012.6:  兰州大学生命科学学院植物学专业;  博士
2017.9-2018.9:  美国北亚利桑那大学;  访问学者

工作经历

2002.7-2012.3:  西北民族大学生命科学与工程学院
2012.7-2013.4:  兰州大学生命科学学院;  讲师
2013.5-2016.4:  兰州大学生命科学学院;  副教授
2016.5-至今:   兰州大学生命科学学院;  教授

研究方向

(一)菌根真菌生理生态学
菌根(mycorrhiza)真菌是一类非常重要的土壤微生物,能与绝大部分陆生植物的根系形成互惠共生体,对植物营养吸收、植物抗逆、植物群落、土壤结构以及碳氮磷的地球化学循环等具有非常重要的调控作用。本人目前主要在青藏高原及黄土高原地区开展菌根真菌群落生态学及生理生态功能研究,重点关注菌根真菌的群落装配机制及人类活动、全球变化、资源有效性等对菌根真菌群落结构及功能的影响机制。
(二)植物-土壤微生物相互作用
地下生态系统栖居着多种多样的土壤微生物,他们是土壤养分循环的关键驱动者,直接及间接地与地上植物发生相互作用,是维持生态系统可持续性的关键所在。本人目前主要在农田生态系统开展作物-土壤微生物互作研究,重点关注不同农艺措施下土壤微生物对作物生长及农田系统可持续性的作用机制。

项目成果

  在研项目:
国家自然科学基金面上项目:不同氮肥力下菌根真菌对高寒草甸生态系统多功能性的影响(No.31870494,2019-2022,主持)
国家自然科学基金面上项目:不同氮磷肥力下丛枝菌根介导的土壤碳固持研究(No.31570512,2016-2019,主持)
国家自然科学基金重点项目:青藏高原草地土壤-植被互馈关系及其空间异质性机理(No.41430749,2015-2019, 参加)
?  已完成项目:
国家自然科学基金青年项目:施肥对高寒草甸丛枝菌根真菌群落结构及功能的影响 (No.31300445,2013-2016, 主持)
教育部博士点基金:基于生态化学计量学的丛枝菌根真菌群落构建机制研究(No.20130211120005,2013-2016, 主持)
国家“973”计划:高原冻土工程走廊环境演化及其对工程稳定性影响机制(No.2012CB026105,2012-2016, 参加)
 
荣誉、获奖

甘肃省优秀博士学位论文奖 (2014年)
甘肃省自然科学一等奖 (5/5,2016年)

教学及指导研究生情况

本科生课程:《科技信息检索》
研究生课程:《菌根生物学》
指导在读博士生2人,硕士生5人;毕业硕士4人,协助指导毕业博士4人。

发表论文及专著

Researchgate主页:https://www.researchgate.net/profile/Yongjun_Liu6
主要论文(*代表通讯作者,#代表共同第一作者):
Bahadur A, Jin ZC, Long XL, Jiang SJ, Zhang Q, Pan JB, Liu YJ, Feng HY* (2019) Arbuscular mycorrhizal fungi alter plant interspecific interaction under nitrogen fertilization. European Journal of Soil Biology, 93: 103094.
Bahadur A, Jin ZC, Jiang SJ, Chai YX, Zhang Q, Pan JB, Liu YJ, Feng HY* (2019) Arbuscular mycorrhizal spores distribution across different ecosystems of Qinghai Tibetan plateau. Pakistan Journal of Botany, 51: 1481-1492.
Mao L, Pan JB, Jiang SJ, Shi GX, Qin MS, Zhao ZG, Zhang Q, An LZ, Feng HY, Liu YJ* (2019) Arbuscular mycorrhizal fungal community recovers faster than plant community in historically disturbed Tibetan grasslands. Soil Biology and Biochemistry, 134: 131-141.
Ma BB, Zhou XL, Zhang Q, Qin MS, Hu LG, Yang KN, Xie Z, Ma WB, Chen BB, Feng HY, Liu YJ, Du GZ*, Ma XJ*, Roux XL (2019) How do soil microorganisms respond to N, P and NP additions? Application of the ecological framework of (co-)limitation by multiple resources. Journal of Ecology, 107: 2329-2345.
Qin MS, Shi GX, Miranda J-P, Liu YJ, Meng YM, Pan JB, Chai Y, Jiang SJ, Zhou GY, Feng HY, Zhang Q*. (2019) Revegetation differentially influences microbial trophic groups in a Qinghai-Tibetan alpine steppe ecosystem. Journal of Basic Microbiology, 59: 992-1003.
Qin MS, Shi GX, Zhang Q, Meng YM, Liu YJ, Pan JB, Jiang SJ, Zhou GY, Feng HY* (2019) Arbuscular mycorrhizal fungi serve as keystone taxa for revegetation on the Tibetan Plateau. Journal of Basic Microbiology, 59: 609-620.
Qin MS, Zhang Q, Pan JB, Jiang SJ, Liu YJ, Bahadur A, Peng ZL, Yang Y, Feng HY* (2019) Effect of arbuscular mycorrhizal fungi on soil enzyme activity is coupled with increased plant biomass. European Journal of Soil Science, DOI: 10.1111/ejss.12815.
Jiang SJ, Liu YJ*, Luo JJ, Qin MS, Johnson NC, ?pik M, Vasar M, Chai YX, Zhou XL, Mao L, Du GZ, An LZ, Feng HY* (2018) Dynamics of arbuscular mycorrhizal fungal community structure and functioning along a nitrogen enrichment gradient in an alpine meadow ecosystem. New Phytologist, 220: 1222-1235.
García de León D*, Davison J, Moora M, ?pik M, Feng HY, Hiiesalu I, Jairus T, Koorem K, Liu YJ, Phosri C, Sepp SK, Vasar M, Zobel M (2018) Anthropogenic disturbance equalizes diversity levels in arbuscular mycorrhizal fungal communities. Global Change Biology, 24: 2649-2659.
Chai YX, Jiang SJ, Guo WJ, Qin MS, Pan JB, Bahadur A, Shi GX, Luo JJ, Jin ZC, Liu YJ, Zhang Q, An LZ, Feng HY* (2018) The effect of slope aspect on the phylogenetic structure of arbuscular mycorrhizal fungal communities in an alpine ecosystem. Soil Biology and Biochemistry, 126: 103-113.
Jiang SJ, Pan JB, Shi GX, Dorji T, Hopping KA, Klein JA, Liu YJ*, Feng HY* (2018) Identification of root-colonizing AM fungal communities and their responses to short-term climate change and grazing on Tibetan plateau. Symbiosis, 74: 159-166.
Shi GX, Yao BQ, Liu YJ, Jiang SJ, Wang WY, Pan JB, Zhao XQ, Feng HY, Zhou HQ* (2017) The phylogenetic structure of AMF communities shifts in response to gradient warming with and without winter grazing on the Qinghai?Tibet Plateau. Applied Soil Ecology, 121: 31-40.
Jiang SJ, Shi GX, Mao L, Pan JB, An LZ, Liu YJ*, Feng HY* (2015) Comparison of different PCR primers on detecting arbuscular mycorrhizal communities inside plant roots. Acta Microbiologica Sinica, 55: 916-925.
Liu YJ, Johnson NC, Mao L, Shi GX, Jiang SJ, Ma XJ, Du GZ, An LZ*, Feng HY* (2015) Phylogenetic structure of arbuscular mycorrhizal community shifts in response to increasing soil fertility. Soil Biology and Biochemistry, 89: 196-205.
Liu YJ#, Mao L#, Li JY, Shi GX, Jiang SJ, Ma XJ, An LZ, Du GZ*, Feng HY* (2015) Resource availability differentially drives community assemblages of plants and their root-associated arbuscular mycorrhizal fungi. Plant and Soil, 386: 341-355.
Mao L#, Liu YJ#, Shi GX, Jiang SJ, Cheng G, Li XM, An LZ, Feng HY* (2014) Wheat cultivars form distinctive communities of root-associated arbuscular mycorrhiza in a conventional agroecosystem. Plant and Soil, 374: 949-961.
Shi GX#, Liu YJ#, Johnson NC, Olsson P, Mao L, Cheng G, Jiang SJ, An LZ, Du GZ, Feng HY* (2014) Interactive influence of light intensity and soil fertility on root-associated arbuscular mycorrhizal fungi. Plant and Soil, 378: 173-188.
Shi GX#, Liu YJ#, Mao L, Jiang SJ, Zhang Q, Cheng G, An LZ, Du GZ, Feng HY* (2014) Relative importance of deterministic and stochastic processes in driving arbuscular mycorrhizal fungal assemblage during the spreading of a toxic plant. PLoS ONE, 9: e95672.
Pan JB#, Liu YJ#, He XH, Kang SC, Hou YH, An LZ, Feng HY* (2013) Arbuscular mycorrhizal and dark septate endophytic fungi at 5,500 m on a glacier forefront in the Qinghai-Tibet Plateau, China. Symbiosis, 60: 101-105.
Liu YJ, Mao L, He XH, Cheng G, Ma XJ, An LZ, Feng HY* (2012) Rapid change of AM fungal community in a rain-fed wheat field with short-term plastic film mulching practice. Mycorrhiza, 22: 31-39.
Liu YJ#, Shi GX#, Mao L#, Cheng G, Jiang SJ, Ma XJ, An LZ*, Du GZ, Johnson NC, Feng HY* (2012) Direct and indirect influences of 8 yr of nitrogen and phosphorus fertilization on Glomeromycota in an alpine meadow ecosystem. New Phytologist, 194: 523-535.
Liu YJ, He JX, Shi GX, An LZ, ?pik M, Feng HY* (2011) Diverse communities of arbuscular mycorrhizal fungi inhabit sites with very high altitude in Tibet Plateau. FEMS Microbiology Ecology, 78: 355-365.
Wu FS, Dong MX, Liu YJ, Ma XJ, An LZ, Young JPW, Feng HY* (2011) Effects of long-term fertilization on AM fungal community structure and Glomalin-related soil protein in the Loess Plateau of China. Plant and Soil, 342: 233-247.
Liu YJ, He L, An LX, Helgason T, Feng HY* (2009) Arbuscular mycorrhizal dynamics in a chronosequence of Caragana korshinskii plantations. FEMS Microbiology Ecology, 67: 81-92. 毛琳, 刘永俊* (2018) 丛枝菌根真菌的生理生态功能研究进展. 中国科技论文在线精品论文, 11(3): 236-245.
蒋胜竞, 刘永俊, 石国玺, 潘建斌, 冯虎元* (2014) 丛枝菌根真菌物种多样性及其群落构建机制研究进展. 生命科学, 26(2): 169-180.
金?? 刘永俊, 赵斌, 林先贵, 冯虎元* (2014) 中国菌根生态学的发展与未来——第十二届全国菌根学研讨会述评. 生态学报, 34(16): 4794-4797.
刘永俊, 冯虎元* (2010) 丛枝菌根真菌系统分类及群落研究技术进展. 应用生态学报, 21(6): 1573-1580.

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