作物学报 ›› 2012, Vol. 38 ›› Issue (04): 675-682.doi: 10.3724/SP.J.1006.2012.00675
王红光,于振文,张永丽﹡,石玉,王东
WANG Hong-Guang, YU Zhen-Wen, ZHANG Yong-Li*,SHI Yu,WANG Dong
摘要: 黄淮海地区旱地小麦种植面积较大,降水少且年际间变化幅度大造成其产量低而不稳。耕作措施可影响土壤的蓄水,于2009—2011年连续2个小麦生长季,设置条旋耕、深松+条旋耕、深松+旋耕和旋耕4种耕作方式处理,研究耕作方式对黄淮海地区旱地小麦耗水特性和干物质积累的影响。结果表明,深松+条旋耕处理有利于降低小麦播种至冬前阶段的耗水量,提高开花至成熟阶段的耗水量及其占总耗水量的比例。2009—2010年度,深松+条旋耕处理播种至拔节阶段0~20 cm土层贮水减少量显著低于深松+旋耕和旋耕处理,拔节至成熟阶段40~160 cm土层贮水减少量显著高于条旋耕和旋耕处理。2009—2010年度的各生育时期和2010—2011年度的苗期、开花期、灌浆期,深松+条旋耕处理株间蒸发量显著低于深松+旋耕和旋耕处理,与条旋耕处理无显著差异。深松+条旋耕处理开花至成熟阶段干物质积累量显著高于其他处理,耗水量显著高于条旋耕和旋耕处理,水分利用效率高于深松+旋耕和旋耕处理,与条旋耕处理无显著差异,而且籽粒产量最高,是本试验条件下的最优耕作方式。
[1]Wang Y-F(王月福), Cheng J-L(程金亮), Wang B-J(王炳军), Wang Y-G(王岳光), Wang L-L(王丽丽), Sui C-Q(隋春青). Review and outlook to the production and development of wheat in dryland of Shandong. Laiyang Agric Coll (莱阳农学院学报), 2003, 20(3): 202-205 (in Chinese)[2]Jiang W-L(姜文来), Tang H-J(唐华俊), Luo Q-Y(罗其友), Tao T(陶陶). Study of agricultural comprehensive development strategy in Huang-Huai-Hai region. Agric Outlook (农业展望), 2007, 3(3): 34-37 (in Chinese)[3]Riksen M J P M, Goossens D. Tillage techniques to reactivate aeolian erosion on inland drift-sand. Soil Tillage Res, 2005, 83: 218-236[4]Bhatt R, Khera K L. Effect of tillage and mode of straw mulch application on soil erosion in the submontaneous tract of Punjab, India. Soil Tillage Res, 2006, 88: 107-115[5]Wang X B, Cai D X, Hoogmoed W B, Oenema O, Perdok U D. Developments in conservation tillage in rainfed regions of north China. Soil Tillage Res, 2007, 93: 239-250[6]Zhang Y, Peng B Z, Gao X, Yang H. Degradation of soil properties due to erosion on sloping land in southern Jiangsu province, China. Pedosphoere, 2004, 14: 17-26[7]Chu P-F(褚鹏飞), Yu Z-W(于振文), Wang D(王东), Zhang Y-L(张永丽). Effects of tillage on water consumption characteristics and grain yield of wheat. Sci Agric Sin (中国农业科学), 2010, 43(19): 3954-3964 (in Chinese with English abstract)[8]Paustian K, Six J, Elliot E T, Hunt H W. Management options for reducing CO2 emissions from agricultural soils. Biogeochemistry, 2000, 48: 147-163[9]Blanco-Canqui H, Lal R. Mechanisms of carbon sequestration in soil aggregates. Crit Rev Plant Sci, 2004, 23: 481-504[10]Lampurlanes J, Cantero-Martinez C. Hydraulic conductivity, residue cover and soil surface roughness under different tillage systems in semiarid conditions. Soil Tillage Res, 2006, 85: 13-26[11]Borghei A M, Taghinejad J, Minaei S, Karimi M, Varnamkhasti M G. Effect of subsoiling on soil bulk density, penetration resistance and cotton yield in northwest of Iran. Int J Agric Biol, 2008, 10: 120-123 [12]Lü M-R(吕美蓉), Li Z-J(李增嘉), Zhang T(张涛), Ning T-Y(宁堂原), Zhao J-B(赵建波), Li H-J(李洪杰). Effects of minimum or no-tillage system and straw returning on extreme soil moisture and yield of winter wheat. Trans CSAE (农业工程学报), 2010, 26(1): 41-46 (in Chinese with English abstract)[13]Li S-J(李素娟), Chen J-K(陈继康), Chen F(陈阜), Li L(李琳), Zhang H-L(张海林). Characteristics of growth and development of winter wheat under zero-tillage in North China Plain. Acta Agron Sin (作物学报), 2008, 34(2): 290-296 (in Chinese with English abstract)[14]Mohanty M, Bandyopadhyay K K, Painuli D K, Ghosh P K, Misra A K, Hati K M. Water transmission characteristics of a Vertisol and water use efficiency of rainfed soybean [Glycine max (L.) Merr.] under subsoiling and manuring. Soil Tillage Res, 2007, 93: 420-428[15]Zhao H-T(赵海涛), Shi S-B(师帅兵). Benefit analysis on the technology of mechanized conservation tillage. Agric Mechanization Res (农机化研究), 2006, (8): 74-76 (in Chinese with English abstract)[16]Liao Y-C(廖允成), Han S-M(韩思明), Wen X-X(温晓霞). Soil water wontent and crop yield effects of mechanized conservativetillage-cultivation system for dryland winter wheat in the loess tableland. Trans CSAE (农业工程学报), 2002, 18(4): 68-71 (in Chinese with English abstract)[17]Mao H-L(毛红玲), Li J(李军), Jia Z-K(贾志宽), Wang L(王蕾). Soil water conservation effect, yield and income increments of conservation tillage measures on dryland wheat field. Trans CSAE (农业工程学报), 2010, 26(8): 44-51 (in Chinese with English abstract)[18]Qin H-L(秦红灵), Gao W-S(高旺盛), Ma C-Y(马月存), Ma L(马丽), Yin C-M(尹春梅). Effects of subsoiling on soil moisture under no-tillage 2 years later. Sci Agric Sin (中国农业科学), 2008, 41(1): 78-85 (in Chinese with English abstract)[19]Li L-L(李玲玲), Huang G-B(黄高宝), Qin S-H(秦舒浩), Yu A-Z(于爱忠). Effect of conservation tillage on dry matter accumulating and yield of winter wheat in Oasis area. Acta Agron Sin (作物学报), 2011, 37(3): 514-520 (in Chinese with English abstract)[20]Liu Z-J(刘增进), Li B-P(李宝萍), Li Y-H(李远华), Cui Y-L(崔远来). Research on the water use efficiency and optimal irrigation schedule of the winter wheat. Trans CSAE (农业工程学报), 2004, 20(4): 58-63 (in Chinese with English abstract)[21]Oweis T, Zhang H, Pala M. Water use efficiency of rainfed and irrigation bread wheat in a Mediterranean environment. Agron J, 2000, 92: 231-238[22]Sun H-Y(孙宏勇), Liu C-M(刘昌明), Zhang Y-Q(张永强), Zhang X-Y(张喜英). Study on soil evaporation by using micro-lysimete. J Hydraulic Eng (水利学报), 2004, 35(8): 114-118 (in Chinese with English abstract)[23]Du T-S(杜太生), Kang S-Z(康绍忠), Wang Z-C(王振昌), Wang F(王锋), Yang X-Y(杨秀英), Su X-L(苏兴礼). Responses of cotton growth, yield, and water use efficiency to alternate furrow irrigation. Acta Agron Sin (作物学报), 2007, 33(12): 1982-1990 (in Chinese with English abstract)[24]Ramon J, Agnès H. Effects of tillage systems in dryland farming on near-surface water content during the late winter period. Soil Tillage Res, 2005, 82: 173-183[25]Jin K, Cornelis W M, Schiettecatte W, Lu J J, Yao Y Q, Wu H J, Gabriels D, Neve S D, Cai D X, Jin J Y, Hartmann R. Effects of different management practices on the soil-water balance and crop yield for improved dryland farming in the Chinese Loess Plateau. Soil Tillage Res, 2007, 96: 131-144[26]Jin F-X(金复鑫), Peng W-Y(彭文英), Zhang K-L(张科利), Wang R(王龙). Dynamics of soil moisture content under conditions of conservation tillage in Beijing. Chin Soil Sci (土壤通报), 2009, 40(1): 28-33 (in Chinese with English abstract)[27]Wang Y-H(王育红), Yao Y-Q(姚宇卿), Lü J-J(吕军杰), Huang J-T(黄江涛), Zhang J(张洁). Ecological effect of subsoiling high stubble on the winter wheat in sloping land of western Henan. Chin Eco-agric (中国生态农业学报), 2004, 12(2): 146-148 (in Chinese with English abstract)[28]Chen S-L(陈四龙), Chen S-Y(陈素英), Sun H-Y(孙宏勇), Zhang X-Y(张喜英), Pei Y(裴勇). Effect of different tillages on soil evaporation and water use efficiency of winter wheat in the field. Chin Soil Sci (土壤通报), 2006, 37(4): 817-820 (in Chinese with English abstract)[29]Wang X-J(王晓娟), Huang G-B(黄高宝), Li Q-P(李卿沛), Ma J(马剑), Gao Y-Q(高亚琴), Liu B(刘博). Characteristics of the evapotranspiration and its yield performance of rainfed spring wheat and peas fields. Arid Land Resour Environ (干旱区资源与环境), 2010, 24(5): 172-177 (in Chinese with English abstract)[30]Lei J-Y(雷金银), Wu F-Q(吴发启), Wang J(王健), Guo J-H(郭建华). Effects of conservation tillage on soil physical properties and corn yield. Trans CSAE (农业工程学报), 2008, 24(10): 40-45 (in Chinese with English abstract)[31]He J(何进), Li H-W(李洪文), Gao H-W(高焕文). Subsoiling effect and economic benefit under conservation tillage mode in northern China. Trans CSAE (农业工程学报), 2006, 22(10): 62-67 (in Chinese with English abstract)[32]Li Y-J(李友军), Huang M(黄明), Wu J-Z(吴金芝), Yao Y-Q(姚宇卿), Lü J-J(吕军杰). Effects of different tillage on utilization and run-off of water and nutrient in sloping farmland of Yuxi dryland area. Soil Water Conserv (水土保持学报), 2006, 20(2): 42-45 (in Chinese with English abstract) [33]Jia S-L(贾树龙), Meng C-X(孟春香), Ren T-S(任图生), Yang Y-M(杨云马). Effect of tillage and residue management on crop yield and soil properties. Hebei Agric Sci (河北农业科学), 2004, 8(4): 37-42 (in Chinese with English abstract)[34]Govaerts B, Sayre K D, Deckers J . Stable high yields with zero tillage and permanent bed planting? Field Crops Res, 2005, 94: 33-42[35]Koch H J, Stockfisch N. Loss of soil organic matter upon ploughing under a loess soil after several years of conservation tillage. Soil Tillage Res, 2006, 86: 73-83 |
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