Chinese Agricultural Science Bulletin ›› 2020, Vol. 36 ›› Issue (13): 11-16.doi: 10.11924/j.issn.1000-6850.casb19030041
Special Issue: 马铃薯
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Yang Hu1, Zhuang Wenhua1, Tian Xiaoqin2,3, Li Zhuo2,3(), Liu Chao1, Qu Huijuan4
Received:
2019-03-11
Revised:
2019-06-14
Online:
2020-05-05
Published:
2020-04-16
Contact:
Zhuo Li
E-mail:lizhuo_2000@sina.com
CLC Number:
Yang Hu, Zhuang Wenhua, Tian Xiaoqin, Li Zhuo, Liu Chao, Qu Huijuan. Research Progress of Potato Drip Irrigation System[J]. Chinese Agricultural Science Bulletin, 2020, 36(13): 11-16.
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URL: https://www.casb.org.cn/EN/10.11924/j.issn.1000-6850.casb19030041
[1] | 王熹, 王湛, 杨文涛 , 等. 中国水资源现状及其未来发展方向展望[J]. 环境工程, 2014,32(7):1-5. |
[2] | 王浩, 王建华 . 中国水资源与可持续发展[J]. 中国科学院院刊, 2012,27(3):352-358. |
[3] | 彭世彰, 朱成立 . 节水灌溉的作物需水量试验研究[J]. 灌溉排水学报, 2003,22(2):21-25. |
[4] | 郭文忠, 陈青云, 高丽红 , 等. 设施蔬菜生产节水灌溉制度研究现状及发展趋势[J]. 农业工程学报, 2005,21(s2):24-27. |
[5] | 杨炳南, 张小燕, 赵凤敏 , 等. 不同马铃薯品种的不同加工产品适宜性评价[J]. 农业工程学报, 2015,31(20):301-308. |
[6] | 杨雅伦, 郭燕枝, 孙君茂 . 我国马铃薯产业发展现状及未来展望[J]. 中国农业科技导报, 2017,19(1):29-36. |
[7] | 赵萍, 李春雷, 张轶 , 等. 马铃薯生产加工现状及发展前景[J]. 兰州理工大学学报, 2003,29(1):76-80. |
[8] | 谢从华 . 马铃薯产业的现状与发展[J]. 华中农业大学学报:社会科学版, 2012(1):1-4. |
[9] | 郭宝, 张义科 . 马铃薯膜下滴灌不同补灌量效益研究[J]. 宁夏农林科技, 2013(6):112-113. |
[10] | Trifonov P, Lazarovitch N, Arye G . Increasing water productivity in arid regions using low-discharge drip irrigation: a case study on potato growth[J]. Irrigation Science, 2017(4):1-9. |
[11] | 张志伟, 梁斌, 李俊良 , 等. 不同灌溉施肥方式对马铃薯产量和养分吸收的影响[J]. 中国农学通报, 2013,29(36):268-272. |
[12] | Rajeshkumar N K, Raghavendra K, Veeresh J M , et al. Evaluation of drip irrigation over conventional furrow irrigation on yield and economics of potato (Solanum tuberosum L.) crop[J]. IAEJ, 2013,22(3):15-25. |
[13] | 刘战东, 肖俊夫, 于秀琴 . 不同土壤水分处理对马铃薯形态指标、耗水量及产量的影响[J]. 中国农村水利水电, 2010(8):1-3. |
[14] | 王雯, 张雄 . 不同灌溉方式对榆林沙区马铃薯生长和产量的影响[J]. 干旱地区农业研究, 2015,33(4):153-159. |
[15] | 孙尚平, 李淑珍 . 高寒冷凉区马铃薯地膜栽培生态效应研究[J]. 山西农业科学, 2004,32(1):26-28. |
[16] | 程俊珊, 张学祥 . 渭源县高寒阴湿地区马铃薯地膜栽培气候生态效应研究[J]. 中国马铃薯, 2000,14(2):83-85. |
[17] | 秦永林, 贾立国, 于静 , 等. 阴山北麓不同灌溉模式对马铃薯生长发育与块茎商品特性的影响[J]. 灌溉排水学报, 2013,32(4):92-95. |
[18] | Singh K G, Rudra R P, Kaur A , et al. Effect of mulches and drip irrigation management on the quality and yield of potato relating hydro-thermal regime of soil[J]. Ama Agricultural Mechanization in Asia Africa & Latin America, 2017,48(3):37-43. |
[19] | Zhang Y L, Wang F X, Shock C C , et al. Effects of plastic mulch on the radiative and thermal conditions and potato growth under drip irrigation in arid Northwest China[J]. Soil & Tillage Research, 2017,172:1-11. |
[20] | 梁东超, 李文刚, 巩秀峰 . 覆膜对马铃薯种薯生产的影响[J]. 北方农业学报, 1998(S1):71-72. |
[21] | Baghour M, Moreno D A, Hernández J , et al. Influence of root temperature on uptake and accumulation of Ni and Co in potato[J]. Journal of Plant Physiology, 2002,159(10):1113-1122. |
[22] | 林叶春, 胡跃高, 曾昭海 . 不同节水措施对马铃薯生长及水分利用的影响[J]. 干旱地区农业研究, 2010,28(1):54-60. |
[23] | Wang F X, Kang Y H, Liu S P . Plastic mulching effects on potato under drip irrigation and furrow irrigation[J]. Chinese Journal of Eco-Agriculture, 2003,11(4):99-102. |
[24] | 龙瑞平, 肖继坪, 郭华春 , 等. 覆膜滴灌栽培对云南春作马铃薯生长及产量的影响[J]. 干旱地区农业研究, 2011,29(6):54-57. |
[25] | 王丽霞, 陈源泉, 李超 , 等. 不同滴灌制度对棉花/马铃薯模式中马铃薯产量和WUE的影响[J]. 作物学报, 2013,39(10):1864-1870. |
[26] | 田英, 黄志刚, 于秀芹 . 马铃薯需水规律试验研究[J]. 现代农业科技, 2011(8):91-92. |
[27] | 张庆霞, 宋乃平, 王磊 , 等. 马铃薯连作栽培的土壤水分效应研究[J]. 中国生态农业学报, 2010,18(6):1212-1217. |
[28] | Vos J, Haverkort A J . Water avialability and potato crop performance[J]. Potato Biology & Biotechnology Advances & Perspectives, 2007: 333-351. |
[29] | 王晨, 魏千贺, 范春梅 , 等. 不同灌水时期与灌水量膜下滴灌对马铃薯生长及产量的影响[J]. 贵州农业科学, 2017,45(9):45-48. |
[30] | Kashyap P S, Panda R K . Effect of irrigation scheduling on potato crop parameters under water stressed conditions[J]. Agricultural Water Management, 2003,59(1):49-66. |
[31] | Eldredge E P, Holmes Z A, Mosley A R , et al. Effects of transitory water stress on potato tuber stem-end reducing sugar and fry color[J]. American Potato Journal, 1996,73(11):517-530. |
[32] | Shock C C, Zalewski J C, Stieber T D , et al. Impact of early-season water deficits on Russet Burbank plant development, tuber yield and quality[J]. American Potato Journal, 1992,69(12):793-803. |
[33] | Fabeiro C, F Martı́n, de Santa Olalla, Juan J A D . Yield and size of deficit irrigated potatoes[J]. Agricultural Water Management, 2001,48(3):255-266. |
[34] | 夏腾霄, 张胜, 陈武兵 , 等. 不同灌水量对膜下滴灌马铃薯生长发育及产量的影响[J]. 北方农业学报, 2016,44(1):23-27. |
[35] | 康跃虎, 王凤新, 刘士平 , 等. 滴灌调控土壤水分对马铃薯生长的影响[J]. 农业工程学报, 2004,20(2):66-72. |
[36] | 田爱武, 韩学智, 张燕 , 等. 不同灌水次数对宁夏中部干旱区马铃薯的影响[J]. 宁夏大学学报:自然版, 2016,37(2):216-222. |
[37] | 江俊燕, 汪有科 . 不同灌水量和灌水周期对滴灌马铃薯生长及产量的影响[J]. 干旱地区农业研究, 2008,26(2):121-125. |
[38] | 尹娟, 邱小琮, 祁恒 . 不同水分处理对马铃薯种薯生长的影响[J]. 宁夏农林科技, 2011,52(5):1-2. |
[39] | 不同灌水量对膜下滴灌冬马铃薯生长及水分利用效率的影响[J]. 干旱地区农业研究, 2015,33(6):8-13. |
[40] | 马旭, 尹娟 . 不同灌水处理对马铃薯光合性能和产量的影响[J]. 节水灌溉, 2013(8):22-24. |
[41] | Smithyman R P, Wample R L, Lang N S . Water deficit and crop level influences on photosynthetic strain and black leaf symptom development in Concord grapevines[J]. American Journal of Enology & Viticulture, 2001,52(4):364-375. |
[42] | Wen A C, Zhang H J, Zhang J D . Photosynthetic Physiology Characteristics of Potato (Solanum tuberosum) at Tuber Initiation Responses to Water Deficit Regulated with Mulched Drip Irrigation[J]. Advanced Materials Research, 2013, 838-841:2370-2373. |
[43] | Egilla J N, Jr F T D, Boutton T W . Drought stress influences leaf water content, photosynjournal, and water-use efficiency of Hibiscus rosasinensis at three potassium concentrations[J]. Photosynthetica, 2005,43(1):135-140. |
[44] | Zhang H J, Li J . Photosynthetic Performance of Potato (Solanum tuberosum) Subject to Water Deficit Regulated with Mulched Drip Irrigation[J]. Applied Mechanics & Materials, 2013, 405-408:2130-2133. |
[45] | Efeolu B, Ekmek I Y, Ek N . Physiological responses of three maize cultivars to drought stress and recovery[J]. South African Journal of Botany, 2009,75(1):34-42. |
[46] | Hsiao T C . Plant response to water stress[J]. Ann Rev Plant Physiol, 1973(24):519-570. |
[47] | 张守仁 . 叶绿素荧光动力学参数的意义及讨论[J]. 植物学通报, 1999(4). |
[48] | 马旭, 尹娟 . 不同灌水处理对马铃薯光合性能和产量的影响[J]. 节水灌溉, 2013(8):22-24. |
[49] | 张乐, 尹娟, 王怀博 . 宁夏中部干旱带马铃薯膜下滴灌补灌参数试验研究[J]. 节水灌溉, 2017(12):5-7. |
[50] | Kumar A, Singh D P, Singh P . Influence of water stress on photosynjournal, transpiration, water-use efficiency and yield of Brassica juncea L.[J]. Field Crops Research, 1994,37(2):95-101. |
[51] | Mcmurtrie R E, Wang Y P . Mathematical models of the photosynthetic response of tree stands to rising CO2, concentrations and temperatures[J]. Plant Cell & Environment, 2010,16(1):1-13. |
[52] | 郑国琦, 张磊, 郑国保, 等. 不同灌水处理对干旱区枸杞叶片结构和光合生理的影响[A].// 全国植物结构与生殖生物学学术研讨会[C]. 2010. |
[53] | 尹娟, 邱小琮 . 宁夏中部干旱区马铃薯种薯耗水规律及水分效应研究[J]. 宁夏工程技术, 2011,10(4):334-337. |
[54] | 马微, 尹娟 . 不同灌水处理对马铃薯块茎品质及产量的影响[J]. 宁夏工程技术, 2011,10(3):232-235. |
[55] | Denis D M, Kumar J L G . Response of drip irrigated potato under variable irrigation levels[J]. International Agricultural Engineering Journal, 2007,16(3):87-95. |
[56] | Yuan B Z, Nishiyama S, Kang Y . Effects of different irrigation regimes on the growth and yield of drip-irrigated potato[J]. Agricultural Water Management, 2003,63(3):153-167. |
[57] | Patel N, Rajput T B S . Effect of drip tape placement depth and irrigation level on yield of potato[J]. Agricultural Water Management, 2007,88(1):209-223. |
[58] | 黄凯, 张俊莲, 王蒂 , 等. 陇中半干旱区施磷与补水对全膜覆盖马铃薯产量和品质的影响[J]. 甘肃农业大学学报, 2014(5):70-74. |
[59] | 刘中良, 高昕, 张艳艳 , 等. 膜下滴灌量对大棚马铃薯生长、产量及品质的影响[J]. 黑龙江八一农垦大学学报, 2018(2). |
[60] | Kang Y, Wang F X, Liu H J , et al. Potato evapotranspiration and yield under different drip irrigation regimes[J]. Irrigation Science, 2004,23(3):133-143. |
[61] | 黄彩霞, 施坰林 . 不同灌水量对加工型马铃薯产量及生态生理指标的影响[J]. 灌溉排水学报, 2008,27(5):97-99. |
[62] | 张富仓, 高月, 焦婉如 , 等. 水肥供应对榆林沙土马铃薯生长和水肥利用效率的影响[J]. 农业机械学报, 2017,48(3):270-278. |
[63] | 王丽霞, 陈源泉, 李超 , 等. 不同滴灌制度对棉花/马铃薯模式中马铃薯产量和WUE的影响[J]. 作物学报, 2013,39(10):1864-1870. |
[64] | Onder S, Caliskan M E, Onder D , et al. Different irrigation methods and water stress effects on potato yield and yield components[J]. Agricultural Water Management, 2005,73(1):73-86. |
[65] | English M, Raja S N . Perspectives on deficit irrigation[J]. Agricultural Water Management, 1996,32(1):1-14. |
[66] | Morison J I L, Baker N R, Mullineaux P M , et al. Improving water use in crop production[J]. Philosophical Transactions of the Royal Society of London, 2008,363:639-658. |
[67] | Jensen C R, Battilani A, Plauborg F , et al. Deficit irrigation based on drought tolerance and root signalling in potatoes and tomatoes[J]. Agricultural Water Management, 2010,98(3):403-413. |
[68] | Segal E, Bengal A, Shani U . Water availability and yield response to high frequency micro-irrigation in sunflowers[A].// International Micro-irrigation Congress[C]. 2000. |
[69] | Freeman B M, Blackwell J, Garzoli K V . Irrigation frequency and total water application with trickle and furrow systems[J]. Agricultural Water Management, 1976,1(1):21-31. |
[70] | Segal E, Bengal A, Shani U . Water availability and yield response to high frequency micro-irrigation in sunflowers[A].// International Micro-irrigation Congress[C]. 2000. |
[71] | Sharmasarkar F C, Sharmasarkar S, Miller S D , et al. Assessment of drip and flood irrigation on water and fertilizer use efficiencies for sugarbeets[J]. Agricultural Water Management, 2001,46(3):241-251. |
[72] | Dalvi V B, Tiwari K N, Pawade M N , et al. Response surface analysis of tomato production under microirrigation[J]. Agricultural Water Management, 1999,41(1):11-19. |
[73] | 秦军红, 陈有君, 周长艳 , 等. 膜下滴灌灌溉频率对马铃薯生长、产量及水分利用率的影响[J]. 中国生态农业学报, 2013,21(7):824-830. |
[74] | 武秀侠, 王凤新, 杨文斌 . 西北干旱区不同灌水方式及覆膜对马铃薯产量和品质的影响研究[A].// 现代节水高效农业与生态灌区建设[C]. 2010. |
[75] | Yuehu K, Fengxin W, Shiping L , et al. Effects of water regulation under drip irrigation on potato growth[J]. Transactions of the Chinese Society of Agricultural Engineering, 2004,20(2):66-72. |
[76] | 王乐, 张红玲 . 干旱区马铃薯田间滴灌限额灌溉技术研究[J]. 节水灌溉, 2013(8):10-12. |
[77] | 井涛, 秦永林, 樊明寿 , 等. 高垄覆膜滴灌下水氮互作对马铃薯水分利用特性的影响[J]. 内蒙古农业大学学报:自然科学版, 2012(Z1):41-45. |
[78] | 何英彬, 高明杰, 罗其友 , 等. 马铃薯研究领域未来发展新方向分析[J]. 中国农学通报, 2015,31(18):87-91. |
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