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1.
1996~ 1 999年 ,在云南省蒙自县草坝镇 (南亚热带北缘 )进行了亩产吨粮的种植模式研究。通过对春、夏、秋、冬播玉米 ,早、中、晚稻以及冬小麦的系统研究 ,以地上部分总干物重、籽粒产量、总入射辐照量、叶面积持续期 (灌浆期 )、氮肥的利用率和生产力、水生产力为指标 ,对早稻—晚稻、早稻—秋玉米、早稻—冬小麦、春玉米—晚稻、夏玉米—冬小麦、中稻—冬小麦和中稻—冬玉米 7种复种模式作了比较 ,选出中稻—冬玉米为一年两熟亩产吨粮的最佳种植模式。  相似文献   

2.
一级生产水平下冬小麦,夏玉米的生产模拟   总被引:14,自引:3,他引:11  
通过模拟计算得到一级生产水平下冬小麦和夏玉米的累积干物质动态曲线 .两年的计算结果和实测值都比较吻合 .研究表明 ,在黄淮海平原 ,可以把亩产吨粮作为冬小麦 夏玉米一年两茬平作粮田达到一级生产水平的指标 .若用中熟夏玉米套作代替早熟夏玉米平作 ,籽粒的年产量可增加一成 .通过对不同叶面积指数下干物质产量的模拟计算 ,得到一年两茬平作的干物质产量最大可达 46t·hm- 2 ,籽粒产量 1 9.1t·hm- 2 .  相似文献   

3.
通过模拟计算得到一级生产水平下冬小麦和夏玉米的累积干物质动态曲线.两年的计算结果和实测值都比较吻合.研究表明,在黄淮海平原,可以把亩产吨粮作为冬小麦夏玉米一年两茬平作粮田达到一级生产水平的指标.若用中熟夏玉米套作代替早熟夏玉米平作,籽粒的年产量可增加一成.通过对不同叶面积指数下干物质产量的模拟计算,得到一年两茬平作的干物质产量最大可达46t·hm-2,籽粒产量19.1t·hm-2.  相似文献   

4.
施氮水平对不同种植制度下玉米氮利用及产量和品质的影响   总被引:14,自引:0,他引:14  
研究了不同施氮量对套作和单作条件下春、夏玉米氮利用以及产量和品质的影响. 结果表明,随着施氮量的增加,单作和套作条件下,春、夏玉米吸氮量显著增加,籽粒产量、生物产量和籽粒蛋白质产量也显著增加.由于春、夏玉米需求的养分种类与形态一致,低氮条件时竞争较激烈,春玉米处于优势地位,但其吸氮量仍低于单作.增加施氮量可以缓解这种竞争,利于玉米的高产优质.施氮量由187.5 kg·hm-2增至375 kg·hm-2时,春、夏玉米单作时生物产量平均增加1.717 kg·kg-1 N,而套作时平均增加12.179 kg·kg-1 N;春、夏玉米单作时蛋白质产量平均增加0.305 kg·kg-1 N,而套作时平均增加1.829 kg·kg-1 N;春夏玉米套作的土地当量比由1.59增加到1.91.与单作相比,春夏玉米套作可显著提高玉米产量和改善品质,增施氮肥有利于套作条件下玉米高产优质潜力的充分发挥.  相似文献   

5.
播种季节对玉米生长发育及干物质生产和分配的影响   总被引:11,自引:0,他引:11  
1996-1997年,在蒙自坝对春、夏、秋、冬四季玉米的生长发育和干物质生产与分配进行了系统研究,结果表明:1冬玉米生育最长达171天,而夏玉米只有101天。2.春玉米花丝期的生产了较多的干物质,其它的则是花线期后生产的干物质更多,干物质生产量与日照时数和LAI的乘积正相关。3.灌浆期籽粒重占总增重的比例与各季玉米灌浆期≥10℃的积温正相关。4.春玉米籽生产除灌浆期的光合产物外,动用了前期贮存物的11.1%,其他玉米完全依赖于灌浆期的光合产物,并且不同比例光合产物贮存于营养体中。说明其玉米的产量受限于灌浆期的光合产物,其它玉米则受库容小或运输不畅的限制。  相似文献   

6.
科学评估覆盖作物种植体系的生态系统服务价值可以为东北地区保护性耕作模式构建提供重要参考。本研究基于实证分析,以生态系统服务价值为理论基础,选取禾本科作物黑麦草、豆科作物紫花苜蓿和毛苕子作为覆盖作物分别与玉米间作,以玉米单作模式为对照,从产品供给、气体调节、养分循环和水土保持四大生态系统服务方面进行生态系统服务价值的核算。结果表明:覆盖作物-玉米间作模式的生态系统服务价值均高于玉米单作,其中养分循环价值最高,其次是产品供给价值,占比分别为67.3%和29.3%。覆盖作物-玉米间作模式的养分循环价值均高于玉米单作模式;紫花苜蓿-玉米、毛苕子-玉米的产品供给价值显著高于黑麦草-玉米,分别增加了18.7%和21.0%;种植覆盖作物具有增加气体调节价值的潜力,但对水土保持价值的影响较小。综合生态系统服务价值,选择豆科覆盖作物-玉米间作可以获得最大效益。  相似文献   

7.
玉米-大豆间作和施氮对玉米产量及农艺性状的影响   总被引:9,自引:0,他引:9  
为研究玉米-大豆间作模式和施氮水平对玉米产量、主要农艺性状及生长动态的影响,进行2个种植模式(玉米单作和玉米-大豆间作)和2个施氮水平(0 kg/hm2,150 kg/hm2)的双因素随机区组试验,以期揭示施氮和间作对玉米产量的影响规律,为提高玉米-大豆间作系统产量提供一定的理论依据。研究结果表明:(1)与不施氮相比,施氮显著增加了春秋两季间作玉米产量,分别达到23.81%和40.99%。施氮处理下的间作玉米地上部生物量较不施氮提高了29.91%,单作模式下显著提高了40.34%,两者差异均达到显著水平。(2)与不施氮相比,施氮150 kg/hm2条件下春玉米单作和间作模式百粒重分别提高了18.92%和19.23%,秋玉米单作和间作模式百粒重分别提高了31.03%和32.75%,差异均达到显著水平。与不施氮相比,施氮150 kg/hm2条件下,单作和间作模式均显著提高秋玉米穗长。与不施氮相比,施氮150 kg/hm2条件下,单作秋玉米的穗粗提高了18.67%,差异显著。(3)施氮和间作均能促进玉米干物质累积、提高株高和叶绿素(SPAD值),且表现为施氮效果高于间作效果。总体来看,种植模式和施氮水平对玉米产量、主要农艺性状和生长动态均有一定影响,且施氮效果优于间作效果。由于土壤具有一定的供氮能力,而间作豆科能为玉米供给一定量的氮素,故对于春玉米而言,施氮效果仅在百粒重中表现,随着土壤原有氮素被玉米吸收利用减少后,供氮能力下降,在秋玉米中施氮效果显著提高。  相似文献   

8.
高慧  朱倩  张荣  莫天录 《生态学杂志》2016,27(11):3548-3558
于2014和2015年在黄土高原半干旱区全膜覆盖种植技术下,研究了不同种植密度下玉米行内间作豌豆对作物群体总产量的影响.结果表明: 2014年,当玉米株距为40和50 cm时,与不插播相比,在玉米株间插播2株豌豆显著提高了作物群体籽粒总产量;而在株距60 cm情况下,插播豌豆对作物群体总产量无显著影响.2015年,玉米株距40和50 cm情况下,与对应株距的单作玉米相比,在玉米株间插播2株豌豆对群体籽粒总产量无显著影响;但是在玉米株距60 cm的情况下,株间插播2株豌豆使作物群体籽粒总产量显著增加.导致两个试验年份之间玉米行内间作豌豆的产量效应差异的主要原因是生长季降水量在2014年较2015年充沛.综合比较,玉米株距40 cm、株间插播2株豌豆间作形式的籽粒总产量最高.此外,在玉米单作和行内间作中,籽粒总产量均随玉米株距的增大而减小.  相似文献   

9.
种植方式对夏玉米光合生产特征和光温资源利用的影响   总被引:6,自引:1,他引:5  
为研究套种与直播两种种植方式对夏玉米光合生产特征和光温资源利用的影响,选取郑单958和登海661为研究对象,设置3个播期,密度为67500株·hm-2,以地上干物质积累量和作物生长速率、叶面积指数、穗位叶的单叶光合速率来评价夏玉米的光合生产特征;以Richards模型拟合籽粒灌浆过程;结合气象数据计算夏玉米光能利用率.结果表明:直播处理比套种处理籽粒产量增加1.17%~3.33%(P<0.05),但千粒重显著降低;生育期随播期提前而延长;直播条件下叶面积指数和单叶光合速率在灌浆前期显著高于套种,但灌浆后期下降较快;与套种相比,直播开花前和开花后具有较高的干物质积累量和较快的作物生长速率.Richards模型解析表明,直播处理达到最大灌浆速率的时间明显早于套种,起始势较套种高,但灌浆期、活跃灌浆期和灌浆速率最大时的生长量均低于套种;与套种相比,直播处理生育期间总积温和总辐射量分别减少150~350 ℃·d和200~400 MJ·m-2,但籽粒光能利用率较套种提高10.5%~24.7%.因此,直播较套种有优势,在夏玉米大田生产条件下,重视叶片的光合生产特征,延缓叶片衰老,有利于提高夏玉米的光能利用率,进一步挖掘增产潜力.  相似文献   

10.
间作模式下冬小麦与春玉米根系的时空分布规律   总被引:6,自引:1,他引:5  
采用大口径土钻对间作种植模式下冬小麦与春玉米根系进行取样,分析了两种作物根系的空间分布及动态变化规律.结果表明:间作冬小麦根系在空间上呈幂函数递减规律,间作春玉米根系呈指数递减规律.采用多元线性回归建立间作冬小麦和春玉米根系质量密度(R)的二维空间分布函数,经验证,两种作物根系质量密度的二维分布函数均可反映作物根系的实际生长状况.  相似文献   

11.
气候变化对甘肃省粮食生产的影响研究进展   总被引:2,自引:0,他引:2  
甘肃省气候自1986年起向整体暖干化、局部暖湿化转型突变.与1960年相比,转型后2010年平均气温升高了1.1 ℃,平均降水量减少了28 mm,干旱半干旱区南移约50 km.气候变暖使甘肃省主要作物生育期有效积温增加,生长期延长,熟性、布局和种植制度改变,宜种区和种植海拔增加,多熟制北移,夏粮面积缩小,秋粮面积增大.弱冬性、中晚熟品种逐步取代强冬性、中早熟品种,有利于提高光温利用率,增加产量.暖湿型气候增加了绿洲灌区作物的气候生产力,暖干型气候降低了雨养农业区的气候产量,水分和肥力条件是决定因素.以提高有限降水利用率和利用效率、改善和提升土壤质量及肥力为核心,选育强抗逆、弱冬性、中晚熟、高水分利用效率的作物新品种,建立适温、适水的种植结构和种植制度,是甘肃省应对气候变化进行粮食生产的主要发展方向.  相似文献   

12.
Crops are one of the main factors affecting soil erosion in sloping fields. To determine the characteristics of splash erosion under crop canopies, corn, soybean, millet, and winter wheat were collected, and the relationship among splash erosion, rainfall intensity, and throughfall intensity under different crop canopies was analyzed through artificial rainfall experiments. The results showed that, the mean splash detachment rate on the ground surface was 390.12 g/m2·h, which was lower by 67.81% than that on bare land. The inhibiting effects of crops on splash erosion increased as the crops grew, and the ability of the four crops to inhibit splash erosion was in the order of winter wheat>corn>soybeans>millet. An increase in rainfall intensity could significantly enhance the occurrence of splash erosion, but the ability of crops to inhibit splash erosion was 13% greater in cases of higher rainfall intensity. The throughfall intensity under crop canopies was positively related to the splash detachment rate, and this relationship was more significant when the rainfall intensity was 40 mm/h. Splash erosion tended to occur intensively in the central row of croplands as the crop grew, and the non-uniformity of splash erosion was substantial, with splash erosion occurring mainly between the rows and in the region directly under the leaf margin. This study has provided a theoretical basis for describing the erosion mechanisms of cropland and for assisting soil erosion prediction as well as irrigation and fertilizer management in cultivated fields.  相似文献   

13.
冬季作物对稻田土壤微生物量碳、氮和微生物熵的短期影响   总被引:18,自引:0,他引:18  
研究不同的冬季作物马铃薯、黑麦草、紫云英、油菜在"冬季作物-双季稻"轮作种植制度下短期内对稻田土壤微生物碳、氮和微生物熵的影响,在湖南省土壤肥料研究所的实验网室内设置了小区试验.试验结果表明:几种冬季作物均提高了稻田土壤微生物碳、氮含量,黑麦草明显提高了土壤微生物量碳和微生物熵,紫云英明显提高了土壤微生物量氮.冬季作物对土壤微生物量碳和土壤微生物量氮的季节性影响变化趋势基本一致,紫云英、马铃薯处理的土壤微生物量C、N含量均在水稻生育期间8月中旬达到最大值.  相似文献   

14.
Cropping sequence diversification provides a systems approach to reduce yield variations and improve resilience to multiple environmental stresses. Yield advantages of more diverse crop rotations and their synergistic effects with reduced tillage are well documented, but few studies have quantified the impact of these management practices on yields and their stability when soil moisture is limiting or in excess. Using yield and weather data obtained from a 31-year long term rotation and tillage trial in Ontario, we tested whether crop rotation diversity is associated with greater yield stability when abnormal weather conditions occur. We used parametric and non-parametric approaches to quantify the impact of rotation diversity (monocrop, 2-crops, 3-crops without or with one or two legume cover crops) and tillage (conventional or reduced tillage) on yield probabilities and the benefits of crop diversity under different soil moisture and temperature scenarios. Although the magnitude of rotation benefits varied with crops, weather patterns and tillage, yield stability significantly increased when corn and soybean were integrated into more diverse rotations. Introducing small grains into short corn-soybean rotation was enough to provide substantial benefits on long-term soybean yields and their stability while the effects on corn were mostly associated with the temporal niche provided by small grains for underseeded red clover or alfalfa. Crop diversification strategies increased the probability of harnessing favorable growing conditions while decreasing the risk of crop failure. In hot and dry years, diversification of corn-soybean rotations and reduced tillage increased yield by 7% and 22% for corn and soybean respectively. Given the additional advantages associated with cropping system diversification, such a strategy provides a more comprehensive approach to lowering yield variability and improving the resilience of cropping systems to multiple environmental stresses. This could help to sustain future yield levels in challenging production environments.  相似文献   

15.
Interest from the US commercial aviation industry and commitments established by the US Navy and Air Force to use renewable fuels has spurred interest in identifying and developing crops for renewable aviation fuel. Concern regarding greenhouse gas emissions associated with land‐use change and shifting land grown for food to feedstock production for fuel has encouraged the concept of intensifying current prominent cropping systems through various double cropping strategies. Camelina (Camelina sativa L.) and field pennycress (Thlaspi arvense L.) are two winter oilseed crops that could potentially be integrated into the corn (Zea mays L.)–soybean [(Glycine max (L.) Merr.] cropping system, which is the prominent cropping system in the US Corn Belt. In addition to providing a feedstock for renewable aviation fuel production, integrating these crops into corn–soybean cropping systems could also potentially provide a range of ecosystem services. Some of these include soil protection from wind and water erosion, soil organic C (SOC) sequestration, water quality improvement through nitrate reduction, and a food source for pollinators. However, integration of these crops into corn–soybean cropping systems also carries possible limitations, such as potential yield reductions of the subsequent soybean crop. This review identifies and discusses some of the key benefits and constraints of integrating camelina or field pennycress into corn–soybean cropping systems and identifies generalized areas for potential adoption in the US Corn Belt.  相似文献   

16.
The interaction between light and temperature during the development of freezing tolerance was studied in winter wheat (Triticum aestivum L. var. Mv Emese). Ten-day-old plants were cold hardened at 5 degrees C for 12 days under normal (250 micromol m(-2)s(-1)) or low light (20 micromol m(-2)s(-1)) conditions. Some of the plants were kept at 20/18 degrees C for 12 days at high light intensity (500 micromol m(-2)s(-1)), which also increased the freezing tolerance of winter wheat. The freezing survival rate, the lipid composition, the antioxidant activity, and the salicylic acid content were investigated during frost hardening. The saturation level of hexadecanoic acid decreased not only in plants hardened at low temperature, but also, to a lesser extent, in plants kept under high light irradiation at normal growth temperature. The greatest induction of the enzymes glutathione reductase (EC 1.6.4.2.) and ascorbate peroxidase (EC 1.11.1.11.) occurred when the cold treatment was carried out in normal light, but high light intensity at normal, non-hardening temperature also increased the activity of these enzymes. The catalase (EC 1.11.1.6.) activity was also higher in plants grown at high light intensity than in the controls. The greatest level of induction in the activity of the guaiacol peroxidase (EC 1.11.1.7.) enzyme occurred under cold conditions with low light. The bound ortho-hydroxy-cinnamic acid increased by up to two orders of magnitude in plants that were cold hardened in normal light. Both high light intensity and low temperature hardening caused an increase in the free and bound salicylic acid content of the leaves. This increase was most pronounced in plants that were cold treated in normal light.  相似文献   

17.
陇东黄土旱塬作物组合系统农田耗水规律研究   总被引:11,自引:3,他引:8  
本文根据1988-1991年陇东黄土旱塬作物组合模式(即作物轮作与复种模式)田间试验土壤水分测定资料,对作物组合系统中主要组分作物田间耗水量及其构成特征、变异规律及农田土壤水分的利用程度进行了研究,并探讨了不同作物组合系统的田间耗水量及其构成特征。结果表明,不同作物组合系统的田间耗水量及其构成特征存在明显差异;作物田间耗水量是一个动态变量,因作物种类、降水年型等不同而异,并与生育期有效降水量呈显著正相关;来自播前土壤有效储水的土壤供水量对秋播作物冬小麦和冬油菜生育期水分不足有重要补偿作用,是维持其较高的生产稳定性的关键原因;无论丰水年还是欠水年,冬小麦、玉米、谷子和马铃薯4种主要作物在农田水分利用程度上均存在一定差异。  相似文献   

18.
Catt  J.A.  Howse  K.R.  Christian  D.G.  Lane  P.W.  Harris  G.L.  Goss  M.J. 《Plant and Soil》1998,203(1):57-69
Nitrate losses in drainflow were measured over five years on eight hydrologically isolated field plots, pairs of which had the following cropping regimes: (a) a 3-yr unfertilised, ungrazed grass ley followed by winter and spring cereals, (b) mixed cropping including winter cover crops, spring cereals, winter cereals, winter fallow and spring beans, (c) a similar sequence to (b) but with a winter fallow replacing the cover crop in the first year and a winter cover crop replacing the fallow in the third year, and (d) continuous winter cereals (control plots). Less nitrate was lost in winter drainflow from winter cover crops than from the winter fallows, but over all five years less nitrate was leached from the continuous cereal plots than from those with mixed cropping. Most of the extra nitrate lost from the mixed cropping regimes probably resulted from mineralisation of the cover crop residues, which occurred at times when subsequent crops could not take advantage of the mineral nitrogen released. Crops grown after the grass ley and cover crops did not benefit from their residues, in terms of either grain yield or of total nitrogen uptake. We conclude that on heavy clay soils in UK a cropping regime of continuous winter cereals offers the best compromise between profitable crop production and minimised nitrate loss to surface waters.  相似文献   

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