[1] 杨文钰, 雍太文, 任万军, 等. 发展套作大豆, 振兴大豆产业[J]. 大豆科学, 2008, 27(1): 1-7. [2] 雍太文, 任万军, 杨文钰, 等. 旱地新三熟“麦/玉/豆”模式的内涵、特点及栽培技术[J]. 耕作与栽培, 2006, (6): 48-50. [3] Li L, Sun J H, Zhang F S, et al. Wheat/maize or wheat/soybean strip intercropping I. Yield advantage and interspecific interactions on nutrients[J]. Field Crops Research, 2001, 71: 123-137. [4] Eaglesham A R J, Ayanaba A, Rao V R. Improving the nitrogen nutrition of maize by intercropping with cowpea[J]. Soil Biology & Biochemistry, 1981, 13: 169-171. [5] 张桂国, 董树亭, 杨在宾. 苜蓿+玉米间作系统产量表现及其种间竞争力的评定[J]. 草业学报, 2011, 20(1): 22-30. [6] Searle P G E, Comudom Y, Shedden D C, et al. Effect of maize + legume intercropping system and fertilizer nitrogen on crop yields and residual nitrogen[J]. Field Crop Research, 1981, 4: 133-145. [7] Vandeneer J H. The Economy of Intercropping[M]. Cambridge: Cabridge university Press: 1989. [8] Xiao Y B, Li L, Zhang F S. Effect of root contact on interspecific competition and N transfer between wheat and fababean using direct and indirect 15N techniques[J]. Plant and Soil, 2004, 262(1):45-54. [9] Stern W R. Nitrogen fixation and transfer in intercrop systems[J]. Field Corp Research, 1993, 34: 335-356. [10] Jordan V, Rice C W, Tiedie J M. The effect of suppression treatments on the uptake of 15N by intercropped maize from labeled alfalfa[J]. Biology and Fertility of Soils, 1993, 16(3): 211-226. [11] Hamel C, Smith D L. Inerspecific N-transfer and plant development in a mycorrhizal field-grown mixture[J]. Soil Biology & Biochemistry, 1991, 23: 661-665. [12] 华珞, 韦东普, 白玲玉, 等. 氮锌硒肥配合施用对白三叶草的固氮作用与氮素转移的影响[J]. 生态学报, 2001, 21(4): 588-592. [13] Shen Q R, Zhu G X. Bi-directional nitrogen transfer in an intercropping system of peanut with rice cultivated in aerobic soil[J]. Biol Fertil Soils, 2004, 40: 81-87. [14] 王平, 周道玮, 姜世成. 半干旱地区禾-豆混播草地生物固氮作用研究[J]. 草业学报, 2010, 19(6): 276-280. [15] 王竹, 杨文钰, 伍晓燕, 等. 玉米株型和幅宽对套作大豆初花期形态建成及产量的影响[J]. 应用生态学报, 2008, 19(2): 323-329. [16] 张含彬, 任万军, 杨文钰. 不同施氮量对套作大豆根系形态与生理特性的影响[J]. 作物学报, 2007, 33(1): 107-112. [17] 王竹, 杨文钰, 吴其林. 玉/豆套作荫蔽对大豆光合特性与产量的影响[J]. 作物学报, 2007, 33(9): 1502-1507. [18] 雍太文, 杨文钰, 樊高琼. “麦/玉/豆”套作种植模式氮肥周年平衡施用初步研究[J]. 中国土壤与肥料, 2009, 211(3): 31-35. [19] 闫艳红, 杨文钰, 张静, 等. 叶面喷施烯效唑对大豆产量及品质的影响[J]. 草业学报, 2010, 19(4): 251-254. [20] Morris R A, Garrity D P. Resource capture and utilization in intercropping: non-nitrogen nutrients[J]. Field Crops Research, 1993, 34: 319-334. [21] Ofosu-Budu K G, Fujita K, Gamo K. Nitrogen fixation and nitrogen release from roots of soybean cultivar brag and its mutants Nts1116 and Nts1007[J]. Soil Science &Plant Nutrition, 1993, 39: 497-506. [22] Johanson A, Jenson E S. Transfer of N and P from intact or decomposing roots of pea to barley interconnected by an arbuscular mycorrhizal fungus[J]. Soil Biology & Biochemistry, 1996, 28: 73-81. [23] Danso S K A, Palmason F, Hardarson G. Is nitrogen transfer between field crops? Examining the question through a sweet-blue lupin (Lupinus angustfolius L.) -oats (Avena sativa) intercrop[J]. Soil Biology & Biochemistry, 1993, 25: 1135-1137. [24] Trannin W S, Urquiaga S, Ibijbijen J. Interspecies competition and N transfer in a tropical grass-legume mixture[J]. Biology and Fertility of Soils, 2000, 32: 441-448. [25] Papastylianou, Danso S K A. Nitrogen fixation and transfer in vetgh and vetgh-oats mixtures[J]. Soil Biology & Biochemistry, 1991, 23: 447-452. [26] Li W X, Li L, Sun J H, et al. Effects of intercropping and nitrogen application on nitrate present in the profile of an Orthic Anthrosol in Northwest China[J]. Agriculture, Ecosystems and Environment, 2005, 105: 483-491. [27] 叶优良, 李隆, 索东让. 小麦/玉米和蚕豆/玉米间作对土壤硝态氮累积和氮素利用效率的影响[J]. 生态环境, 2008, 17(1): 377-383. [28] Willey R W. Intercropping-its impotence and research needs. Part1. Competition and yield advantages[J]. Field Crop Abstract, 1979, 32: 1-10. [29] 肖焱波, 李隆, 张福锁. 小麦/蚕豆间作体系中的种间相互作用及氮转移研究[J]. 中国农业科学, 2005, 38(5): 965-973. |