删除或更新信息,请邮件至freekaoyan#163.com(#换成@)

广西大学林学院导师教师师资介绍简介-尤业明

本站小编 Free考研考试/2021-06-12

zdxkChs
category
理学
xkOne
生态学
xkTwo":null}],"GH
XM
尤业明
CSRQ":0,"XBM
1
DWH
33600
pic
http://prof.gxu.edu.cn/teacher-info/user-images/**_20**7.jpg
zzmm
中共党员
jiguan
zhicheng
讲师
topedu
研究生
ZHXWMC
博士
zhiwu
tel
NULL
yzbm
530004
email
youyeming@163.com
qq

weixin

address
广西南宁市大学东路100号
iscampus
1
dslb
硕士研究生导师
zdxkmlbh
07
zdyjxkbh
0713
zdejxkbh
dwh1
33600
zdxkmlbh2

zdyjxkbh2

zdejxkbh2

dwh2

zyyjfx
tbzrr
尤业明
isadmin
0
isview
0
firstLetter
y
jzgdqzt
11
sjgxrq":**00,"forEditDwmc
林学院
dwUrl
http://lxy.gxu.edu.cn/"},"showInfo":{"GH
show_CSRQ
1
show_zzmm
0
show_jiguan
1
show_zhicheng
0
show_tel
0
show_yzbm
0
show_email
0
show_qq
0
show_weixin
0
show_address
0
show_topedu
0
show_ZHXWMC
0"},"largeMsg":{"GH
**
zyxxjx
教育经历(按时间倒排序):2010/9 - 2015/1,北京林业大学,生态学,博士工作经历(科研与学术工作经历,按时间倒序排序):2015/1 - 至今,广西大学,林学院,讲师2015/12-2017/09,广西大学,博士后
xsjz
《Forest Ecosystems》、《Journal of Forestry Research》、《International Journal of Tropical Biology and Conservation》、《植物生态学报》和《广西植物》等杂志的审稿人
zyyjskc
主讲课程:《高级森林生态学》、《森林生态学》、《园林生态学》、《植物资源开发与利用》、《植物的秘密生活》
zyyjfx
森林土壤养分循环的调控机制研究;微生物结构与功能研究;人工林生物多样性研究
zckyxm
1.国家自然科学基金项目,**,南亚热带典型人工林土壤氮转化关键过程的制约因素及其调控机制,2016/01—2019/12、在研、主持。2.中国博士后科学基金(第61批面上资助),2017M612861,生物质炭对典型退化人工林土壤氮转化过程的影响及机制,2017/03-2018/07,在研,主持。3.广西自然科学基金项目,固氮树种对南亚热带典型人工林土壤氮磷循环的影响及其微生物调控机制,2016/09-2019/09、在研、主持。4.广西博士后专项项目,主持。5. 广西自然科学基金面上项目,南亚热带退化针叶林近自然化改造土壤团聚体微结构的演变特征及其养分有效性的形成机制,2019/09-2022/09,在研,主持。6.国家自然科学基金面上项目,**,亚热带-温带过渡区森林土壤有机碳固持机制及其微环境制约,2015/01—2018/12、在研、参加。7.国家重点基础研究发展计划(973)课题,2011CB403205 ,土壤C截获生物过程和机理,2011/01—2015/12、已结题、参加。
qdcg
lw
近5年发表的著作和学术论文著作篇章:(1)尤业明,周志勇,孙建新*. 陆地生态系统土壤固碳:途径与制约因素. 现代生态学讲座(Ⅵ)—全球气候变化与生态格局和过程. 北京:高等教育出版社,2013.SCI收录论文:(1) You, Y.M , Haocheng Xu, Xipin Wu, Xiaoguo Zhou, Xumai Tan, Meng Li, Yuanguang Wen*, Hongguang Zhu, Daoxiong Cai, Xueman Huang*. Native broadleaf tree species stimulate topsoil nutrient transformation by changing microbial community composition and physiological function, but not biomass in subtropical plantations with low P status. Forest Ecology and Management, 2020, https://doi.org/10.1016/j.foreco.2020.118491.(2)You, Y.M #, Xueman Huang #, Hongguang Zhu, Shirong Liu, Hongwen Liang, Yuanguang Wen*, Hui Wang, Daoxiong Cai, Duo Ye. Positive interactions between Pinus massoniana and Castanopsis hystrix species in the uneven-aged mixed plantations can produce more ecosystem carbon in subtropical China. Forest Ecology and Management, 2018, 410:193-200.(3)You, Y.M., Wang, J., Sun, X.L., Tang, Z.X., Zhou, Z.Y., Sun, O.J.(2016). Differential controls on soil carbon density and mineralization among contrasting forest types in a temperate forest ecosystem. Scientific Reports, 6: 22411.(4)You, Y.M., Wang, J., Huang, X.M., Tang, Z.X., Liu, S.R., Sun, O. J.(2014). Relating microbial community structure to functioning in forest soil organic carbon transformation and turnover. Ecology and Evolution, 4(5): 633-647.(5)Wang, J., You, Y.M., Tang, Z.-X, Liu, S., Sun, O. J.(2015). Variations in leaf litter decomposition across contrasting forest stands and controlling factors at local scale. Journal of Plant Ecology, 8(3): 261-272.(6)Wang, J., You, Y.M., Tang, Z.X., Sun, X. L., Sun, O. J.(2016). A comparison of decomposition dynamics among green tree leaves, partially decomposed tree leaf litter and their mixture in a warm temperate forest ecosystem. Journal of Forestry Research, 27(5):1037-1045.(7)Huang, X.M., Liu, S.R., You, Y.M., Wen, Y.G., Wang, H., & Wang, J.X.(2016) Microbial community and associated enzymes activity influence soil carbon chemical composition in Eucalyptus urophylla plantation with mixing N2-fixing species in subtropical China. Plant and Soil, 1-14.(8)Sun, X. L., Zhao, J., You, Y.M., Sun, O. J.(2016). Soil microbial responses to forest floor litter manipulation and nitrogen addition in a mixed-wood forest of northern China. Scientific reports, 6: 19536.(9)Huang, X.M., Liu, S.R., Wang, H., Hu, Z.D., Li, Z.G., You, Y.M.(2014). Changes of soil microbial biomass carbon and community composition through mixing nitrogen-fixing species with Eucalyptus urophylla in subtropical China. Soil Biology and Biochemistry, 73: 42-48.(10)Huang, Y.Q., Li, X.K., Zhang, Z.F., He, C.X., Zhao, P., You, Y.M., Mo, L.(2011). Seasonal changes in Cyclobalanopsis glauca transpiration and canopy stomatal conductance and their dependence on subterranean water and climatic factors in rocky karst terrain. Journal of Hydrology, 402(1): 135-143.(11)Wang, H., Liu, S.R., Wang, J.X., You, Y.M., Yang, Y.J., Shi, Z.M., Huang,X.M... & Lu, L. (2018). Mixed-species plantation with Pinus massoniana and Castanopsis hystrix accelerates C loss in recalcitrant coniferous litter but slows C loss in labile broadleaf litter in southern China. Forest Ecology and Management, 422, 207-213.(12)Zhou,X.G.,Zhu,H.G.,Wen, Y.G.,Goodale,U.M.,Li,X.Q.,You,Y.M.,Ye,D.,Liang,H.W.(2018).Effects of understory management on trade-offs and synergies between biomass carbon stock, plant diversity and timber production in eucalyptus plantations. Forest Ecology and Management,410(15):164-173.(13)Zhou, X., Wen, Y., Goodale, U. M., Zuo, H., Zhu, H., Li, X., You Yeming ... & Huang, X. (2017). Optimal rotation length for carbon sequestration in Eucalyptus plantations in subtropical China. New Forests, 48(5), 609-627.(14)Wang, H., Liu, S., Zhang, X., Mao, Q., Li, X., You, Yeming., ... & Mo, J. (2018). Nitrogen addition reduces soil bacterial richness, while phosphorus addition alters community composition in an old-growth N-rich tropical forest in southern China. Soil Biology and Biochemistry.(15) Xiaolu Sun, Zuoxin Tang, Michael G. Ryan, Yeming You and Osbert Jianxin Sun, Changes in soil organic carbon contents and fractionations of forests along a climatic gradient in China, Forest Ecosystems, 10.1186/s40663-019-0161-7, 6, 1, (2019).中文核心期刊:(1)徐浩成, 郑路, 王宏翔, 农友, 陈永康, 李萌, 蔡道雄, 尤业明(通讯作者). 南亚热带红锥大径材培育林幼苗更新及其与母树的空间关联性. 应用生态学报, 2020, 31(4): 1055-1062.(2)尤业明, 徐佳玉, 蔡道雄, 刘世荣, 朱宏光, 温远光.(2016). 广西凭祥不同年龄红椎林林下植物物种多样性及其环境解释. 生态学报, 36(1): 164-172.(3)尤业明,陈永康,朱宏光,刘通,温远光,黄雪蔓.(2018).桉树人工林更新方式对林下植物功能群的影响.广西植物,http://kns.cnki.net/kcms/detail/45.1134.Q.**.1200.002.html.(4)尤业明,吴溪玭,明安刚,刘通,陈永康,朱宏光,温远光,廖树寿,黄雪蔓。(2018).南亚热带典型针叶林改造成阔叶林后林下植物功能群的变化及其环境解释.生态学杂志,DOI:10.13292/j.1000-4890.201811.025.(5)尤业明, 王娟, 黄雪蔓, 孙筱璐, 唐佐芯.(2016). 暖温带森林土壤微生物量、群落结构和活性对植物地下碳源的响应. 广西植物,36(2): doi: 10. 1193 / guihaia. gxzw.(6) 尤业明, 黄雪蔓, 朱宏光, 蓝嘉川, 蔡道雄, 温远光.(2015).间伐强度对杉木林下植物物种多样性和结构组成的影响. 广西科学, 22(6): 593-599.(7)孙筱璐,唐佐芯,尤业明(通讯作者),曹元帅,赵海雷. 气候和林分类型对土壤团聚体有机碳的影响. 广西植物,2017,DOI:10.11931/guihaia.gxzw.(8) 黄雪蔓, 尤业明, 蓝嘉川, 刘世荣, 贾宏炎, 朱宏光, 温远光.(2016). 不同间伐强度对杉木人工林碳储量及其分配的影响. 生态学报, 36(1): 156-163.(9)王娟, 尤业明, 黄雪蔓, & 张建亮. (2016). 锐齿栎林年龄序列土壤呼吸组分特征研究. 广西植物, 36(10), 1205-1213.(10) 涂玉,尤业明,孙建新.(2012). 油松-辽东栎混交林地表凋落物与氮添加对土壤微生物生物量碳、氮及其活性的影响. 应用生态学报, 23(9): 2325-2331.(11)张中峰, 尤业明, 黄玉清, 李先琨, 张金池, 张德楠, 何成新.(2012). 模拟喀斯特生境条件下干旱胁迫对青冈栎苗木的影响. 生态学报, 32(20): 6318-6325.(12)张中峰, 尤业明, 黄玉清*, 李先琨, 张金池, 张德楠, 何成新.(2012). 模拟岩溶水分供应分层的干旱胁迫对青冈栎光合特性和生长的影响. 生态学杂志, 31(9):2197-2202.(13)白晓旭, 史荣久, 尤业明, 盛华芳, 韩斯琴, 张颖. (2015). 河南宝天曼不同林龄与林型森林土壤的细菌群落结构与多样性. 应用生态学报, 26(8): 2273-2281.(14)黄雪蔓,刘世荣,尤业明.(2014). 固氮树种对桉树土壤微生物生物量和结构的影响. 林业科学研究, 27(5):612-620.(15)黄雪蔓,刘世荣,尤业明.(2014). 固氮树种对南亚热带桉树人工林土壤呼吸及组分的影响. 林业科学研究, 27(5): 575-582. (16)吕仕洪, 张建亮, 尤业明, 谭卫宁, 陆树华, 李先琨. (2012). 喀斯特乡土树种伊桐的种实性状及幼苗生长特征. 广西植物, 32(5): 637-643.(17) 张中峰, 黄玉清, 尤业明, 何成新, 朱访, 黎彦余.(2011). 岩溶干旱胁迫下青冈栎水分参数变化. 生态学杂志, 30(4): 664-669.(18)韦兰英, 袁维圆, 尤业明, 焦继飞, 张建亮, 黄玉清. (2009). 岩溶石漠化区牧草植物地上 部分生物量的动态变化. 草业科学, 26(10): 73-79.(19)李程,尤业明,唐佐芯,孙建新.(2018). 碳源输入量变化对河南宝天曼锐齿栎林土壤酶活性的影响.林业科学研究,31(4):23-30.
zz
zl
ryyhj
zsxx":null}},
相关话题/广西大学 林学院