导师风采
李洪波
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个人信息

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  • 研究员
  • 导师类别:硕士,博士生导师
  • 性别: 男
  • 学历:博士研究生
  • 学位:博士

联系方式

Contact Information

  • 所属院系:环发所
  • 所属专业: 生态学
  • 邮箱 : lihongbo@caas.cn
  • 工作电话 : 010-82108544

个人简介

Personal Profile

近年来围绕植物生态学和土壤生态学两个方向,具体内容如下:

1、植物生态策略(构建-防御)研究:

•基于多维度地上-地下功能属性变异的草原和森林植物水分环境适应策略及群落构建机制

•基于多样性磷资源获取策略的物种共存和植物-土壤反馈机制

•被子植物叶片和根系的构建和防御策略

2、长期氮磷添加、秸秆还田及生物炭施用对土壤有机碳组分和来源、磷组分和氮循环的影响及机制

目前,主持国家自然科学基金、宁夏重点研发等各级科学基金项目4项。以第一或通讯作者在New Phytologist、Soil Tillage Reaearch, Plant and Soil、Oikos等国际著名期刊上发表论文10余篇。长期作为New Phytologist、Oikos等杂志的审稿专家,在国内外具有良好的学术影响力。


  • 研究方向Research Directions
植物功能属性变异,植物-土壤-微生物相互作用,土壤碳氮磷循环,植物生态学,土壤学,植物营养
2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行2. 机电结构优化与控制 研究内容:在对机电结构进行分析和优化的基础上,运用控制理论进行结构参数的调整,使结构性能满足设计要求。1. 仿生结构材料拓扑优化设计, 仿生机械设计 研究内容:以仿生结构为研究对象,运用连续体结构拓扑优化设计理论和方法,对多相仿生结构(机构)材料进行整体布局设计。 整体布局设计。
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硕士研究生
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科研项目

1、 国家自然科学基金面上项目,草原群落中不同物种磷获取及叶片磷利用与防御策略的共变模式及驱动机制、54万(2023.1-2026.12)、主持,(32271576)。

2、 国家自然科学基金面上项目,基于地上和地下功能属性协同变异的草原植物整体生态策略构建及环境压力驱动机制、58万(2021.1-2024.12)、主持,(32071506)。

3、 国家重点研发计划青年科学家项目(课题3),南方喀斯特农田土壤生态服务协同提升的生物调控机制与途径、50万(2023.1-2025.12)、主持,(2022YFD1901000)。

4、宁夏回族自治区重点研发项目(课题1),典型农田肥药减施增效机理研究、50万(2019.5-2022.5)、主持。

5、国家自然科学基金青年基金项目,基于功能属性变异的温带草原物种群落构建和植物分布的机制、20万(2017.1-2019.12)、主持,(31600319)。

5、国际(地区)合作交流项目,喀斯特关键带岩石-土壤-生物三维空间分布特征、421万(2016.1-2019.12)、主要执行,41571130041)。


研究成果

第一或通讯作者已发表(*为通讯作者,#为共同一作):

Zhang A, Wang X-X, ZhangD, Dong Z, Ji H, Li H* (2023) Localized nutrient supply promotes maizegrowth and nutrient acquisition by shaping root morphology and physiology andmycorrhizal symbiosis. Soil Tillage Research, 225, 105550.

Dong Z#, Li H#, Xiao J, Sun J, Liu R, Zhang A.* (2022) Soil multifunctionality of paddy field is explained by soil pH rather than microbial diversity after 8-years of repeated applications of biochar and nitrogen fertilizer. Science of the Total Environment, 853,158620.

Zhang D, Kuzyakov Y, Zhu H, Alharbi H, Li H*, Rengel Z. (2022) Increased microbial biomass and turnover underpin efficient phosphorus acquisition by Brassica chinensis. Soil Tillage Research, 223, 105492.

Liu B, Han F, Ning P, LiH*, Rengel Z. (2022) Root traits and soil nutrient and carbon availability drive soil microbial diversity and composition in a northern temperate forest. Plant and Soil, 479, 281-299.

Xing K, Niinemets Ü, Rengel Z, Onoda Y, Xia J, Chen H, Zhao M, Han W, Li H* (2021) Global patterns of leaf construction traits and their covariation along climate and soil environmental gradients. New Phytologist, 232, 1648–1660. 

Wang X, Zhang J, Wang H, Rengel Z, Li H* (2023) Plasticity and co-variation of root traits govern phosphorus acquisition among 20 wheat genotypes. Oikos, 1, e08606. 

Wang X#, Li H#, Chu Q, Feng Gu, Kuyper TW, Rengel Z (2020) Mycorrhizal impacts on root trait plasticity of six maize varieties along a phosphorus supply gradient. Plant and Soil, 448, 71-86. 

Zhang D, Wang Y, Tang X, Zhang A*, Li H*, Rengel Z (2019) Early priority effects of occupying a nutrient patch do not influence final maize growth in intensive cropping systems. Plant and Soil, 442, 285-298.

Liu B, Li L, Rengel Z, Tian J, Li H*, Lu M (2019) Roots and arbuscular mycorrhizal fungi are independent in nutrient foraging strategies across subtropical tree species. Plant and Soil, 442, 97-112.

Li H, Brooker R, Wang X, Rengel Z, Zhang F, Davies W, Shen J.* (2019) Root competition resulting from spatial variation in nutrient distribution elicits decreasing maize yield at high planting density. Plant and Soil, 439, 219-232.

Li H, Zhang D, Wang X, Rengel Z, Zhang F, Shen J.* (2019) Competition between Zea mays genotypes with different root morphological and physiological traits is dependent on phosphorus forms and supply patterns. Plant and Soil, 434,125-137.

Li H, Liu B., McCormack M, Ma Z, Guo D.* (2017) Diverse belowground resource strategies underlie plant species coexistence and spatial distribution in three grasslands along a precipitation gradient. New Phytologist, 216: 1140-1150.

Li H, Ma Q, Li H,Zhang F, Rengel Z, Shen J.* (2016) Root over-production in heterogeneous nutrient environment has no negative effects on Zea mays shoot growth in the field. Plant and Soil, 409, 405-417.

Li H, Ma Q, Li H, Zhang F, Rengel Z, Shen J.* (2014)Root morphological responses to localized nutrient supply differ among crop species with contrasting root traits. Plant and Soil, 376, 151-163.

Li H, Zhang F, Shen J.* (2012) Contribution of root proliferation in nutrient-rich soil patches to nutrient uptake and growth of maize. Pedosphere, 22, 776-784.

李洪波, 薛慕瑶, 林雅茹, 申建波* (2013) 土壤养分空间异质性与根系觅食作用:从个体到群落。植物营养与肥料学报,19, 1002-1012.

周玮,李洪波*,曾辉 (2018) 不同水分梯度下西藏高寒草原群落植物根系属性变异格局。植物生态学报,42, 1104–1112.


合作发表文章:

Wu X, Li H, Rengel Z, Whalley W, Li H, Zhang F, Shen J, Jin K* (2022). Localized nutrient supply can facilitate root proliferation and increase nitrogen-use efficiency in compacted soil. Soil & Tillage Research, 215, 105198.

Sun J, Li H, Zhang D, Liu R, Zhang A*, Rengel Z (2021) Long-term biochar application governs the molecular components and decomposition of organic matter in paddy soil.  GCB Bioenergy, 13, 1939-1953.

Jin K, Li H, Li X, Li H, Dodd I, Belimov A, Davies W, Shen J (2021) Rhizosphere bacteria containing ACC deaminase decrease root ethylene emission and improve maize root growth with localized nutrient supply. Food Energy Security, 10, 275-284.

Liu B, Li HL, Li H, Zhang A, Rengel Z (2021) Long-term biochar application promotes rice productivity by regulating root dynamic development and reducing nitrogen leaching. GCB Bioenergy, 13, 257–268.

Liu, H, Li H,et al. (2020). Inhibited effect of biochar application on N2O emissions is amount and time-dependent by regulating denitrification in a wheat-maize rotation system in North China. Science of the Total Environment, 721, 137636.

Wen Z, Li H, et al. (2019) Trade-offs among root morphology, exudation and mycorrhizal symbioses for phosphorus-acquisition strategies of 16 crop species. New Phytologist, 232, 882-895.

Liu B, Li H, et al. (2015) Complementarity in nutrient foraging strategies of absorptive fine roots and arbuscular mycorrhizal fungi across 14 coexisting subtropical tree species, New Phytologist, 208, 125-136.

Zhang D, Lyu Y, Li H. et al. (2020). Neighbouring plants modify maize-root foraging for phosphorus: coupling nutrients and neighbours for improved nutrient-use efficiency. New Phytologist, 226, 244–253

Zhang D, Li H, et al. (2019) Increased planting density of Chinese milk vetch (Astragalus sinicus L.) weakens phosphorus uptake advantage by rapeseed (Brassica napus L.) in mixed cropping system. AoB Plants, 11, plz033.

Ma Q, Wang X, Li H, et al. (2015) Comparing localized application of different n fertilizer species on maize grain yield and agronomic N-use efficiency on a calcareous soil. Field Crops Research, 180, 72-79.

Ma Q, Wang X, Li H, et al. (2014) Localized application of NH4+-N plusP enhances zinc and iron accumulation in maize via modifying root traits and rhizosphere processes. Field Crops Research, 164, 107-116.

Wang X, Liu S,Zhang S, Li H, et al. (2018)Localized ammonium and phosphorus fertilization can improve cotton lint yield by decreasing rhizosphere soil pH and salinity. Field Crops Research, 217, 75-81.

张德闪,李洪波,申建波 (2017) 集约化互作体系植物根系高效获取土壤养分的策略与机制。植物营养与肥料学报,23, 1547-1555.


研究经历

• 2008.9-2014.6硕/博,中国农业大学,资源与环境学院,植物营养学,导师:申建波教授

•2014.11-2018.5博士后,中国科学院,地理科学与资源研究所,植物生态学,合作导师:郭大立研究员

•2019.1-2023.12副研究员,中国农业科学院,农业环境与可持续发展研究所,植物生态学,环境生态学

•2024.1-研究员,中国农业科学院,农业环境与可持续发展研究所,植物生态学,环境生态学


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