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华北寒旱区作物轮作的生产效应

[1] 张立峰, 徐长金 . 北方高寒半干旱农牧交错带资源环境障碍与农牧生产力开发. 资源科学, 1999,21(5):64-67. Zhang L F, Xu C J . Environmental problems and development of agricultural and pastoral productivity in the semi-arid alpine and pastoral ecotone in northern China. Resour Sci, 1999,21(5):64-67 (in Chinese with English abstract).[2] 张立峰, 边秀举, 刘玉华 . 冀北高原作物耗水特性与倒茬效应研究. 中国农业科学, 2001,34:56-60. Zhang L F, Bian X J, Liu Y H . Studies on water consumption characteristics and effects of crops rotation in plateau of North Hebei province. Sci Agric Sin, 2001,34:56-60 (in Chinese with English abstract).[3] 于高波, 吴凤芝, 周新刚 . 小麦、毛苕子与黄瓜轮作对土壤微生态环境及产量的影响. 土壤学报, 2011,48:175-184. Yu G B, Wu F Z, Zhou X G . Effect of rotations of cucumber with wheat and hairy vetch on soil micro-ecological environment. Acta Pedol Sin, 2011,48:175-184 (in Chinese with English abstract).[4] 郭秀娟, 杨建春, 冯学金, 姜超 . 不同前茬作物对胡麻干物质积累规律、品质及产量构成因子的影响. 作物杂志, 2016, ( 2):165-167. Guo X J, Yang J C, Feng X J, Jiang C . Effects of different previous crops in rotation system on dry matter accumulation, quality and yield in fax. Crops, 2016, ( 2):165-167 (in Chinese with English abstract).[5] 杨宁, 赵护兵, 王朝辉, 张达斌, 高亚军 . 豆科作物-小麦轮作方式下旱地小麦花后干物质及养分累积、转移与产量的关系. 生态学报, 2012,32:4827-4835.
doi: 10.5846/stxb201107221085 Yang N, Zhao H B, Wang Z H, Zhang D B, Gao Y J . Accumulation and translocation of dry matter and nutrients of wheat rotated with legumes and its relation to grain yield in a dryland area. Acta Ecol Sin, 2012,32:4827-4835 (in Chinese with English abstract).[6] Munkholm L J, Heck R J, Deen B . Long-term rotation and tillage effects on soil structure and crop yield. Soil Tillage Res, 2013,127:85-91.
doi: 10.1016/j.still.2012.02.007[7] Ren T, Li H, Lu J W, Bu R Y, Li X K, Cong R H, Lu M X . Crop rotation-dependent yield responses to fertilization in winter oilseed rape ( Brassica napus L.). Crop J, 2015,3:396-404.
doi: 10.1016/j.cj.2015.04.007[8] 韩丽娜, 丁静, 韩清芳, 丁瑞霞, 聂俊峰, 贾志宽, 李文静 . 黄土高原区草粮(油)翻耕轮作的土壤水分及作物产量效应. 农业工程学报, 2012,28(24):129-137. Han L N, Ding J, Han Q F, Ding R X, Nie J F, Jia Z K, Li W J . Effects of alfalfa-grain (oil) crop plowing rotation on soil moisture and crop yield in Loess Plateau. Trans CSAE, 2012,28(24):129-137 (in Chinese with English abstract).[9] 吴艳飞, 张雪艳, 李元, 魏文杰, 高丽红 . 轮作对黄瓜连作土壤环境和产量的影响. 园艺学报, 2008,35:357-362. Wu Y F, Zhang X Y, Li Y, Wei W J, Gao L H . Influence of rotation continuous cropping soil environment and cucumber yield. Acta Hortic Sin, 2008,35:357-362 (in Chinese with English abstract).[10] 孙剑, 李军, 王美艳, 王学春, 方新宇, 任晶晶 . 黄土高原半干旱偏旱区苜蓿-粮食轮作土壤水分恢复效应. 农业工程学报, 2009,25(6):33-39. Sun J, Li J, Wang M Y, Wang X C, Fang X Y, Ren J J . Effects of alfalfa-grain rotation on soil moisture restoration in semi-arid and drought-inclined areas of Loess Plateau. Trans CSAE, 2009,25(6):33-39 (in Chinese with English abstract).[11] Naab J B, Mahama G Y, Yahaya I Prasad P V V . Conservation agriculture improves soil quality, crop yield, and incomes of smallholder farmers in North Western Ghana. Front Plant Sci, 2017,8:996.
doi: 10.3389/fpls.2017.00996pmid: 28680427[12] 张伟, 张冬梅, 韩彦龙, 刘化涛, 赵聪, 姜春霞, 李娜娜 . 不同前茬下旱地玉米的水分动态及产量效应. 山西农业科学, 2017,45:749-752. Zhang W, Zhang D M, Han Y L, Liu H T, Zhao C, Jiang C X, Li N N . Effects of different previous crops on soil moisture and crop yield of maize in dryland. J Shanxi Agric Sci, 2017,45:749-752 (in Chinese with English abstract).[13] 李戌清, 张雅, 田忠玲, 吴根良 . 茄子连作与轮作土壤养分、酶活性及微生物群落结构差异分析. 浙江大学学报(农业与生命科学版), 2017,43:561-569. Li X Q, Zhang Y, Tian Z L, Wu G L . Difference analysis of soil nutrients, enzymatic activities and microbial community structure between eggplant continuous cropping and rotation. J Zhejiang Univ (Agric Life Sci), 2017,43:561-569 (in Chinese with English abstract).[14] 杨祥田, 周翠, 李建辉, 李伟龙, 林俊 . 不同轮作方式下大棚草莓产量及土壤生物学特性. 中国生态农业学报, 2010,18:312-315. Yang X T, Zhou C, Li J H, Li W L, Lin J . Effect of cropping system on yield of strawberry and soil biological property under plastic greenhouse condition. Chin J Eco-Agric, 2010,18:312-315 (in Chinese with English abstract).[15] 剡斌 . 胡麻轮作模式对农田土壤养分、生物特性及作物产量的影响. 甘肃农业大学博士学位论文, 甘肃兰州, 2018. Yan B . Effects of Different Oilseed Flax Rotation on the Soil Nutrient、Biological Characteristics and Crop Yield. PhD Dissertation of Gansu Agricultural University, Lanzhou, Gansu, China, 2018 (in Chinese with English abstract).[16] Crookston R K, Kurle J E, Copland P J, Ford H J, Lueschen W E . Rotational cropping sequence affects yield of corn and soybean. Agron J, 1991,83:108-113.
doi: 10.2134/agronj1991.00021962008300010026x[17] 晋艳, 杨宇虹, 段玉琪, 孔光辉 . 烤烟轮作、连作对烟叶产量质量的影响. 西南农业学报, 2004,17(增刊1):267-271. Jin Y, Yang Y H, Duan Y Q, Kong G H . Effects of rotation cropping and continuous cropping on yield and quality of flue-cured tobacco. Southwest China J Agric Sci, 2004,17(S1):267-271 (in Chinese with English abstract).[18] 黄光荣 . 不同轮作方式对烤烟病虫害及产量品质的影响. 河南农业科学, 2009, ( 5):40-42.
doi: 10.3969/j.issn.1004-3268.2009.05.011 Huang G R . The influence concerning different crop rotation models to pests and diseases of flue-cured tobacco, yield and quality of products. J Henan Agric Sci, 2009, ( 5):40-42 (in Chinese with English abstract).[19] Tucker B B, Cos M B, Eck H V . Effects of rotation, tillage methods, and N fertilization on winter wheat production. Agron J, 1971,63:699-702.
doi: 10.2134/agronj1971.00021962006300050012x[20] 王欣英 . 前茬作物玉米和甘薯对烟草的轮作效应及其机理的研究. 山东农业大学硕士学位论文, 山东泰安, 2006 . Wang X Y . Effects of Corn and Sweet Potato on Tobacco Growth and Quality as Fore-rotating Crops. MS Thesis of Shandong Agricultural University, Tai’an, Shandong, China, 2006 (in Chinese with English abstract).[21] 陈阜 . 农业生态学. 北京: 中国农业出版社, 2011. pp 77-78. Chen F . Agricultural Ecology. Beijing: China Agriculture Press, 2011. pp 77-78(in Chinese).[22] 崔婷茹 . 坝上地区农业气候资源特征及高效利用策略. 河北农业大学硕士学位论文, 河北保定, 2017. Cui T R . Characteristics of Agricultural Climatic Resources and Effective Utilization Strategy in Bashang Area. MS Thesis of Hebei Agricultural University, Baoding, Hebei, China, 2017 (in Chinese with English abstract).[23] Willey R W, Osiru D S O . Studies on mixtures of maize and beans ( Phaseolus vulgaris) with particular reference to plant population. J Agric Sci, 1972,79:517-529.[24] 刘玉华, 张立峰, 边秀举 . 土地当量比计算方法的改进与应用. 河北农业大学学报, 1999,22(2):19-21. Liu Y H, Zhang L F, Bian X J . Improvement and application of calculating method of Land Equivalent Ratio. J Hebei Agric Univ, 1999,22(2):19-21 (in Chinese with English abstract).[25] 李继明, 李城德 . 定西市旱作区马铃薯引种试验初报. 甘肃农业科技, 2017, ( 10):59-62. Li J M, Li C D . Preliminary report of potato introduction experiment in dryland area of Dingxi city. Gansu Agric Sci Technol, 2017, ( 10):59-62 (in Chinese with English abstract).[26] 杨安沛, 曹禹, 孙桂荣, 马俊义 . 不同甜菜品种对褐斑病的抗性分析. 中国糖料, 2014, ( 4):48-49. Yang A P, Cao Y, Sun G R, Ma J Y . Resistance analysis of different beet varieties to brown spot disease. Sugar Crops China, 2014, ( 4):48-49 (in Chinese with English abstract).[27] 宋素芳, 秦豪荣, 赵聘 . 生物统计学. 北京: 中国农业大学出版社, 2008. pp 59-60. Song S F, Qin H R, Zhao P. Biostatistics. Beijing: China Agricultural University Press, 2008. pp 59-60(in Chinese).[28] 谢奎忠, 陆立银, 罗爱花, 胡新元 . 长期连作对马铃薯土传病害和产量的影响. 中国种业, 2018, ( 2):65-67. Xie K Z, Lu L Y, Luo A H, Hu X Y . Effects of long-term continuous cropping on soil-borne diseases and yield of potato. China Seed Ind, 2018, ( 2):65-67 (in Chinese).[29] 宋树慧, 何梦麟, 任少勇, 肖强, 蒙美莲, 陈有君, 杨丽辉, 魏翠果 . 不同前茬对马铃薯产量、品质和病害发生的影响. 作物杂志, 2014, ( 2):123-126. Song S H, He M L, Ren S Y, Xiao Q, Meng M L, Chen Y J, Yang L H, Wei C G . Effect of different preceding crops on yield, quality and disease of potato. Crops, 2014, ( 2):123-126 (in Chinese with English abstract).[30] 王长魁, 陈晓军, 贾瑞存 . 甜菜不同轮作方式效应及对后茬作物的影响. 甘肃农业科技, 1998, ( 9):11-13. Wang C K, Chen X J, Jia R C . Effects of different rotation patterns of sugar beet and its effect on post-crop crops. Gansu Agric Sci Technol, 1998, ( 9):11-13 (in Chinese with English abstract).[31] 谭雪莲, 郭天文, 刘高远 . 马铃薯连作土壤微生物特性与土传病原菌的相互关系. 灌溉排水学报, 2016,35(8):30-35. Tan X L, Guo T W, Liu G Y . Relationship between microbial characteristics of potato continuous cropping soil and soil-borne pathogens. J Irrig Drainage, 2016,35(8):30-35 (in Chinese with English abstract).[32] 王俊, 刘文兆, 李凤民 . 半干旱区不同作物与苜蓿轮作对土壤水分恢复与肥力消耗的影响. 土壤学报, 2007,44:179-183. Wang J, Liu W Z, Li F M . Effects of crop rotation and alfalfa on soil water recovery and fertility consumption in Semi-arid areas. Acta Pedol Sin, 2007,44:179-183 (in Chinese with English abstract).[33] 夏红梅, 杨宇博, 韩新文, 罗成飞, 史淑芝 . 甜菜褐斑病的危害及防治. 中国甜菜糖业, 2003, ( 1):53-55. Xia H M, Yang Y B, Han X W, Luo C F, Shi S Z . The harm and prevention of beet brown spot. China Beet Sugar, 2003, ( 1):53-55 (in Chinese with English abstract).[34] 孙彦彬 . 茬口特性对甜菜产量的影响. 新疆农业科技, 1999, ( 6):7. Sun Y B . Effects of stubble characteristics on sugar beet yield. Xinjiang Agric Sci Technol, 1999, ( 6):7 (in Chinese).[35] 孙友萍, 王洪英, 王艳丽 . 作物的茬口特性与大田轮作. 吉林农业, 2004, ( 5):9. Sun Y P, Wang H Y, Wang Y L . Characteristics of crop stubble and field rotation. Agric Jilin, 2004, ( 5):9 (in Chinese).

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