Biological nitrogen fixation in trees in agro-ecosystems
暂无分享,去创建一个
[1] Australia.,et al. Nodulation of legumes. , 1957 .
[2] J. Ladha,et al. Estimating N2 fixation by Sesbania rostrata and S. cannabina (syn. S. aculeata) in lowland rice soil by the 15N dilution method , 1990, Biology and Fertility of Soils.
[3] H. G. Diem,et al. Estimating N2 fixation and n derived from soil by Casuarina equisetifolia using labelled 15N Fertilizer: Some problems and solutions , 1990 .
[4] O. N. Allen,et al. The Leguminosae: A Source Book of Characteristics, Uses and Nodulation , 1981 .
[5] W. Stewart,et al. Nodulation and nitrogen-fixation byHippophaë rhamnoides L. in the field , 1967, Plant and Soil.
[6] P. Rundel. Stable Isotopes in Ecological Research , 1989, Ecological Studies.
[7] J. Pate,et al. Comparative Growth and Symbiotic Performance of Seedlings of Acacia spp. in Defined Pot Culture or as Natural Understorey Components of a Eucalypt Forest Ecosystem in S.W. Australia , 1987 .
[8] Y. Dommergues. The role of biological nitrogen fixation in agroforestry. , 1987 .
[9] J. Witty. Estimating N2-fixation in the field using 15N-labelled fertilizer: Some problems and solutions , 1983 .
[10] C. Delwiche,et al. Nitrogen isotope fractionation in soils and microbial reactions , 1970 .
[11] M. Dilworth,et al. Nodulation, nitrogen fixation and nitrogen balance. , 1998 .
[12] W. Jarrell,et al. Ecology of Fast-Growing and Slow-Growing Mesquite-Nodulating Rhizobia in Chihuahuan and Sonoron Desert Ecosystems , 1989 .
[13] Ross A. Virginia,et al. Soil development under legume tree canopies , 1986 .
[14] C. Charreau,et al. Influence de l' Acacia albida Del. sur le sol, nutrition minérale et rendements des Mils Pennisetum au Sénégal , 1965 .
[15] P. Mikola. Tropical mycorrhiza research. , 1980 .
[16] F. Bergersen. Methods for evaluating biological nitrogen fixation , 1980 .
[17] J. Sprent. The biology of nitrogen-fixing organisms. , 1979 .
[18] H. G. Diem,et al. Assessment of N2 fixation by Casuarina equisetifolia inoculated with Frankia ORS021001 using 15N methods , 1985 .
[19] N. Sanginga,et al. Nodulation and growth ofLeucaena leucocephala (Lam.) de Wit as affected by inoculation and N fertilizer , 1988, Plant and Soil.
[20] D. S. Kenney,et al. Commercial vegetative inoculum of Pisolithus tinctorius and inoculation techniques for development of ectomycorrhizae on bare-root tree seedlings. , 1984 .
[21] R. Virginia,et al. Characteristics of Woodland Rhizobial Populations from Surface- and Deep-Soil Environments of the Sonoran Desert , 1989, Applied and environmental microbiology.
[22] F. Selles,et al. The Spatial Variability of Nitrogen-15 and its Relation to the Variability of Other Soil Properties 1 , 1986 .
[23] J. Sprent. Nodulation in Legumes , 2000 .
[24] M. Herrera,et al. Woody Legumes in Arid and Semi-arid Zones: the Rhizobium-Prosopis chilensis Symbiosis , 1988 .
[25] R. Hardy,et al. The acetylene-ethylene assay for n(2) fixation: laboratory and field evaluation. , 1968, Plant physiology.
[26] S. Danso,et al. Dinitrogen Fixation Measurements in Alfalfa‐Ryegrass Swards Using Nitrogen‐15 and Influence of the Reference Crop , 1988 .
[27] M. Fried,et al. Measurement of amount of nitrogen fixed by a legume crop , 1977, Plant and Soil.
[28] S. Danso,et al. Nodulation and growth response ofAllocasuarina andCasuarina species to phosphorus fertilization , 1989, Plant and Soil.
[29] G. Bond,et al. Effect of nitrate-nitrogen on the nodule symbioses of Coriaria and Hippophaë , 1975, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[30] J. Sprent,et al. Occurrence of nodulation in the Leguminosae. , 1989, The New phytologist.
[31] R. J. Volk,et al. Evaluation of the Relative Ureide Content of Xylem Sap as an Indicator of N(2) Fixation in Soybeans: GREENHOUSE STUDIES. , 1980, Plant physiology.
[32] James G. Horsfall,et al. Plant Disease: An Advanced Treatise , 1978 .
[33] G. Shearer,et al. N2-Fixation in Field Settings: Estimations Based on Natural 15N Abundance , 1986 .
[34] P. Ross,et al. Isotopic studies on the uptake of nitrogen by pasture plants. III. The uptake of small additions of 15N-labelled fertilizer by Rhodes grass and Townsville lucerne , 1967 .
[35] F. Zapata,et al. Effect of successive cuttings on uptake and partitioning of 15N among plant parts of Leucaena leucocephala , 1990, Biology and Fertility of Soils.
[36] R. Fogel. Roots as primary producers in below-ground ecosystems , 1985 .
[37] H. A. Habish,et al. Nodulation of Legumes in the Sudan , 1979 .
[38] S. Danso,et al. Genetic variability in symbiotic nitrogen fixation within and between provenances of two Casuarina species using the 15N-labeling methods , 1990 .
[39] J. Pate,et al. Nitrogen Economy of Post-fire Stands of Shrub Legumes in Jarrah (Eucalyptus marginata Donn ex Sm.) Forest of S.W. Australia , 1987 .
[40] P. Reddell,et al. THE EFFECTS OF SODIUM CHLORIDE ON GROWTH AND NITROGEN FIXATION IN CASUARINA OBESA MIQ. , 1986 .
[41] P. Felker,et al. Salinity tolerance of the tree legumes: Mesquite (Prosopis glandulosa var.torreyana, P. velutina andP. articulata) Algarrobo (P. chilensis), Kiawe (P. pallida) and Tamarugo (P. tamarugo) grown in sand culture on nitrogen-free media , 1981, Plant and Soil.
[42] E. Nambiar. Do nutrients retranslocate from fine roots , 1987 .
[43] R. Knowles,et al. Nitrogen fixation in natural plant communities and soils. , 1980 .
[44] F. Zapata,et al. Effect of plant genotype and nitrogen fertilizer on symbiotic nitrogen fixation by soybean cultivars , 1984, Plant and Soil.
[45] D. Herridge. Relative abundance of ureides and nitrate in plant tissues of soybean as a quantitative assay of nitrogen fixation. , 1982, Plant physiology.
[46] S. Danso. Review: estimation of N2-fixation by isotope dilution: an appraisal of techniques involving 15N enrichment and their application. Comments , 1986 .
[47] F. Zapata,et al. Dinitrogen Fixation Estimates in Alfalfa-Ryegrass Swards Using Different Nitrogen-15 Labeling Methods , 1988 .
[48] F. Zapata,et al. Influence of reference trees on N2-fixation estimates inLeucaena leucocephala andAcacia albida using15N-labelling techniques , 1990, Biology and Fertility of Soils.
[49] P. Nair,et al. Agroforestry: A Decade of Development , 1987 .
[50] B. Kang,et al. Effect of pruning intensities of three woody leguminous species grown in alley cropping with maize and cowpea on an alfisol , 1988, Agroforestry Systems.
[51] L. Materon,et al. Nitrogen fixation in two annual Medicago legumes, as affected by inoculation and seed density , 1991 .
[52] W. Jarrell,et al. Depth Distribution and Seasonal Populations of Mesquite‐Nodulating Rhizobia in Warm Desert Ecosystems , 1988 .
[53] H. H. Krause,et al. Nutrient cycling and availability in forest soils , 1986 .
[54] G. Shearer,et al. Estimates of N2-fixation from variation in the natural abundance of 15N in Sonoran desert ecosystems , 1983, Oecologia.
[55] H. G. Diem,et al. Future directions for biological nitrogen fixation research , 1988, Plant and Soil.
[56] J. Halliday,et al. Nodulation, nitrogen fixation, and Rhizobium strain affinities in the genus Leucaena. , 1983 .
[57] A. Domenach,et al. Estimation of symbiotic dinitrogen fixation in alder forest by the method based on natural15N abundance , 1989, Plant and Soil.
[58] G. Shearer,et al. The Nitrogen-15 Abundance in a Wide Variety of Soils , 1978 .
[59] M. L. van Beusichem,et al. Plant Nutrition — Physiology and Applications , 1990, Developments in Plant and Soil Sciences.
[60] G. Bowen,et al. Mycorrhizal roles in tropical plants and ecosystems. , 1980 .
[61] R. Rennie,et al. Techniques for quantifying N2 fixation in association with nonlegumes under field and greenhouse conditions , 1983 .
[62] F. Zapata,et al. The methodology of measurement of N2 fixation by nonlegumes as inferred from field experiments with legumes , 1983 .
[63] R. D. Dela Cruz,et al. Growth of three legume trees inoculated with VA mycorrhizal fungi and Rhizobium , 1988, Plant and Soil.
[64] K. Mulongoy,et al. Effectivity of indigenous rhizobia for nodulation and early nitrogen fixation with Leucaena leucocephala grown in nigerian soils , 1989 .
[65] L. Materon,et al. Nitrogen Fixation by Legumes in Mediterranean Agriculture , 1988, Developments in Plant and Soil Sciences.
[66] E. Duhoux,et al. Improvement of nitrogen fixation by Casuarina equisetifolia through Clonal selection: A research note , 1987 .
[67] G. Bowen. Chapter 11 – Dysfunction and Shortfalls in Symbiotic Responses , 1978 .
[68] M. Kvarnström,et al. Nitrogen fixation by the woody legumeLeucaena leucocephala in Tanzania , 1982, Plant and Soil.
[69] W. Stewart,et al. The effect of ammonium nitrogen on fixation of elemental nitrogen inAlnus andMyrica , 1961, Plant and Soil.
[70] B. Dreyfus,et al. Nodulation of acacia species by fast- and slow-growing tropical strains of Rhizobium. , 1981, Applied and environmental microbiology.
[71] P. Langkamp,et al. Nitrogen fixation (acetylene reduction) by Acacia pellita on areas restored after mining at Groote Eylandt, Northern Territory , 1979 .
[72] G. Y. Chang,et al. Spatial variability of nitrogen-15 and total nitrogen in some virgin and cultivated soils. , 1980 .
[73] G. Shearer,et al. Seasonal dynamics of nitrogen cycling for a Prosopis woodland in the Sonoran Desert , 1982 .
[74] G. Shearer,et al. Estimates of N2 Fixation in Ecosystems: The Need for and Basis of the 15N Natural Abundance Method , 1989 .
[75] F. Zapata,et al. Effect of successive cutting on nodulation and nitrogen fixation of Leucaena leucocephala using 15N dilution and the difference methods , 1990 .
[76] A. Fitter,et al. Ecological Interactions in Soil. , 1986 .
[77] A. Lawrie. Relationships Among Rhizobia from Native Australian Legumes , 1983, Applied and environmental microbiology.
[78] S. Danso,et al. Assessment of genetic variability for N2 fixation between and within provenances of Leucaena leucocephala and Acacia albida estimated by 15N labelling techniques , 1990, Plant and Soil.
[79] P. Felker,et al. Biomass estimation in a young stand of mesquite (Prosopis spp.), ironwood (Olneya tesota), palo verde (Cercidium floridium, and Parkinsonia aculeata), and leucaena (Leucaena leucocephala). , 1982 .
[80] P. Högberg. Soil nutrient availability, root symbioses and tree species composition in tropical Africa: a review , 1986, Journal of Tropical Ecology.
[81] F. Minchin,et al. Measurement of Nitrogen Fixation by the Acetylene Reduction Assay; Myths and Mysteries , 1988 .
[82] J. Aber,et al. Fine Roots, Net Primary Production, and Soil Nitrogen Availability: A New Hypothesis , 1985 .
[83] J. Roskoski. Nodulation and N2-fixation byInga jinicuil, a woody legume in coffee plantations , 1981, Plant and Soil.
[84] D. Zobel,et al. Ecological aspects of nitrogen fixation by Purshia tridentata , 1977, Plant and Soil.
[85] Joint Fao,et al. Root activity patterns of some tree crops : results of a five-year coordinated research programme of the joint FAO/IAEA Division of Atomic Energy in Food and Agriculture , 1975 .
[86] M. Fried,et al. An independent measurement of the amount of nitrogen fixed by a legume crop , 1975, Plant and Soil.
[87] J. Pate,et al. Evaluation of the 15N Natural Abundance Method and Xylem Sap Analysis for Assessing N2 Fixation of Understorey Legumes in Jarrah (Eucalyptus marginata Donn ex Sm.) Forest in S.W. Australia , 1987 .
[88] S. Khairi,et al. Nodulation of Legumes in the Sudan II. Rhizobium Strains and Cross-Inoculations of Acacia Spp , 1970, Experimental Agriculture.
[89] H. Ssali,et al. Biological nitrogen fixation in Africa , 1984 .
[90] S. Danso,et al. Nitrogen Fixation in a White Clover-Fescue Pasture Using Three Methods of Nitrogen-15 Application and Residual Nitrogen-15 Uptake , 1988 .
[91] Y. Barnet,et al. Biological Nitrogen Fixation and Root-Nodule Bacteria (Rhizobium Sp. and Bradyrhizobium Sp.) In Two Rehabilitating Sand Dune Areas Planted With Acacia Spp , 1985 .
[92] C. Kessel,et al. Ureide production by N2-fixing and non-N2-fixing leguminous trees , 1988 .
[93] B. Dreyfus,et al. N2 fixation by Sesbania rostrata and Sesbania sesban estimated using 15N and total N difference methods , 1988 .
[94] I. Vallis,et al. Uptake of soil nitrogen by legumes in mixed swards , 1977 .
[95] O. Odak. Kakapeli and Other Recently Discovered Rock Paintings in the Western Highlands of Kenya , 1977 .
[96] R. Lal. Agroforestry systems and soil surface management of a tropical alfisol , 1989, Agroforestry Systems.
[97] A. Mariotti. Atmospheric nitrogen is a reliable standard for natural 15N abundance measurements , 1983, Nature.
[98] D. S. Chamblee,et al. Influence of Inorganic Nitrogen on Nitrogen Fixation by Legumes as Revealed by N151 , 1958 .
[99] H. A. Habish. Effect of certain soil conditions on nodulation ofAcacia spp. , 1970, Plant and Soil.
[100] J. Ladha,et al. Stem-nodulating legumes as green manures for lowland rice. , 1988 .
[101] J. Duffy,et al. A Steady-State Model of Isotopic Fractionation Accompanying Nitrogen Transformations in Soil1 , 1974 .
[102] G. Bond,et al. Diurnal changes in nitrogen fixation in the root nodules of Casuarina , 1975, Proceedings of the Royal Society of London. Series B. Biological Sciences.
[103] A. Domenach,et al. Influence des réserves azotées sur la formation des feuilles d’Alnus glutinosa et ses conséquences dans l'estimation de la fixation d'azote , 1989 .
[104] P. Reddell,et al. THE EFFECTS OF SOIL TEMPERATURE ON PLANT GROWTH, NODULATION AND NITROGEN FIXATION IN CASUARINA CUNNINGHAMIANA MIQ. , 1985, The New phytologist.
[105] S. Danso,et al. Assessment of potential sources of error in nitrogen fixation measurements by the nitrogen-15 isotope dilution technique , 1990, Plant and Soil.
[106] G. Shearer,et al. Seasonal dynamics of nitrogen cycling for a Prosopis woodland in the Sonoran Desert , 1982, Plant and Soil.
[107] S. Danso,et al. Intra-specific variation in growth and P accumulation of Leucaena leucocephala and Gliricidia sepium as influenced by soil phosphate status , 1991, Plant and Soil.
[108] P. Reddell,et al. Nodulation of Casuarinaceae in relation to host species and soil properties. , 1986 .