期刊信息

- 刊名: 河北师范大学学报(自然科学版)Journal of Hebei Normal University (Natural Science)
- 主办: 河北师范大学
- ISSN: 1000-5854
- CN: 13-1061/N
- 中国科技核心期刊
- 中国期刊方阵入选期刊
- 中国高校优秀科技期刊
- 华北优秀期刊
- 河北省优秀科技期刊
树木对无机氮吸收偏好研究进展
- (河北师范大学 地理科学学院,河北省环境演变与生态建设重点实验室,石家庄 050024)
-
DOI:
10.13763/j.cnki.jhebnu.nse.202405024
Research Progress on Inorganic Nitrogen Uptake Preference of Trees
摘要/Abstract
氮素(N)是树木生长发育过程所必需的营养元素,是树木合成核酸、蛋白质等的基本组成元素.目前关于树木对不同形态氮吸收偏好是依赖于物种特异性还是土壤氮可利用性仍存在不确定性.归纳整理树木对无机氮吸收的研究成果,分析生物属性(树种、树龄和菌根类型)和环境因素(土壤、水分、温度和光照)对树木氮吸收偏好的影响,研究结果表明,不同实验方法得出的树龄和菌根类型对树木氮吸收偏好的影响结果略有不同.根据现有研究存在的树木菌根类型与氮吸收偏好关系不确定等问题,提出加强树木根系形态与环境和生物因素的相关性分析,明确菌根类型对不同形态氮吸收偏好的影响,为生态系统物种共存、种间竞争和生态位互补等理论提供科学依据.
Nitrogen(N) is an important and necessary element for tree growth development and is the basic component of nucleic acid and protein synthesis in trees.There is uncertainty as to whether tree N uptake preferences for different forms of N are dependent on species specificity or soil N availability.In this study,we summarize the results of research on inorganic nitrogen uptake by trees and analyze the effects of biological attributes(species,age and mycorrhizal type) and environmental factors(soil,moisture,temperature and light) on nitrogen uptake preferences of trees,and the results show that the effects of tree age and mycorrhizal type on nitrogen uptake preferences of trees are different using different experimental methods.At the same time,there is an uncertainty in the relationship between tree mycorrhizal types and nitrogen uptake preferences.It is important to strengthen the correlation analysis between tree root morphology and environmental and biological factors,and to clarify the influence of mycorrhizal types on nitrogen uptake preferences of different morphologies,which providing scientific basis for theories of ecosystem species coexistence,interspecies competition and ecological niche complementation.
关键词
参考文献 61
- [1] 刘珉,胡鞍钢.中国创造森林绿色奇迹[J].新疆师范大学学报(哲学社会科学版),2022,43(3):69-80.doi:10.14100/j.cnki.65-1039/g4.20211008.001 LIU Min,HU Angang.Forest Green Miracle in China[J].Journal of Xinjiang Normal University(Philosophy and Social Sciences),2022,43(3):69-80.
- [2] LIU X,ZHANG Y,HAN W,et al.Enhanced Nitrogen Deposition over China[J].Nature,2013,494(7438):459-462.doi:10.1038/nature11917
- [3] LIU Q,WANG H,XU X,et al.Root Nitrogen Acquisition Strategy of Trees and Understory Species in a Subtropical Pine Plantation in Southern China[J].European Journal of Forest Research,2020,139(5):791-804.doi:10.1007/s10342-020-01284-6
- [4] ASHTON I W,MILLER A E,BOWMAN W D,et al.Nitrogen Preferences and Plant-soil Feedbacks as Influenced by Neighbors in the Alpinetundra[J].Oecologia,2008,156(3):625-636.doi:10.1007/s00442-008-1006-1
- [5] 胡晨曦.夜间增温对土壤小麦系统氮素平衡及利用的影响[D].南京:南京农业大学,2019.doi:10.27244/d.cnki.gnjnu.2019.000153 HU Chenxi.Effect of Night Warming on Nitrogen Balance and Utilization in Soil-wheat System[D].Nanjing:Nanjing Agricultural University,2019.
- [6] 张彦东,白尚斌.氮素形态对树木养分吸收和生长的影响[J].应用生态学报,2003,14(11):2044-2048.doi:10.13287/j.1001-9332.2003.0451 ZHANG Yandong,BAI Shangbin.Effects of Nitrogen Forms on Nutrient Uptake and Growth of Trees[J].Chinese Journal of Applied Ecology,2003,14(11):2044-2048.
- [7] 翟帅帅,丁贵杰,王艺,等.褐环乳牛肝菌对马尾松幼苗根系构型的影响[J].福建林学院学报,2015,35(3):243-248.doi:10.13324/j.cnki.jfcf.2015.03.010 ZHAI Shuaishuai,DING Guijie,WANG Yi,et al.Effects of Suillus Iuteus on Root Architecture of Pinus Massoniana[J].Journal of Forest and Environment,2015,35(3):243-248.
- [8] 涂桂英,王艺,田磊,等.外生菌根真菌菌丝对马尾松苗氮素传递的影响[J].菌物学报,2022,41(12):2004-2015.doi:10.13346/j.mycosystema.220075 TU Guiying,WANG Yi,TIAN Lei,et al.Effects of Ectomycorrhizal Fungal Hyphae on Transfer of Nitrogen Among Pinusmassoniana Seedlings[J].Mycosystema,2022,41(12):2004-2015.
- [9] MAHENDRA R,DEEPAK A,ARCHANA S,et al.Positive Growth Responses of the Medicinal Plants Spilanthes calva and Withania somnifera to Inoculation by Piriformospora indica in a Field Trial[J].Mycorrhiza,2001,11(3):123-128.doi:10.1007/s005720100115
- [10] 郝志鹏,谢伟,陈保冬.丛枝菌根真菌在农业中的应用:研究进展与挑战[J].科技导报,2022,40(3):87-98.doi:10.3981/j.issn.1000-7857.2022.03.008 HAO Zhipeng,XIE Wei,CHEN Baodong.Application of Arbuscular Mycorrhizal Fungi in Agriculture:Research Progress and Challenges[J].Science & Technology Review,2022,40(3):87-98.
- [11] 李晓林,冯固.丛枝菌根生态生理[M].北京:华文出版社,2001. LI Xiaolin,FENG Gu.Arbuscular Mycorrhizal Ecological Physiology[M].Beijing:Chinese Publishing House,2001.
- [12] WANG W,SHI J,XIE Q,et al.Nutrient Exchange and Regulation in Arbuscular Mycorrhizal Symbiosis[J].Molecular Plant,2017,10(9):1147-1158.doi:10.1016/j.molp.2017.07.012
- [13] 孙思邈,陈吉欣,冯炜炜,等.植物氮形态利用策略及对外来植物入侵性的影响[J].生物多样性,2021,29(1):72-80.doi:10.17520/biods.2020072 SUN Simiao,CHEN Jixin,FENG Weiwei,et al.Plant Strategies for Nitrogen Acquisition and Their Effects on Exotic Plant Invasions[J].Biodiversity Science,2021,29(1):72-80.
- [14] BOCZULAK S A,HAWKINS B J,ROY R.Temperature Effects on Nitrogen Form Uptake by Seedling Roots of Three Contrasting Conifers[J].Tree Physiology,2014(5):513-523.doi:10.1093/treephys/tpu028
- [15] 陶爽,华晓雨,王英男,等.不同氮素形态对植物生长与生理影响的研究进展[J].贵州农业科学,2017,45(12):64-68. TAO Shuang,HUA Xiaoyu,WANG Yingnan,et al.Research Advance in Effects of Different Nitrogen Forms on Growth and Physiology of Plants[J].Guizhou Agricultural Sciences,2017,45(12):64-68.
- [16] XIAO C,SUN D,LIU B,et al.Nitrate Transporter NRT1.1 and Anion Channel SLAH3 Form a Functional Unit to Regulate Nitrate-dependent Alleviation of Ammonium Toxicity[J].J Integr Plant Biol,2022,64:942-957.doi:10.1111/jipb.13239
- [17] ZHU F,DAI L M,ERIK A H,et al.Quantifying Nitrogen Uptake and Translocation for Mature Trees:An in Situ Whole-tree Paired 15N Labeling Method[J].Tree Physiology,2021,41(11):2109-2125.doi:10.1093/treephys/tpab060
- [18] 孙文静.氮添加对小兴安岭阔叶红松林3个树种氮吸收策略的影响[D].哈尔滨:东北林业大学,2020.doi:10.27009/d.cnki.gdblu.2020.000211 SUN Wenjing.Effect of Nitrogen Addition on Nitrogen Acquisition Strategies of Three Tree Species of Korean Pine Broadleaved Forests in Xiaoxing′an Mountains[D].Harbin:Northeast Forestry University,2020.
- [19] BEGON M,TOWNSEND C R,HARPER J L.Ecology:From Individuals to Ecosystems[J].Freshwater Biology,2005,51(9):1024.doi:10.1111/j.1365-2427.2006.01592.x
- [20] 邹婷婷,张子良,李娜,等.川西亚高山针叶林主要树种对土壤中不同形态氮素的吸收差异[J].植物生态学报,2017,41(10):1051-1059. ZOU Tingting,ZHANG Ziliang,LI Na,et al.Differential Uptakes of Different Forms of Soil Nitrogen Among Major Tree Species in Subalpine Coniferous Forests of Western Sichuan,China[J].Chinese Journal of Plant Ecology,2017,41(10):1051-1059.
- [21] LIU M,LI C,XU X,et al.Organic and Inorganic Nitrogen Uptake by 21 Dominant Tree Species in Temperate and Tropical Forests[J].Tree Physiology,2017,37(11):1-12.doi:10.1093/treephys/tpx046
- [22] REUTER R,FERLIAN O,TARKKA M,et al.Tree Species Rather Than Type of Mycorrhizal Association Drive Inorganic and Organic Nitrogen Acquisition in Tree-tree Interactions[J].Tree Physiology,2021,41(11):2096-2108.doi:10.1093/treephys/tpab059
- [23] JUDY S,SILVIJA B,HEINZ R.Nitrogen Uptake Capacity of European Beech(Fagus sylvatica L) Only Partially Depends on Tree Age[J].Trees,2021,35(5):1-7.doi:10.1007/s00468-021-02190-z
- [24] LUCASH M S,JOSLIN J D,YANAI R.Temporal Variation in Nutrient Uptake Capacity by Intact Roots of Mature Loblolly Pine[J].Plant and Soil,2005,272(1):253-262.doi:10.1007/s11104-004-5296-8
- [25] GESSLER A,SCHNEIDER S,SENGBUSCH D V,et al.Field and Laboratory Experiments on Net Uptake of Nitrate and Ammonium by the Roots of Spruce(Picea abies)and Beech(Fagus sylvatica)Trees[J].New Phytologist,1998,138(2):275-285.doi:10.1046/j.1469-8137.1998.00107.x
- [26] YANG K,ZHU J,YAN Q,et al.Soil Enzyme Activities as Potential Indicators of Soluble Organic Nitrogen Pools in Forest Ecosystems of Northeast China[J].Annals of Forest Science,2012,69:795-803.doi:10.1007/s13595-012-0198-z
- [27] LEI G A,XC A,PWH B,et al.Uptake of Various Nitrogen Forms by Co-existing Plant Species in Temperate and Cold-temperate Forests in Northeast China[J].Applied Soil Ecology,2020,147:103398.doi:10.1016/j.apsoil.2019.103398
- [28] ZHU F,DAI L,HOBBIE E A,et al.Quantifying Nitrogen Uptake and Translocation for Mature Trees:Anin Situ Whole-tree Paired 15N Labeling Method[J].Tree Physiology,2021,41(11):2109-2125.doi:10.1093/treephys/tpab060
- [29] PERSSON J,HGBERG P,EKBLAD A,et al.Nitrogen Acquisition from Inorganic and Organic Sources by Boreal Forest Plants in the Field[J].Oecologia,2003,137(2):252-257.doi:10.1007/s00442-003-1334-0
- [30] LIU M,XU F,XU X,et al.Age Alters Uptake Pattern of Organic and Inorganic Nitrogen by Rubber Trees[J].Tree Physiology,2018,38(11):1685-1693.doi:10.1093/treephys/tpy031
- [31] 李常诚,李倩茹,徐兴良,等.不同林龄杉木氮素的获取策略[J].生态学报,2016,36(9):2620-2625.doi:10.5846/stxb2014 11162271 LI Changcheng,LI Qianru,XU Xingliang,et al.Nitrogen Acquisition Strategies of Cunninghamia lanceolata at Different Ages[J].Acta Ecologica Sinica,2016,36(9):2620-2625.
- [32] ZHANG Z,LI N,XIAO J,et al.Changes in Plant Nitrogen Acquisition Strategies During the Restoration of Spruce Plantations on the Eastern Tibetan Plateau,China[J].Soil Biology and Biochemistry,2018,119:50-58.doi:10.1016/j.soilbio.2018.01.002
- [33] 高文礼,再努尔·吐尔逊,桑钰,等.丛枝菌根真菌对植物氮素吸收作用的研究进展[J].中国农学通报,2021,37(27):53-58.doi:10.11924/j.issn.1000-6850.casb2020-0761 GAO Wenli,ZAYNUR Turxun,SANG Yu,et al.Effect of Arbuscular Mycorrhizal Fungi on Nitrogen Absorption of Plants:A Review[J].Chinese Agricultural Science Bulletin,2021,37(27):53-58.
- [34] HOBBIE E A,COLPAERT J V,WHITE M W,et al.Nitrogen Form,Availability,and Mycorrhizal Colonization Affect Biomass and Nitrogen Isotope Patterns in Pinus sylvestris[J].Plant and Soil,2008,310(1/2):121-136.doi:10.1007/s11104-008-9637-x
- [35] HAZARD C,KRUITBOS L,DAVIDSON H,et al.Strain Identity of the Ectomycorrhizal Fungus Laccaria Bicolor Is More Important than Richness in Regulating Plant and Fungal Performance Under Nutrient Rich Conditions[J].Frontiers in Microbiology,2017(8):1874.doi:10.3389/fmicb.2017.01874
- [36] TIBBETT M,SANDERS F E.Ectomycorrhizal Symbiosis Can Enhance Plant Nutrition Through Improved Access to Discrete Organic Nutrient Patches of High Resource Quality[J].Annals of Botany,2002,89(6):783-789.doi:1093.129/aob/mcf
- [37] 姜琦,郭润泉,宋涛涛,等.增温与氮添加对不同季节杉木幼苗细根不同形态氮吸收动力学的影响[J].生态学报,2020,40(9):2996-3005.doi:10.5846/stxb201905070924 JIANG Qi,GUO Runquan,SONG Taotao,et al.Effects of Warming and Nitrogen Addition on Nitrogen Uptake Kinetics of Fine Roots of Cunninghamia lanceolata Seedlings in Different Seasons[J].Acta Ecologica Sinica,2020,40(9):2996-3005.
- [38] 任浩,高国强,马耀远,等.不同年龄红松根系氮素吸收及其与根形态和化学性状的关系[J].北京林业大学学报,2021,43(10):65-72.doi:10.12171/j.1000-1522.20200385 REN Hao,GAO Guoqiang,MA Yaoyuan,et al.Root Nitrogen Uptake and Its Relationship with Root Morphological and Chemical Traits in Pinuskoraiensis at Different Ages[J].Journal of Beijing Forestry University,2021,43(10):65-72.
- [39] TAKUMI I,AYUMI T,TAIGA M,et al.Different Relationships of Fine Root Traits with Root Ammonium and Nitrate Uptake Rates in Conifer Forests[J].Journal of Forest Research,2023,28(1):25-32.doi:10.1080/13416979.2022.2102752
- [40] KAHMEN A,LIVESLEY S J,ARNDT S K.High Potential,but Low Actual,Glycine Uptake of Dominant Plant Species in Three Australian Land-use Types with Intermediate N Availability[J].Plant and Soil,2009,325(1/2):109-121.doi:10.1007/s11104-009-9960-x
- [41] JACOB A,LEUSCHNER C.Complementarity in the Use of Nitrogen Forms in a Temperate Broad-leaved Mixed Forest[J].Transactions of the Botanical Society of Edinburgh,2015,8(2):243-258.doi:10.1080/17550874.2014.898166
- [42] SKOGLEY E O,DOBERMANN A.Synthetic Ion-exchange Resins:Soil and Environmental Studies[J].Journal of Environmental Quality,1996,25(1):13-24.doi:10.2134/jeq1996.00472425002500010004x
- [43] 赵言文,丁艳锋,陈留根,等.水稻旱育秧苗抗旱生理特性研究[J].中国农业科学,2001,34(3):283-291.doi:10.3321/j.issn:0578-1752.2001.03.010 ZHAO Yanwen,DING Yanfeng,CHEN Liugen,et al.Physiological Characteristics of Drought Resistance of Rice Dry Nursery Seedlings[J].Scientia Agricultura Sinica,2001,34(3):283-291.
- [44] JOSEPH J,LUSTER J,BOTTERO A,et al.Effects of Drought on Nitrogen Uptake and Carbon Dynamics in Trees[J].Tree Physiology,2021,41(6):927-943.doi:1093.146/treephys/tpaa
- [45] 柏彦超.不同水、氮条件对水稻生长及部分生理特征的影响[D].扬州:扬州大学,2008.doi:10.7666/d.Y1261748 BAI Yanchao.Effect of Different Water Stress and Nitrogen Forms on Growth and Physiological Characteristics of Rice[D].Yangzhou:Yangzhou University,2008.
- [46] 吕殿青,杨进荣,马林英.灌溉对土壤硝态氮淋吸效应影响的研究[J].植物营养与肥料学报,1999(4):307-315. LYU Dianqing,YANG Jinrong,MA Linying.Study on Effect of Irrigation on Soil Nitrate Leaching and Uptake[J].Plantnatrition and Fertilizen Science,1999(4):307-315.
- [47] SCHOLBERG J,PARSONS L R,WHEATON T A,et al.Soil Temperature,Nitrogen Concentration,and Residence Time Affect Nitrogen Uptake Efficiency in Citrus[J].Journal of Environment Quality,2002,31(3):759-768.doi:10.2134/jeq2002.7590
- [48] HAWKINS H J,JOHANSEN A,GEORGE E.Uptake and Transport of Organic and Inorganic Nitrogen by Arbuscular Mycorrhizal Fungi[J].Plant and Soil,2000,226(2):275-285.doi:10.1023/a:1026500810385
- [49] ZHOU M,YAN G,XING Y,et al.Nitrogen Deposition and Decreased Precipitation Does Not Change Total Nitrogen Uptake in a Temperate Forest[J].Science of the Total Environment,2019,651:32-41.doi:10.1016/j.scitotenv.2018.09.166
- [50] 宋海星,李生秀.根系的吸收作用及土壤水分对硝态氮、铵态氮分布的影响[J].中国农业科学,2005(1):96-101.doi:10.3321/j.issn:0578-1752.2005.01.017 SONG Haixing,LI Shengxiu.Effects of Root Uptake Function and Soil Water on NO-3—N and NH+4—N Distribution[J].Scientia Agricultura Sinica,2005(1):96-101.
- [51] 赵全志,高桐梅,宁慧峰,等.分蘖期土壤水分对旱稻矿质养分吸收的影响[J].水土保持学报,2005(6):92-95.doi:10.13870/j.cnki.stbcxb.2005.06.023 ZHAO Quanzhi,GAO Tongmei,NING Huifeng,et al.Effects of Soil Moisture on Mineral Nutrition Uptake in Upland Rice at Tillering Stage[J].Journal of Soil Water Conservation,2005(6):92-95.
- [52] ROUPHAEL Y.Drought Effects on Nutrient Uptake and Assimilation in Vegetable Crops[M].Berlin:Springer,2012.doi:10.1007/978-3-642-32653-0-7
- [53] CRUZ C,LIPS S H,MARTINS-LOUAO M A.The Effect of Nitrogen Source on Photosynthesis of Carob at High CO2 Concentrations[J].Physiologia Plantarum,1993,89(3):552-556.doi:10.1111/j.1399-3054.1993.tb05212.x
- [54] BOCZULAK S A,HAWKINS B J,ROY R.Temperature Effects on Nitrogen Form Uptake by Seedling Roots of Three Contrasting Conifers[J].Tree Physiology,2014,34(5):513-523.doi:10.1093/treephys/tpu028
- [55] HORST M,MAX H,ECKHARD G.Ammonium and Nitrate Uptake Rates and Rhizosphere pH in Non-mycorrhizal Roots of Norway Spruce Picea abies(L) Karst[J].Trees,1991,5(1):14-21.doi:10.1007/bf00225330
- [56] 江明艳,潘远智.不同光质对盆栽一品红光合特性及生长的影响[J].园艺学报,2006,33(2):338-343.doi:10.16420/j.issn.0513-353x.2006.02.022 JIANG Mingyan,PAN Yuanzhi.Effects of Light Quality on the Photosynthetic Characteristics and Growth of Poinsettia[J].Acta Horticulturae Sinica,2006,33(2):338-343.
- [57] 关义新,林葆,凌碧莹.光氮互作对玉米叶片光合色素及其荧光特性与能量转换的影响[J].植物营养与肥料学报,2000,6(2):152. GUAN Yixin,LIN Bao,LING Biying.Interaction Effects of Light Density and Nitrogen on Maize Leaf Pigments,Chlorophyll Fluorescence and Energy Transition[J].Plant Natrition and Fertilizen Science,2000,6(2):152.
- [58] PAINE E R,SCHMID M,REVILL A T,et al.Light Regulates Inorganic Nitrogen Uptake and Storage,but Not Nitrate Assimilation,by the Red Macroalga(Rhodophyta)[J].European Journal of Phycology,2021,56(2):174-185.doi:10.1080/09670262.2020.1786858
- [59] ZHU Z,GERENDÁS J,BENDIXEN R,et al.Different Tolerance to Light Stress in NO-3and NH+4 Grown Phaseolus Vulgaris L[J].Plant Biology,2000,2(5):558-570.doi:10.1055/s-2000-7498
- [60] 赵平,孙谷畴,彭少麟.植物氮素营养的生理生态学研究[J].生态科学,1998,17(2):39-44. ZHAO Ping,SUN Guchou,PENG Shaolin.Ecophysiological Research on Nitrogen Nutrition of Plant[J].Ecologic Science,1998,17(2):39-44.
- [61] ALBORNOZ F,LIETH J H.Diurnal Macronutrients Uptake Patterns by Lettuce Roots Under Various Light and Temperature Levels[J].Journal of Plant Nutrition,2015,38(12/14):2028-2043.doi:10.1080/01904167.2015.1009098