[1] KUSI N Y O,TEMU V W,KERING M K,et al. Growth response of alfalfa to Azomite composite micronutrient fertilizer on four lime-amended Virginia soils[J]. Grassland Science,2021,67(3):225-233 [2] ROBINS J G,JENSEN K B,WALDRON B L,et al. Irrigation amount and ploidy affect the turfgrass potential of crested wheatgrass (Agropyron cristatum)[J]. Grassland Science,2020,66(1):48-53 [3] JONKER A,YU P. The role of proanthocyanidins complex in structure and nutrition interaction in alfalfa forage[J]. International Journal of Molecular Sciences,2016,17(5):793 [4] ERKOVAN Ş,İLERI O,ERKOVAN H I,et al. Irrigation and phosphorus management of alfalfa under semi-arid conditions[J]. Turkish Journal of Field Crops,2022,27(2):265-275 [5] JONKER A,YU P. The role of proanthocyanidins complex in structure and nutrition interaction in alfalfa forage[J]. International Journal of Molecular Sciences,2016,17(5):793 [6] ERKOVAN Ş,ILERI O,ERKOVAN H I,et al. Irrigation and phosphorus management of alfalfa under semi-arid conditions[J]. Turkish Journal of Field Crops,2022,27(2):265-275 [7] LIU M,WANG Z,MU L,et al. Effect of regulated deficit irrigation on alfalfa performance under two irrigation systems in the inland arid area of midwestern China[J]. Agricultural Water Management,2021,248:106764 [8] NI Y,GUO Y J,GUO Y J,et al. Leaf cuticular waxes and physiological parameters in alfalfa leaves as influenced by drought[J]. Photosynthetica,2012,50:458-466 [9] DíAZ F J,GRATTAN S R,REYES J A,et al. Using saline soil and marginal quality water to produce alfalfa in arid climates[J]. Agricultural Water Management,2018,199:11-21 [10] YU L X. Identification of single-nucleotide polymorphic loci associated with biomass yield under water deficit in alfalfa (Medicago sativa L.) using genome-wide sequencing and association mapping[J]. Frontiers in plant science,2017,8:1152 [11] CAO Y,CAI H. Effects of growth stage-based limited irrigation management on soil CO2 and N2O emissions,winter wheat yield and nutritional quality[J]. Agronomy,2022,12(4):952 [12] ANAPALLI S S,FISHER D K,PINNAMANENI S R,et al. Quantifying evapotranspiration and crop coefficients for cotton (Gossypium hirsutum L.) using an eddy covariance approach[J]. Agricultural Water Management,2020,233:106091 [13] CAVERO J,FACI J M,MEDINA E T,et al. Alfalfa forage production under solid-set sprinkler irrigation in a semiarid climate[J]. Agricultural Water Management,2017,191:184-192 [14] KUSLU Y,SAHIN U,TUNC T,et al. Determining water-yield relationship,water use efficiency,seasonal crop and pan coefficients for alfalfa in a semiarid region with high altitude[J]. Bulgarian Journal of Agricultural Science,2010,16(4):482-492 [15] JAKIŠIĆ T,BERJAN S. Determining the need of alfalfa for water in the conditions of sarajevo area (bosnia and herzegovina).[J]. Agrofor,2016,1(2):148-153 [16] KARIMOV A K,ŠIMU°NEK J,HANJRA M A,et al. Effects of the shallow water table on water use of winter wheat and ecosystem health:Implications for unlocking the potential of groundwater in the Fergana Valley (Central Asia)[J]. Agricultural water management,2014,131:57-69 [17] ANAPALLI S S,AHUJA L R,GOWDA P H,et al. Simulation of crop evapotranspiration and crop coefficients with data in weighing lysimeters[J]. Agricultural Water Management,2016,177:274-283 [18] DJAMAN K,SMEAL D,KOUDAHE K,et al. Hay yield and water use efficiency of alfalfa under different irrigation and fungicide regimes in a semiarid climate[J]. Water,2020,12(6):1721 [19] LINDENMAYER R B,HANSEN N C,BRUMMER J,et al. Deficit irrigation of alfalfa for water-savings in the Great Plains and Intermountain West:A review and analysis of the literature[J]. Agronomy Journal,2011,103(1):45-50 [20] CAO X,FENG Y,LI H,et al. Effects of subsurface drip irrigation on water consumption and yields of alfalfa under different water and fertilizer conditions[J]. Journal of Sensors,2021,2021:1-12 [21] ATTIA M M,SEIAM M A,SALLAM A A,et al. Effect of irrigation regimes on alfalfa productivity and quality under saline calcareous soil conditions[J]. Journal of Plant Production,2019,10(12):1131-1138 [22] PAYERO J O,IRMAK S. Daily energy fluxes,evapotranspiration and crop coefficient of soybean[J]. Agricultural Water Management,2013,129:31-43 [23] ZHENG H,WANG B,CAO X,et al. Optimization of subsurface drip irrigation schedule of alfalfa in northwest China[J]. Water,2023,15(12):2242 [24] FERERES E,SORIANO M A. Deficit irrigation for reducing agricultural water use[J]. Journal of experimental botany,2007,58(2):147-159 [25] DRY P R,LOVEYS B R,MCCARTHY M G,et al. Strategic irrigation management in Australian vineyards[J]. CEno One,2001,35(3):129-139 [26] SUN L,YANG Y,HU J,et al. Reinforcement learning control for water-efficient agricultural irrigation[C]//2017 IEEE international symposium on parallel and distributed processing with applications and 2017 IEEE international conference on ubiquitous computing and communications (ISPA/IUCC). IEEE,2017:1334-1341 [27] AL-NAJI A,FAKHRI A B,GHARGHAN S K,et al. Soil color analysis based on a RGB camera and an artificial neural network towards smart irrigation:A pilot study[J]. Heliyon,2021,7(1):e06078 [28] MADHUMATHI R,ARUMUGANATHAN T,VIMAL T,et al. A lora based wireless smart irrigation system[C]//2022 6th international conference on Electronics,communication and aerospace technology. IEEE,2022:514-517 [29] LIANG Z,LIU X,XIAO J,et al. Review of conceptual and systematic progress of precision irrigation[J]. International Journal of Agricultural and Biological Engineering,2021,14(4):20-31 [30] KHAN N,RAY R L,SARGANI G R,et al. Current progress and future prospects of agriculture technology:Gateway to sustainable agriculture[J]. Sustainability,2021,13(9):4883 [31] FATHY C,ALI H M. A secure IoT-based irrigation system for precision agriculture using the expeditious cipher[J]. Sensors,2023,23(4):2091 [32] JAYANT B,DAHIYA K,RUKHIYAR A,et al. A review of the drip irrigation system[J]. Journal of Engineering Research and Application,2022,1(1):22-29 [33] YURCHENKO I. Perspective technologies of innovative irrigation[J]. Land reclamation and hydraulic engineering,2022,12(4):233-245 [34] ERKOVAN Ş,İLERI O,ERKOVAN H,et al. Irrigation and phosphorus management of alfalfa under semi-arid conditions[J]. Turkish Journal of Field Crops,2022,27(2):265-275 [35] MONTAZAR A,BACHIE O,CORWIN D,et al. Feasibility of moderate deficit irrigation as a water conservation tool in California’s low desert alfalfa[J]. Agronomy,2020,10(11):1640 [36] ZHANG Q,LIU J,LIU X,et al. Optimizing water and phosphorus management to improve hay yield and water- and phosphorus- use efficiency in alfalfa under drip irrigation[J]. Food Science & Nutrition,2020,8(5):2406-2418 [37] PERVEZ A,RAZZAQ A,FAROOQ M,et al. Role of boric acid on economic seed production of alfalfa under climatic conditions of Sargodha[J]. World Journal of Biology and Biotechnology,2020,5(1):37-39 [38] ZEYLIGER A M,ERMOLAEVA O S. Water stress regime of irrigated crops based on remote sensing and ground-based data[J]. Agronomy,2021,11(6):1117 [39] KANATAS P,GAZOULIS I,TRAVLOS I. Irrigation timing as a practice of effective weed management in established alfalfa (Medicago sativa L.) crop[J]. Agronomy,2021,11(3):550 [40] WEYERS S,ARCHER D,FORCELLA F,et al. Can reducing tillage and increasing crop diversity benefit grain and forage production[J]. Renewable Agriculture and Food Systems,2018,33(5):406-417 [41] BULUKAZARI S,BABAZADEH H,EBRAHIMIPAK N,et al. Optimization of water and land allocation in salinity and deficit-irrigation conditions at farm level in Qazvin plain[J]. Plos One,2022,17(7):e0269663 [42] ABDOU N M,ABDEL-RAZEK M A,ABD EL-MAGEED S A,et al. High nitrogen fertilization modulates morpho-physiological responses,yield,and water productivity of lowland rice under deficit irrigation[J]. Agronomy,2021,11(7):1291 [43] TAYADE A,VASANTHA S,KUMAR R,et al. Irrigation water use efficiency and water productivity of commercial sugarcane hybrids under water-limited conditions[J]. Transactions of the ASABE,2020,63(1):125-132 [44] ZAMAN A,PATRA S K. Water management technologies to increase crop and income per drop with reference to effective utilization of low land eco-system in eastern region[J]. Water and Energy International,2012,69(8):39-45 [45] LV Y,WANG J,YIN M,et al. Effects of planting and nitrogen application patterns on alfalfa yield,quality,water-nitrogen use efficiency,and economic benefits in the yellow river irrigation region of gansu province,China[J]. Water,2023,15(2):251 [46] LIU M,WANG Z,MU L,et al. Effect of regulated deficit irrigation on alfalfa performance under two irrigation systems in the inland arid area of midwestern China[J]. Agricultural Water Management,2021,248:106764 [47] CHUKALLA A,KROL M,HOEKSTRA A. Green and blue water footprint reduction in irrigated agriculture:effect of irrigation techniques,irrigation strategies and mulching[J]. Hydrology and Earth System Sciences,2015,19(12):4877-4891 [48] SULEIMAN A,SOLER C,HOOGENBOOM G. Evaluation of FAO-56 crop coefficient procedures for deficit irrigation management of cotton in a humid climate[J]. Agricultural Water Management,2007,91(1-3):33-42 [49] QIU Y,FAN Y,CHEN Y,et al. Response of dry matter and water use efficiency of alfalfa to water and salinity stress in arid and semiarid regions of Northwest China[J]. Agricultural Water Management,2021,254:106934 [50] WANG X,LEDGARD S,LUO J,et al. Life cycle assessment of alfalfa production and potential environmental improvement measures in Northwest China[J]. Journal of Cleaner Production,2021,304:127025 [51] YOST M A,RUSSELLE M P,COULTER J A,et al. Alfalfa stand length and subsequent crop patterns in the upper midwestern United States[J]. Agronomy Journal,2014,106(5):1697-1708 [52] KAHLON M,SINGH C,DHINGRA M. Effect of compaction and irrigation regimes on soil physical characteristics,emergence,growth and productivity of summer moongbean[J]. Legume Research:An International Journal,2023,46(4):473-481 [53] KELNER D,VESSEY J,ENTZ M. The nitrogen dynamics of 1,2 and 3 year stands of alfalfa in a cropping system[J]. Agriculture,Ecosystems & Environment,1997,64(1):1-10 [54] UGRENOVIC V,FILIPOVIĆ V,DELIC D,et al. Maintenance of soil fertility on organic farm by modeling of crop rotation with participation alfalfa[J]. Zbornik Matice Srpske Za Prirodne Nauke,2020,2020(138):71-82 [55] ENTZ M,BARON V,CARR P,et al. Potential of forages to diversify cropping systems in the northern Great Plains[J]. Agronomy Journal,2002,94(2):240-250 [56] CRESSWELL H,KIRKEGAARD J. Subsoil amelioration by plant-roots-the process and the evidence[J]. Soil Research,1995,33(2):221-239 [57] GUO F,MA J,ZHENG L,et al. Estimating distribution of water uptake with depth of winter wheat by hydrogen and oxygen stable isotopes under different irrigation depths[J]. Journal of Integrative Agriculture,2016,15(4):891-906 [58] AHMADIAN K,JALILIAN J,PIRZAD A. Nano-fertilizers improved drought tolerance in wheat under deficit irrigation[J]. Agricultural Water Management,2021,244:106544 [59] SUN Y,WANG X,MA C,et al. Effects of nitrogen and phosphorus addition on agronomic characters,photosynthetic performance and anatomical structure of alfalfa in northern xinjiang,China[J]. Agronomy,2022,12(7):1613 [60] LIU R,ZHANG Y,GE Y,et al. Precision regulation model of water and fertilizer for alfalfa based on agriculture cyber-physical system[J]. IEEE Access,2020,8:38501-38516 [61] ABDELRASHEED K G,MAZROU Y,OMARA A E D,et al. Soil amendment using biochar and application of K-humate enhance the growth,productivity,and nutritional value of onion (Allium cepa L.) under deficit irrigation conditions[J]. Plants,2021,10(12):2598 [62] AHMED F,WARIS F,ZAMIR S,et al. Response of different organic and inorganic fertilizers on alfalfa yield under different types of irrigation water[J]. Haya: The Saudi Journal of Life Science,2023,8(1):1-8 [63] ZEYLIGER A M,ERMOLAEVA O S,PCHELKIN V V. Assessment of irrigation efficiency by coupling remote sensing and ground-based data:case study of sprinkler irrigation of alfalfa in the saratovskoye zavolgie region of russia[J]. Sensors,2023,23(5):2601 [64] LAURIAULT L M,PIETRASIAK N,DARAPUNENI M K,et al. Comparison of surface water or treated municipal wastewater irrigation on alfalfa establishment,soil fertility,and soil microbial conditions[J]. Soil Systems,2022,6(3):67 [65] DJAMAN K,O’NEILL M,LAURIAULT L,et al. The dynamics of forage yield of different fall dormancy rating alfalfa cultivars in a semiarid climate[J]. Agricultural Research,2021,10:378-389 [66] DING Z,ALI E F,ELMAHDY A M,et al. Modeling the combined impacts of deficit irrigation,rising temperature and compost application on wheat yield and water productivity[J]. Agricultural Water Management,2021,244:106626 [67] HOMMADI A H,AL-MOHAMMED F M,MUTASHER A K A,et al. Application of SWRT technique to reduce stress and water supply[C]//IOP Conference Series:Earth and Environmental Science.IOP Publishing,2021,722(1):012044 [68] DEHKORDI R A,ROGHANI S R,MAFAKHERI S,et al. Effect of biostimulants on morpho-physiological traits of various ecotypes of fenugreek (Trigonella foenum-graecum L.) under water deficit stress[J]. Scientia Horticulturae,2021,283:110077 [69] ROMERO-TRIGUEROS C,DÍAZ-LÓPEZ M,VIVALDI G A,et al. Plant and soil microbial community responses to different water management strategies in an almond crop[J]. Science of the Total Environment,2021,778:146148 [70] ADIBA A,HSSAINI L,HADDIOUI A,et al. Pomegranate plasticity to water stress:attempt to understand interactions between cultivar,year and stress level[J]. Heliyon,2021,7(6):e07403 [71] KOUR G,BAKSHI P. Irrigation management practices and their influence on fruit agroecosystem[M].London: Intech Open,2018:20-33 [72] EL-SAMNOUDI I,IBRAHIM A,TAWWAB A,et al. Addition biochar to enhanced soil quality and sugar beet crop grown under water stress treatments in salt-affected soils[J]. Fayoum Journal of Agricultural Research and Development,2021,35(3):478-494 [73] RAUL S,SHINDE T,PANDA S. Irrigation management for non-monsoon crops in a major canal command in eastern india under water limiting environment[J]. Agricultural Engineering,2016(2):81-92 [74] MONTAZAR A,PUTNAM D. Evapotranspiration and yield impact tools for more water-use efficient alfalfa production in desert environments[J]. Agriculture,2023,13(11):2098 [75] 邹苇鹏,翟佳兴,李迪娜,等. 紫花苜蓿NAC基因家族鉴定及在非生物胁迫下的表达模式分析[J]. 草地学报,2024,32(8):2440-2458 [76] 徐明,蒋学乾,何飞,等. 紫花苜蓿种子产量与大小相关性状全基因组关联分析[J]. 草地学报,2024,32(8):2419-2427 |