首页> 外文期刊>Agricultural Sciences >Maximizing Land Use Efficiency by Intercropping Cowpea with Some Maize Cultivars under Different Maize Planting Geometries
【24h】

Maximizing Land Use Efficiency by Intercropping Cowpea with Some Maize Cultivars under Different Maize Planting Geometries

机译:玉米种植方式不同玉米间作Cow豆间作最大化土地利用效率。

获取原文
       

摘要

Adjustment of planting geometry along with suitable maize cultivar can be a viable tool for maximizing land usage and net return. A two-year study was carried out at Serw Agricultural Experiments and Research Station, A.R.C., Domiate governorate, Egypt, during 2015 and 2016 seasons to evaluate intercropping cowpea with suitable maize cultivar and its planting geometry for maximizing land usage and net return. The treatments were the combinations between three maize cultivars (SC 30K08, TWC 310 and TWC 352) and three maize plant distributions (one plant/hill distanced at 25, 50 and 75 cm between hills, respectively). Ridge width with maize plant distribution formed maize planting geometry (25 cm × 140 cm, 50 cm × 140 cm and 75 cm × 140 cm). These treatments were compared in a split plot distribution in randomized complete block design with three replications. Maize cultivar SC 30K08 had the highest grain yield and its attributes compared with the other cultivars in both seasons. Also, maize planting geometry 25 cm × 140 cm resulted in the highest grain yield and its attributes compared with the other planting geometries in both seasons. Ear length, ear weight, 100-grain weight and grain yield/fad were affected significantly by maize cultivars × maize planting geometry. Intercropping cowpea with maize cultivar TWC 352 had the highest seed yield and its attributes compared with those intercropped with the other cultivars in both seasons. Also, maize planting geometry 75 cm × 140 cm resulted in the highest seed yield and its attributes through growing two cowpea rows between maize hills compared with the other maize planting geometries in both seasons. Number of pods/plant and seed yield/fad were affected significantly by maize cultivars × maize planting geometry. LER and LEC values of the intercrops were much greater than 1.00 and 0.25, respectively, for all the combinations indicating less land requirements of intercropping system than solid culture of both crops. Growing one row of maize cultivar TWC352 in both sides of bed 140 cm width with cowpea two rows in middle of the bed increased land productivity and net return compared with solid culture of maize.
机译:调整种植面积以及合适的玉米品种可以成为使土地利用和净收益最大化的可行工具。在2015年至2016年期间,在埃及多米特省A.R.C.的Serw农业实验和研究站进行了为期两年的研究,以评估采用合适玉米品种的间作cow豆及其种植几何,以最大程度地利用土地和净收益。处理方法是三个玉米品种(SC 30K08,TWC 310和TWC 352)和三个玉米植物分布(一株植物/丘陵之间的距离分别为25、50和75 cm)的组合。玉米植株分布的脊宽形成了玉米种植几何形状(25 cm×140 cm,50 cm×140 cm和75 cm×140 cm)。将这些处理方法在具有三个重复的随机完整块设计中的分割图分布中进行比较。在两个季节中,与其他品种相比,玉米品种SC 30K08的籽粒产量和特性最高。此外,与两个季节的其他种植几何相比,玉米种植几何尺寸为25 cm×140 cm时,谷物的产量和属性最高。玉米品种×玉米种植几何形状对穗长,穗重,100粒重和谷粒产量/脂肪的影响显着。在两个季节中,与玉米其他品种间作的玉米品种TWC 352间作豆的种子产量最高,且其属性最高。而且,与两个季节的其他玉米种植几何形状相比,通过在玉米丘陵之间种植两排cow豆,玉米种植几何尺寸为75 cm×140 cm可获得最高的种子产量及其属性。玉米品种×玉米种植几何形状对豆荚/植物数量和种子产量/脂肪的影响显着。间作的LER和LEC值分别远大于1.00和0.25,对于所有组合而言,表明间作系统的土地需求要比两种作物的固体栽培少。与玉米的固态栽培相比,在140 cm宽的床两侧种植一排玉米栽培品种TWC352,在床的中部生长两排pea豆,可以提高土地生产率和净收益。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号