陕西师范大学地理科学与旅游学院,西安,710000
[ "刘均阳(1987-),女,在读博士研究生,主要从事土壤侵蚀与水土保持研究。E-mail:236123705@qq.com" ]
纸质出版:2020
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刘均阳, 周正朝, 苏雪萌. 植物根系对土壤团聚体形成作用机制研究回顾[J]. 水土保持学报, 2020,34(3):267-273.
LIU Junyang, ZHOU Zhengchao, SU Xuemeng. Review of the Mechanism of Root System on the Formation of Soil Aggregates[J]. 2020, 34(3): 267-273.
刘均阳, 周正朝, 苏雪萌. 植物根系对土壤团聚体形成作用机制研究回顾[J]. 水土保持学报, 2020,34(3):267-273. DOI: 10.13870/j.cnki.stbcxb.2020.03.040.
LIU Junyang, ZHOU Zhengchao, SU Xuemeng. Review of the Mechanism of Root System on the Formation of Soil Aggregates[J]. 2020, 34(3): 267-273. DOI: 10.13870/j.cnki.stbcxb.2020.03.040.
土壤团聚体是土壤结构的基本单元,土壤水力侵蚀的微观描述即为土壤团聚体的破裂过程。研究表明:植物根系可以改变土壤的力学以及水文特征,促进土壤团聚体的形成和稳定。因此,对近20年国内外的相关研究成果进行较为系统的回顾,从根系对土壤团聚体的物理、生物、电化学作用3个研究视角,分析了植物根系对土壤团聚体形成的作用机制,提出了现有研究中存在的问题及研究趋势,这对深入认识植物根系对土壤团聚体的影响及其作用机制、发展根-土相互作用的土壤侵蚀过程模型具有重要的意义。
Soil aggregate is the basic unit of soil structure and the microscopic description of soil hydraulic erosion is the fracture process of soil aggregate. According to the research data
plant roots have the ability to change the mechanical and hydrological characteristics of soil and promote the formation and stability of soil aggregates. Therefore
this paper makes a systematic review of the relevant research results at domestic and abroad in the past 20 years
analyzed the mechanism of plant roots on the formation of soil aggregates
and put forward the existing problems and research trends from the perspectives of the physical
biological and electrochemical studies on soil aggregates by roots. It is of great significance to deeply understand the effect of plant roots on formation and stability of soil aggregates
and to develop the soil erosion process model of root-soil interaction.
赵京考,刘作新,韩永俊.土壤团聚体的形成与分散及其在农业生产上的应用[J].水土保持学报,2003,17(6):163-166.
Bernard B, Roose E. Aggregate stability as an indicator of soil susceptibility to runoff and erosion; validation at several levels[J].Catena,2002,47(2):133-149.
Cédric L, Leguedois S, Bissonnais Y L. Aggregate breakdown dynamics under rainfall compared with aggregate stability measurements[J].European Journal of Soil Science,2010,56(2):225-238.
Le Bissonnais Y. Aggregate stability and assessment of soil crustability and erodibility:I. Theory and methodology[J].European Journal of Soil Science,2010,48(1):39-48.
Zhu G Y, Shangguan Z P, Deng L. Soil aggregate stability and aggregate-associated carbon and nitrogen in natural restoration grassland and Chinese red pine plantation on the Loess Plateau[J].Catena,2017,149:253-260.
Zhang G H, Tang K M, Ren Z, et al. Impact of grass root mass density on soil detachment capacity by concentrated flow on steep slopes[J].Transactions of the Asabe,2013,56(3):927-934.
杨帆,程金花,张洪江,等.坡面草本植物对土壤分离及侵蚀动力的影响研究[J].农业机械学报,2016,47(5):129-137.
Fattet M, Fu Y, Ghestem M, et al. Effects of vegetation type on soil resistance to erosion:Relationship between aggregate stability and shear strength[J].Catena,2011,87:60-69.
Gale W J, Cambardella C A, Bailey T B. Root-derived carbon and the formation and stabilization of aggregates[J].Soil Science Society of America Journal,2000,64(1):201-207.
Fernando D L, Gutiérrez C, González C, et al. Root-aggregation in a pumiceous sandy soil[J].Geoderma,2007,142:308-317.
Vannoppen W, Baets S D, Keeble J, et al. How do root and soil characteristics affect the erosion-reducing potential of plant species?[J].Ecological Engineering,2017,109:186-195.
Hudek C, Stanchi S, Amico D, et al. Quantifying the contribution of the root system of alpine vegetation in the soil aggregate stability of moraine[J].International Soil and Water Conservation Research,2017,5(1):36-42.
Vergani C, Graf F. Soil permeability, aggregate stability and root growth:A pot experiment from a soil bioengineering perspective[J].Ecohydrology,2016,9(5):830-842.
Demenois J, Carriconde F, Bonaventure P, et al. Impact of plant root functional traits and associated mycorrhizas on the aggregate stability of a tropical Ferralsol[J].Geoderma,2018,312:6-16.
Erktan A, Cécillon L, Graf F, et al. Increase in soil aggregate stability along a Mediterranean successional gradient in severely eroded gully bed ecosystems:Combined effects of soil, root traits and plant community characteristics[J].Plant and Soil,2016,398(1/2):121-137.
Xiao L, Yao K H, Li P, et al. Increased soil aggregate stability is strongly correlated with root and soil properties along a gradient of secondary succession on the Loess Plateau[J].Ecological Engineering,2020,143:1-9.
Li Q, Liu G B, Zhang Z, et al. Relative contribution of root physical enlacing and biochemistrical exudates to soil erosion resistance in the Loess soil[J].Catena,2017,153:61-65.
万海霞,马璠,许浩,等.宁夏南部黄土丘陵区典型草本群落根系垂直分布特征与土壤团聚体的关系[J].水土保持研究,2019,26(6):80-86.
Bert R, Jean P, Frédéric D, et al. The role of fine and coarse roots in shallow slope stability and soil erosion control with a focus on root system architecture:A review[J].Trees,2007,21:385-402.
Fan C C, Chen Y W. The effect of root architecture on the shearing resistance of root-permeated soils[J].Ecological Engineering,2010,36(6):813-826.
Li Y P, Wang Y Q, Ma C, et al. Influence of the spatial layout of plant roots on slope stability[J]. Ecological Engineering,2016,91:477-486.
Roering J J, Schmidt K M, Stock J D, et al. Shallow landsliding, root reinforcement, and the spatial distribution of trees in the Oregon Coast Range[J].Canadian Geotechnical Journal,2003,40(2):237-253.
黄昌勇,徐建明.土壤学[M].3版.北京:中国农业出版社,2010:44-57.
宋日,刘利,马丽艳,等.作物根系分泌物对土壤团聚体大小及其稳定性的影响[J].南京农业大学学报,2009,32(3):93-97.
Bengough A G. Water dynamics of the root zone:Rhizosphere biophysics and its control on soil hydrology[J].Vadose Zone Journal,2012,11(2):1-6.
Wang Y X, Ran L S, Fang N F, et al. Aggregate stability and associated organic carbon and nitrogen as affected by soil erosion and vegetation rehabilitation on the Loess Plateau[J].Catena,2018,167:257-265.
王心怡,周聪,冯文瀚,等.不同林龄杉木人工林土壤团聚体及其有机碳变化特征[J].水土保持学报,2019,33(5):126-131.
Guo Y F, Fan R Q, Zhang X P, et al. Tillage-induced effects on SOC through changes in aggregate stability and soil pore structure[J]. Science of The Total Environment,2019,703:1-9.
程洪,颜传盛,李建庆,等.草本植物根系网的固土机制模式与力学试验研究[J].水土保持研究,2006,13(1):62-65.
Schutter M E, Dick R P. Microbial community profiles and activities among aggregates of winter fallow and cover cropped soil[J].Soil Science Society of America Journal,2002,66(1):142-153.
Berg G, Smalla K. Plant species and soil type cooperatively shape the structure and function of microbial communities in the rhizosphere[J].FEMS Microbiology Ecology,2009,68(1):1-13.
Wu Q S, Srivastava A K, Cao M Q, et al. Mycorrhizal function on soil aggregate stability in root zone and root-free hyphae zone of trifoliate orange[J].Archives of Agronomy and Soil Science,2015,61(6):813-825.
Zhang H Q, Liu Z K, Chen H, et al. Symbiosis of arbuscular mycorrhizal fungi and
Robinia pseudoacacia
L. improves root tensile strength and soil aggregate stability[J].PLos One,2016,11(4):1-12.
Graf F, Frei M. Soil aggregate stability related to soil density, root length, and mycorrhiza using site-specific Alnus incana and Melanogaster variegatus[J].Ecological Engineering,2013,57:314-323.
Zhang Z F, Azim M, Zhang J C, et al. Effects of arbuscular mycorrhizal fungi on inoculated seedling growth and rhizop-here soil aggregates[J].Soil and Tillage Research,2019,194:1-7
Bedini S, Pellegrino E, Avio L, et al. Changes in soil aggregation and glomalin-related soil protein content as affected by the arbuscular mycorrhizal fungal species Glomus mosseae and Glomus intraradices[J].Soil Biology and Biochemistry,2009,41(7):1491-1496.
Ambriz E A, Báez-Pérez J M, Sánchez Y, et al. Fraxinus-Glomus-Pisolithus symbiosis:Plant growth and soil aggregation effects[J].Pedobiologia,2010,53(6):369-373.
Bearden B N, Petersen L. Influence of arbuscular mycorrhizal fungi on soil structure and aggregate stability of a vertisol[J].Plant and Soil,2000,218(1/2):173-183.
Rillig M C, Mummey D L. Mycorrhizas and soil structure[J].New Phytologist,2006,171(1):41-53.
Li Z J, Shukla V, Wenger K, et al. Estimation of hyphal tensile strength in production-scale aspergillus oryzae fungal fermentations[J].Biotechnology and Bioengineering,2002,77(6):601-613.
Caesar-Tonthat T C, Shelver W L, Thorn R G, et al. Generation of antibodies for soil aggregating basidiomycete detection as an early indicator of trends in soil quality[J].Applied Soil Ecology,2001,18(2):99-116.
Tagu D, Bellis R D, Balestrini R M, et al. Immuno-localization of hydrophobin HYDPt-1 from the ectomycorrhizal basid-iomycete Pisolithus tinctorius during colonization of Eucalyptus globulus roots[J].New Phytologist,2001,149:127-135.
Mankel A, Krause K, Kothe E. Identifification of hydrophobin gene that is developmentally regulated in the ectomycorrh-izal fungus Tricholoma terreum[J].Applied Environmental Microbiology,2002,68:1408-1413.
肖玖军,邢丹,毛明明,等.AM真菌对桑树根围土壤团聚体的影响机制[J].土壤学报,2020,57(3):773-782.
Augé R M. Arbuscular mycorrhizae and soil/plant water relations[J].Canadian Journal of Soil Science,2004,84:373-381.
Graf F, Frei M, Schwarz M, et al. Use and importance of mycorrhiza in site-specific restoration[J].Soil-bioengineering:Ecological Restoration with Native Plant and Seed Material,2006:155-160.
Zhao F Z, Fan X D, Ren C J, et al. Changes of the organic carbon content and stability of soil aggregates affected by soil bacterial community after afforestation[J].Catena,2018,171:622-631.
谌芸,祝亚军,何丙辉.三峡库区狗牙根根系固坡抗蚀效应研究[J].水土保持学报,2010,24(6):44-47.
Liu J L, Ngoc H, Shen Z, et al. Response of the rhizosphere microbial community to fine root and soil parameters following
Robinia pseudoacacia
L. afforestation[J].Applied Soil Ecology,2018,132:11-19.
Narula N, Kothe E, Behl R K. Role of root exudates in plant-microbe interactions[J].Journal of Applied Botany and Food Quality,2008,82(2):122-130.
何欢,王占武,胡栋,等.根系分泌物与根际微生物互作的研究进展[J].河北农业科学,2011,15(3):69-73.
Germida J J, Siciliano S D. Taxonomic diversity of bacteria associated with the roots of modern, recent and ancient wheat cultivars[J].Biology and Fertility of Soils,2001,33(5):410-415.
肖春萍,杨利民,马锋敏.栽培年限对人参根际土壤微生物活性及微生物量的影响[J].中国中药杂志,2014,39(24):4740-4747.
吴军虎,邵凡凡,刘侠.蚯蚓粪对土壤团聚体组成和入渗过程水分运移的影响[J].水土保持学报,2019,33(3):81-87.
Zhu X Y, Hu Y C, Wang W. Earthworms promote the accumulation of maize root-derived carbon in a black soil of Northeast China, especially in soil from long-term no-till[J].Geoderma,2019,340:124-132.
Coq S, Bernard G, Oliver R, et al. Earthworm activity affects soil aggregation and organic matter dynamics according to the quality and localization of crop residues:An experimental study (Madagascar)[J].Soil Biology and Biochemistry,2007,39(8):2119-2128.
Hu F, Xu C, Li H, et al. Particles interaction forces and their effects on soil aggregates breakdown[J].Soil and Tillage Research,2015,147:1-9.
马任甜,胡斐南,刘婧芳,等.黄土高原植被恢复过程中土壤表面电化学性质的演变特征[J].土壤学报,2020,57(2):392-402.
Li S, Li H, Xu C Y, et al. Particle interaction forces induce soil particle transport during rainfall[J].Soil Science Society of America Journal,2013,77(5):1563-1571.
李嵩.离子界面反应对土壤侵蚀强度的影响[D].重庆:西南大学,2015.
黄学茹,李航,李嵩,等.土壤电场与有机大分子的耦合对土壤团聚体稳定性的影响[J].土壤学报,2013,50(4):734-742.
Xu C Y, Yu Z H, Li H. The coupling effects of electric field and clay mineralogy on clay aggregate stability[J].Journal of Soils and Sediments,2015,15(5):1159-1168.
Li H, Qing C L, Wei S Q, et al. An approach to the method for determination of surface potential on solid/liquid interface:Theory[J].Journal of Colloid and Interface Science,2004,275(1):172-176.
陈晶晶.基于表面电场驱动土壤侵蚀理论下的植物篱措施水力侵蚀控制过程研究[D].重庆:西南大学,2014.
张磊,徐则民,侯汝几,等.植被发育玄武岩斜坡土体基质吸力及其影响因素[J].山地学报,2016,34(5):513-519.
李学恒.土壤化学[M].北京:高等教育出版社,2001:106-126.
张继澍.植物生理学[M].北京:高等教育出版社,2006:88-89.
Gyssels G, Poesen J, Bochet E, et al. Impact of plant roots on the resistance of soils to erosion by water:A review[J].Progress in Physical Geography,2005,29:189-217.
Duiker S W, Flanagan D C, Lal R. Erodibility and infiltration characteristics of five major soils of southwest Spain[J].Catena,2001,45:103-121.
陈宝强,张丹,熊东红,等.元谋干热河谷坡面表层土壤力学特性对其抗冲性的影响[J].农业工程学报,2012,28(5):108-113.
卢金伟,李占斌.土壤团聚体研究进展[J].水土保持研究,2002,9(1):81-85.
Yan F L, Shi Z H, Li Z X, et al. Estimating interrill soil erosion from aggregate stability of Ultisols in subtropical China[J].Soil and Tillage Research,2008,100:34-41.
Stokes A, Salin F, Kokutse A D, et al. Mechanical resistance of different tree species to rockfall in the French Alps[J]. Plant and Soil,2005,278(1/2):107-117.
De B S, Poesen J, Gyssels G, et al. Effects of grass roots on the erodibility of topsoils during concentrated flow[J].Geo-morphology,2006,76(1/2):54-67.
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