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Integration of edible beans (Phaseolus vulgaris L.) into the push-pull technology developed for stemborer and Striga control in maize-based cropping systems

机译:将食用豆(Phaseolus vulgaris L.)集成到为在玉米种植系统中控制茎bor和Striga而开发的推拉技术中

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Smallholder farming systems in eastern Africa are characterized by cereal/edible legume intercrops in fields severely constrained by parasitic weed, Striga hermonthica, cereal stemborers and declining soil fertility. The push-pull technology concurrently addresses these constraints. It involves intercropping maize with stemborer repellent fodder legume, Desmodium spp. (push), with an attractant crop, Napier grass, Pennisetum purpureum (pull), planted around this intercrop, thus making it difficult to interplant edible legumes. We assessed farmers' practice and perceptions on intercropping and willingness to integrate beans in their push-pull plots from a sample of 300 farmers in six districts in western Kenya. All the respondents traditionally intercropped maize with beans, planted either between the rows of maize, in the same holes with maize or in between maize plants within a row. The majority (92%) were willing to integrate beans in their push-pull plots. We, therefore, evaluated effects of integrating beans in the maize-desmodium intercrops. Treatments comprised a maize monocrop, maize-bean intercrop and three maize-desmodium intercrops, two of which were integrated with beans, either in the same holes with maize or in between maize plants in a row (bean integration plots). On-farm trials were similarly established among 56 farmers in four districts in western Kenya to assess the two integration methods. S. hermonthica counts and stemborer damage to maize were significantly lower and maize yields significantly higher in the maize-desmodium and bean integration plots than in the other systems. Overall, integration of beans in the maize-desmodium intercrops and the planting arrangement did not compromise the S. hermonthica and stemborer control efficacy of desmodium. Integration of beans significantly increased labour and total variable costs, with these being significantly higher in plots with both crops in different holes than in the same hole. Total revenue, gross benefits and benefit cost ratios did not significantly differ between the bean integration and maize-desmodium intercrops. Furthermore, these parameters were for most part not affected by the planting arrangements, both on-station and on-farm. These results show that integration of beans in the maize-desmodium and indeed push-pull technology while guaranteeing an additional crop, a protein source, to the farmers does not compromise the observed benefits of the technology but yields same economic benefits. Where labour is easily available, farmers are, however, advised to plant maize and beans in separate holes to avoid the risk of competition for moisture and nutrients where these might be limiting.
机译:东部非洲的小农户耕作制度的特点是谷物/食用豆科作物间作在受到杂草,百日草,谷物干bor和土壤肥力不断下降的严重制约下。推挽技术同时解决了这些限制。它涉及在玉米间种上驱草性驱草性豆科植物Desmodium spp。 (推),在该间作作物周围种植了引诱性作物,内皮草,紫草(Pennisetum purpureum)(拉),因此难以在其间种植可食用的豆类。我们从肯尼亚西部六个地区的300名农民的样本中,评估了农民对间作和将豆类整合到其推拉式土地中的意愿的看法和看法。传统上,所有受访者都在玉米和豆之间套种玉米,这些玉米既可以种植在玉米行之间,也可以种植在与玉米相同的孔中,也可以种植在玉米行之间。绝大多数(92%)愿意将豆子集成到其推挽图中。因此,我们评估了将玉米豆整合到玉米-玉米间作中的效果。处理包括玉米单作,玉米-豆间作和三个玉米-玉米间作,其中两个与豆整合在一起,要么与玉米在同一孔中,要么在玉米植株之间排成一列(豆整合图)。类似地,在肯尼亚西部四个地区的56名农民中建立了农场试验,以评估这两种整合方法。与其他系统相比,玉米-脱硫和豆类整合区的S. hermonthica计数和玉米stem对玉米的危害显着较低,玉米单产显着较高。总体而言,将豆类整合到玉米-脱皮间作中和种植方式不会损害脱皮链球菌和茎秆对脱皮的控制功效。豆类的整合显着增加了人工和总可变成本,在两种作物位于不同孔位的地块中,这些成本显着高于同一孔位。大豆整合和玉米-玉米间作之间的总收入,总收益和收益成本比率没有显着差异。此外,无论是在农场还是在农场,这些参数在很大程度上不受播种安排的影响。这些结果表明,将玉米与玉米-脱硫技术以及实际上是推挽式技术相结合,同时又为农民保证了额外的作物(一种蛋白质来源),并没有损害该技术的可观察到的收益,但产生了相同的经济收益。但是,在容易获得劳动力的地方,建议农民在单独的孔中种植玉米和豆类,以免水分和养分竞争受限。

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