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Productivity of intercropping with maize and common bean over five cropping seasons on smallholder farms of Tanzania

机译:在坦桑尼亚小农场农场与玉米和常见豆子的生产力

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Intercropping with maize (Zea mays L.) and common bean (Phaseolus vulgaris L) is one of the widely used practices of producing food crops on smallholder farms in Sub-Saharan Africa (SSA). However, the knowledge on the options toward intensification of available practices in order to optimize systems productivity using intercrops is generally lacking. Therefore, this study evaluated the effects of intercropping, cropping seasons, and different varieties of common bean on productivity of the maize-common bean based intercrop through 5 cropping seasons from 2015 to 2017. Experimental site is located at 03 degrees 18'03.74' S and 37 degrees 12'13.94' E and an altitude of 956 m above sea level in the northern highlands of Tanzania. Hybrid maize Dekalb brand (DK 8031) and two varieties of common bean (improved Lyamungu 90 and local Mkanamna) were used. The treatments within a replicate were: (1) sole crops: (i) maize, (ii) local bean, (iii) improved bean, and (2) intercrops: (i) maize + local bean, (ii) maize + improved bean. Interaction and individual effects of cropping seasons (S) (periods of years - short and long rains), varieties of common bean (V), and cropping systems (C) (sole and intercrop) were studied. Results indicated that S x V interaction was significant on bean grain yield and 100seed weight. Improved bean outweighed the local bean with grain yields ranging from 2.2-3.5 t ha(-1) and 0.2-2.5 t ha(-1), respectively. The effect of S was significant on all measured variables in beans and the effect of M was only significant on total biomass. Further, S significantly affected all measured variables in maize and grain yields ranged from 2.3-2.6 t ha(-1). In maize, correlations were strong (r = 0.48*; P = 0.0325) between maize grain yield and ground coverage of leaf canopy measured 42-56 days after sowing. The land equivalent ratios (LERs) for maize intercropped with improved and local beans were 1.48 and 1.55, respectively but LER values did not differ significantly between bean varieties. In this study, both common bean varieties were sown simultaneously with the maize, which might have resulted in their differential performance. It is recommended that studies are conducted to evaluate time of introducing this legume crop to a maize system such as early sowing, sowing mid in the season after a maize crop is well established, and sowing late in the season when the leaves in maize plant have started to senesce.
机译:与玉米(Zea Mays L.)和常见的豆类(Pumplyolusuluslis L)是在撒哈拉以南非洲(SSA)的小农农场生产食物作物的广泛使用实践之一。然而,通常缺乏关于优化系统生产率的可用实践选择选择的知识。因此,本研究评估了间作,裁剪季节和不同品种的常见豆类对2015年至2017年5种苗季节的生产力的影响。实验网站位于03度18'03.74在坦桑尼亚北部高地海拔37度和37℃和海拔956米的高度。使用杂交玉米Dekalb品牌(DK 8031)和两种常见的豆豆(改进的Lyamungu 90和局部Mkanamna)。复制内的治疗是:(1)唯一作物:(i)玉米,(ii)当地豆类,(iii)改良豆类,(2)个体:(i)玉米+当地豆类,(ii)玉米+改善豆角,扁豆。研究季节的互动和个体效果(岁月 - 短期和长降雨),常见豆类(v)各种品种和种植系统(c)(唯一和和交)。结果表明,S X V相互作用对豆籽粒产量和100重量的重量显着。改进的豆类分别超过当地豆,分别从2.2-3.5 t ha(-1)和0.2-2.5 t ha(-1)范围内的谷物产量。 S对豆类中所有测量变量的影响是显着的,M的效果仅在总生物质上显着。此外,S显着影响了玉米和谷物产量中的所有测量变量,范围为2.3-2.6 t ha(-1)。在玉米中,玉米籽粒产量与叶片盆栽的地面覆盖之间的相关性强烈(r = 0.48 *; p = 0.0325)。玉米与改善和当地豆类的土地等同比率(LERs)分别为1.48和1.55,但豆品种之间的值没有显着差异。在这项研究中,均同时播种了均匀的豆类,这可能导致其差异性能。建议进行研究,以评估将这种豆类作物引入玉米系统的时间,如早期播种,在玉米作物充分播种后播种,在玉米植物中的叶子播种时播种开始参加参赛者。

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