[1] LU Y X, MU L, YANG H M. Advances in improved soil fertility with legume-grass mixt ures[J]. Chinese Journal of Grassland, 2019, 41(1):94-100 芦奕晓, 牟乐, 杨惠敏. 豆科与禾本科牧草混播改良土壤的研究进展[J]. 中国草地学报, 2019, 41(1):94-100 [2] JIAO N Y, NING T Y, ZHAO C, et al. Studies on characters of photosynthesis in intercropping system of maize and peanut[J]. Acta Agronomica Sinica, 2006, 32(6):917-923 焦念元, 宁堂原, 赵春, 等. 玉米花生间作复合体系光合特性的研究[J]. 作物学报, 2006, 32(6):917-923 [3] LI L, TILMAN D, LAMBERS H, et al. Plant diversity and overyielding:insights from belowground facilitationof intercropping in agriculture[J]. The New Phytologist, 2014, 203(1):63-9 [4] ZHU Y Q, ZHENG W, WANG X, et al. Effects plant spacing pattern on root morphological and architectural characteristics of legume-grass mixtures[J]. Acta Prataculturae Sinica, 2018, 27(1):73-85 朱亚琼, 郑伟, 王祥, 等. 混播方式对豆禾混播草地植物根系构型特征的影响[J]. 草业学报, 2018, 27(1):73-85 [5] ZHANG A M, XU Y M, ZHU J Y, et al. Effects of the coupling water and fertilizer on soil phosphorus components in alfalfa field in Eastern Inner Mongolia, China[J]. Chinese Journal of Applied Ecology, 2021, 32(11):4004-4010 张艾明, 徐玉梅, 朱建宇, 等. 蒙东地区水肥耦合对紫花苜蓿土壤磷组分的影响[J]. 应用生态学报, 2021, 32(11):4004-4010 [6] ZHU Y Q, CHEN X, ZHENG W, et al. Effects of root characteristics on phosphorus use efficiency of orage grass under different phosphorus supply levels[J]. Pratacultural Science, 2023, 40(8):2129-2139 朱亚琼, 陈雪, 郑伟, 等. 混播牧草根系和根际特征对磷素利用效率的影响[J]. 草业科学, 2023, 40(8):2129-2139 [7] LI L, LI S M, SUN J H, et al. Diversity enhances agricultural productivity via rhizosphere phosphorus facilitation on phosphorus-deficient soils[J]. Proceedings of the National Academy of Sciences of the United States of America, 2007, 104(27):11192-6 [8] HU Y. Study on nitrogen and phosphorus utilization characteristics of chinese milk vetch/green manure rapeseed mixed cropping[D]. Wuhan:Huazhong Agricultural University, 2023:5-8 胡宇. 紫云英/绿肥油菜混作体系氮磷养分利用特征研究[D]. 武汉:华中农业大学, 2023:5-8 [9] DAI J, LIU Y L, LI C J, et al. Effects of root distances between intercropped maize and faba bean on the phosphorus uptake of maize under low phosphorus conditions[J]. Journal of China Agricultural University, 2023, 28(6):88-97 戴杰, 刘亚林, 李春杰, 等. 低磷条件下玉米‖蚕豆间作作物根系间距对玉米磷吸收的影响[J]. 中国农业大学学报, 2023, 28(6):88-97 [10] HECTOR A, HAUTIER Y, SANER P, et al. General stabilizing effects of plant diversity on grassland productivity through population asynchrony and overyielding[J]. Ecology, 2010, 91(8):2213-2220 [11] GRIME J P. Plant strategies and vegetation processes[M]. Chichester:Wiley, 1979:69-75 [12] XUE W, HUANG L, DONG B, et al. Patchy distributions of competitors affect the growth of a clonal plant when the competitor density is high[J] PLoS One, 2017, 8(10):e78221 [13] REN Y Y, ZHANG L, YAN M F, et al. Effect of sowing proportion on above-and below-ground competition in maize–soybean intercrops[J]. Scientific Reports, 2021, 11(1):15760 [14] HUANG X, LI C J, NAN Z B. Competitive effects between Medicago sativa and Achnatherum inebrians[J]. Acta Prataculturae Sinica, 2012, 21(1):59-65 黄玺, 李春杰, 南志标. 紫花苜蓿与醉马草的竞争效应[J]. 草业学报, 2012, 21(1):59-65 [15] LI S S, WANG N X, ZHENG W, et al. Comparison of transgressive overyielding effect and plant diversity effects of annual and perennial legume-grass mixtures[J]. Chinese Journal of Plant Ecology, 2021, 2021, 45(1):23-37 黎松松, 王宁欣, 郑伟, 等.一年生和多年生豆禾混播草地超产与多样性效应的比较[J].植物生态学报, 2021, 45(1):23-37 [16] YU H, ZHENG W, ZHANG X H, et al. Effects of spatial structure on the relationship of interspecificcompetition in legume-grass mixtures community[J]. Journal of Xinjiang Agricultural University, 2015, 38(2):87-92 于辉, 郑伟, 张鲜花, 等. 群落空间结构对豆禾混播草地种间竞争关系的影响[J]. 新疆农业大学学报, 2015, 38(2):87-92 [17] DOU Z Y, ZHENG W H, TIAN Y Y, et al. Comprehensive comparison of production performance of annual mixed legume-grass pastures[J]. Pratacultural Science, 2023, 40(10):2639-2650 窦梓镱, 郑伟华, 田燕燕, 等. 一年生豆禾混播草地生产性能的综合比较[J]. 草业科学, 2023, 40(10):2639-2650 [18] ALRUN S, JENS S, CHRISTIANE R. Resource availability alters biodiversity effects in experimental grass-forb mixtures[J]. PloS One, 2016, 11(6):e0158110 [19] KARPENSTEIN-MACHAN M, STUELPNAGEL R. Biomass yield and nitrogen fixation of legumes monocroppedand intercropped with rye and rotation effects on a subsequent maize crop[J]. Plant and Soil, 2000, 218(1-2):215-232 [20] DIMANDE P , ARROBAS M , RODRIGUES Â M .Intercropped maize and cowpea increased the land equivalent ratio and enhanced crop access to more nitrogen and phosphorus compared to cultivation as sole crops[J].Sustainability, 2024, 16(4):1440 [21] ZHU Y Q, GUAN Z X, ZHENG W, et al. Effects of species diversity and community structure on nitrogen use efficiency of mixed legume+grass pastures[J]. Acta Prataculturae Sinica, 2018, 27(10):1-14 朱亚琼, 关正翾, 郑伟, 等. 混播种类和群体结构对豆禾牧草混播系统氮素利用效率的影响[J]. 草业学报, 2018, 27(10):1-14 [22] BONILLA D P, FUENTES J A, HANSEN N C, et al.Winter cereal root growth and aboveground-belowground biomass ratiosas affected by site and tillage system in dryland Mediterranean conditions[J]. Plant and Soil, 2014, 374(1-2):925-939 [23] MALAMY J E. Intrinsic and environmental response pathways that regulate root system architecture[J]. Plant, Cell & Environment, 2005, 28(1):67-77 [24] GUSWA J A. Effect of plant uptake strategy on the water-optimal root depth[J]. Water Resources Research, 2010, 46(9):W09522 [25] MUGGEO V M R. Estimating regression models with unknown break-points[J]. Statistics in medicine, 2003, 22(19):3055-3071 [26] ZHENG W, ZHU J Z, KU E B, et al. Dynamics of interspecific competition of legume-grass mixtureunder different mixed sowing patterns[J]. Acta Agrestia Sinica, 2010, 18(4):568-575 郑伟, 朱进忠, 库尔班, 等. 不同混播方式下豆禾混播草地种间竞争动态研究[J]. 草地学报, 2010, 18(4):568-575 [27] XIE K Y, ZHAO Y, LI X L, et al. Relationships between grasses and legumes in mixed grassland: a review[J]. Acta Prataculturae Sinica, 2013, 22(3):284-296 谢开云, 赵云, 李向林, 等. 豆-禾混播草地种间关系研究进展[J]. 草业学报, 2013, 22(3):284-296 [28] QI J, ZHENG W, ZHANG X H, et al. Determination and comparison of the production performance ofpasturesamong different spatial structure of legume-grass mixtures[J]. Pratacultural Science, 2016, 33(1):116-128 祁军, 郑伟, 张鲜花, 等. 不同豆禾混播模式的草地生产性能[J]. 草业科学, 2016, 33(1):116-128 [29] GUAN Z X, NA E, ZHU Y Q, et al. Effect of different sowing patterns on production performance and soil nutrients in Avena sativa + Vicia sativa mixtures[J]. Pratacultural Science, 2019, 36(3):772-784 关正翾, 娜尔克孜, 朱亚琼, 等. 不同混播方式下燕麦+箭筈豌豆混播草地的生产性能及土壤养分特征[J]. 草业科学, 2019, 36(3):772-784 [30] BAI Y C. Different sowing styles and proportion of alfalfa and elymus sibiricus with the influenceof mixed seeding grass[D]. Hohhot:Inner Mongolia Agricultural University, 2011:25-35 白音仓. 不同播种方式及比例对紫花苜蓿和老芒麦混播草地的影响[D]. 呼和浩特:内蒙古农业大学, 2011:25-35 [31] WEI Z M, SUN B, FANG C, et al. Co-inoculation with rhizobia and azotobacter affects the growth of Vicia villosa[J]. Acta Prataculturae Sinica, 2021, 30(5):94-102 魏志敏, 孙斌, 方成, 等. 根瘤菌与固氮菌联合对毛叶苕子的促生效果[J]. 草业学报, 2021, 30(5):94-102 [32] ZHU Y Q, YU H, ZHENG W, et al. Effects of different planting configurations on yield of Avena sativa and Vicia sativa mixed plantings with soybean in alpine pastures[J]. Acta Prataculturae Sinica, 2020, 29(1):74-85 朱亚琼, 于辉, 郑伟, 等. 燕麦+箭筈豌豆混播草地混播优势的测度与影响因素分析[J]. 草业学报, 2020, 29(1):74-85 [33] PAUL KEDDY L T. Experimental evidence that interspecific competitive asymmetry increases with soil productivity[J]. Oikos, 1997, 80(2):253-256 [34] ZHANG D, LONG H Y, JIN J, et al. Effects of growth interaction effect of leguminous and gramineous pasture intercropping and absorption of nutrient and phosphorus on pasture expression[J]. Acta Prataculturae Sinica, 2018, 27(10):15-22 张德, 龙会英, 金杰, 等. 豆科与禾本科牧草间作的生长互作效应及对氮、磷养分吸收的影响[J]. 草业学报, 2018, 27(10):15-22 [35] TAI J C, ZHANG H Y, YANG H S, et al. Effect of sowing methods on nutrients distribution of soil profiles in mixed grassland (alfalfa+bromus inermis)[J]. Journal of Inner Mongolia University for Nationalities (Natural Sciences), 2009, 24(4):392-396 邰继承, 张宏宇, 杨恒山, 等. 播种方式对紫花苜蓿+无芒雀麦人工草地土壤剖面养分分布的影响[J]. 内蒙古民族大学学报(自然科学版), 2009, 24(4):392-396 [36] NA E K Z, YU H, ZHU Y Q, et al. Effects of different mixed patterns and soil phosphorus level on phosphorus utilization efficiency in mixed grassland of vicia[J]. Journal of Xinjiang Agricultural University, 2019, 42(3):161-169 娜尔克孜, 于辉, 朱亚琼, 等. 不同混播方式和供磷水平对燕麦+箭筈豌豆混播草地磷利用效率的影响[J].新疆农业大学学报, 2019, 42(3):161-169 [37] LITHOURGIDIS A, VASILAKOGLOU I, DHIMA K, et al. Forage yield and quality of common vetch mixtures with oat and triticale in two seeding ratios[J]. Field Crops Research, 2006, 99(2-3):106-113 [38] ZHANG D S, WANG Y Y, TANG L, et al. Effects of wheat and fababean intercropping on available phosphorus of red soils and its relationship with rhizosphere soil pH[J]. Journal of Plant Nutrition and Fertilizers, 2013, 19(1):127-133 张德闪, 王宇蕴, 汤利, 等. 小麦蚕豆间作对红壤有效磷的影响及其与根际pH值的关系[J]. 植物营养与肥料学报, 2013, 19(1):127-133 [39] ZHAO W J, ZHANG L J, CHANG Q, et al. Research progress on organic acid secretion of leguminous plants under low phosphorus stress[J]. Pratacultural Science, 2011, 280(6):1207-1213 赵文杰, 张丽静, 畅倩, 等. 低磷胁迫下豆科植物有机酸分泌研究进展[J]. 草业科学, 2011, 28(6):1207-1213 [40] HINSINGER P, BENGOUGH G A, VETTERLEIN D, et al. Rhizosphere: biophysics, biogeochemistry and ecological relevance[J]. Plant and Soil, 2009, 321(1-2):117-152 [41] M L, A H. Partitioning selection and complementarity in biodiversity experiments[J]. Nature, 2001, 412(6842):72-76 |