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Benefits of inoculation P fertilizer and manure on yields of common bean and soybean also increase yield of subsequent maize

机译:接种磷肥和肥料对普通豆和大豆产量的好处也增加了随后玉米的产量

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摘要

Common bean and soybean yield poorly on smallholder farms in Rwanda. We evaluated the benefits of inoculation combined with P fertilizer and manure on yields of common bean and soybean in three agro-ecological zones (AEZs), and their residual effects on a subsequent maize crop. In the first season, the treatments included inoculum, three rates of manure, and two rates of P fertilizer, with nine replications (three per AEZ). Both legumes responded well to inoculation if applied together with manure and P fertilizer. Grain yields varied from 1.0 t ha−1 to 1.7 t ha−1 in unamended control plots to 4.8 t ha−1 for common bean and 3.8 t ha−1 for soybean in inoculated plots with both P and manure addition. The response of common bean and soybean to inputs varied greatly between AEZs. In the AEZ with low and erratic rainfall (Bugesera), yields of both legumes and maize were low and maize after soybean failed to yield any grain due to drought. In this regard, early maturing legume varieties are advised in regions of low rainfall. Responses of maize to an input applied to the legumes strongly increased when other inputs were applied together to the legume. This allowed greater maize yields which ranged from 0.8 t ha−1 in control plots to 6.5 t ha−1 in treatments previously inoculated with P and manure added for maize grown after common bean and from 1.9 t ha−1 in control plots to 5.3 t ha−1 for maize grown after soybean. The amount of N2-fixed measured using the 15N-natural abundance method differed between the two legumes and varied between 15 and 198 kg N2 ha−1 for common bean and between 15 and 186 kg N2 ha−1 for soybean and differed enormously among treatments and AEZs. Application of inputs to the legumes also resulted in enhanced N and P uptake of the subsequent maize. The use of inoculum combined with manure and P fertilizer is a good option for smallholder farmers growing common bean and soybean in rotation with maize. We observed strong effects of environment and call for care when targeting crops and technologies for sustainable crop production.
机译:卢旺达小农户的普通豆和大豆单产很差。我们评估了在3个农业生态区(AEZ)接种磷肥和肥料组合对普通豆和大豆产量的好处,以及它们对随后的玉米作物的残留影响。在第一个季节,处理包括接种物,三倍粪肥和二倍磷肥,重复九次(每个AEZ三次)。如果与粪肥和磷肥一起施用,两种豆类对接种的反应都很好。在未经修正的对照地块中,谷物产量从1.0 tha -1 到1.7 t ha -1 到普通豆的4.8 t ha -1 在添加P和粪肥的接种地中,大豆的3.8 t ha -1 在专属经济区之间,普通豆和大豆对投入物的反应差异很大。在降雨量少且不稳定的经济特区(Bugesera),豆类和玉米的单产都较低,而大豆因干旱而无法收割任何谷物。在这方面,建议在降雨少的地区早熟豆类品种。当将其他输入物一起施加到豆类上时,玉米对施加到豆类植物上的输入物的响应大大增加。这样可以使玉米产量更高,从对照地块的0.8 t ha -1 到以前接种P和粪肥的处理中的6.5 t ha -1 大豆和对照地块的1.9 t ha -1 到大豆后种植的玉米的5.3 t ha -1 。使用 15 N-自然丰度法测量的固氮量在两种豆科植物之间有所不同,普通豆在15至198 kg N2 ha -1 之间大豆15和186 kg N2的 -1 且在处理和AEZ之间差异很大。在豆科植物上施用投入物还导致随后玉米对氮和磷的吸收增加。对于将玉米和大豆轮作种植普通豆和大豆的小农,将接种物与肥料和磷肥结合使用是一个不错的选择。我们观察到环境的强烈影响,并在针对作物和可持续作物生产的技术时呼吁给予关怀。

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