首页> 外文期刊>South African Journal of Botany >Intercropping white (Lupinus albus) and Andean (Lupinus mutabilis) lupins with other annual cool season legumes for forage production. (Special Issue: Towards a new classification system for legumes.)
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Intercropping white (Lupinus albus) and Andean (Lupinus mutabilis) lupins with other annual cool season legumes for forage production. (Special Issue: Towards a new classification system for legumes.)

机译:套种白色(羽扇豆)和安第斯(羽扇豆)羽扇豆​​与其他一年生凉季豆类作饲料生产。 (特刊:建立一种新的豆类分类系统。)

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Small-plot trials were carried out during 2011 and 2012 on calcareous soils at the Experimental Field of the Institute of Field and Vegetable Crops at Rimski Sancevi near Novi Sad. The aim was to use white lupin (Lupinus albus L.) and Andean lupin (L. mutabilis Sweet) as supporting crops, and intercrop them with nine other annual cool season legumes, as supported crops. The highest two-year average total forage dry matter yield obtained was for the intercrop of white lupin with grass pea (11.2 t ha-1). Intercropping white lupin with Ethiopian pea and French vetch had the highest two-year average values for land equivalent ratio (LER), given as LERFDMY (both 1.20). The highest two-year average total forage dry matter yield came from the intercrop of Andean lupin with grass pea (9.8 t ha-1). Intercropping Andean lupin with grass pea had the highest two-year average values of LERFDMY (1.10). The overall average obtained for intercropping white lupin with other cool season annual legumes was 10.3 t ha-1 of forage dry matter yield and LERFDMY of 1.15, while intercropping white lupin with other cool season annual legumes yielded 8.7 t ha-1 of forage dry matter and LERFDMY of 1.04. In comparison to the traditional approach of intercropping annual legumes with cereals for forage production, the mutual intercropping of annual legumes provides farmers with higher quality forage and grain richer in protein and better utilisation of natural resources.
机译:在2011年和2012年期间,在诺维萨德附近的里姆斯基·桑切维(Rimski Sancevi)的田间和蔬菜作物研究所的实验场上,对钙质土壤进行了小规模试验。目的是使用白羽扇豆(Lupinus albus L.)和安第斯羽扇豆(L. mutabilis Sweet)作为支持作物,并与其他九种年度凉季豆类作间作作物。最高的两年平均牧草干物质总产量最高是白羽扇豆与豌豆的间作(11.2 t ha -1 )。间作白羽扇豆与埃塞俄比亚豌豆和法国紫etch的土地当量比(LER)的两年平均值最高,为LER FDMY (均为1.20)。两年最高总牧草干物质平均产量来自安第斯羽扇豆与豌豆的间作(9.8 t ha -1 )。间作安第斯羽扇豆和豌豆间作的LER FDMY 的两年平均值最高(1.10)。间作白羽扇豆与其他凉季豆类作物间的总平均值为10.3 t ha -1 牧草干物质产量和LER FDMY ,间作白羽扇豆间作其他凉季年度豆科植物的牧草干物质产量为8.7 t ha -1 ,LER FDMY 为1.04。与将一年生豆类和谷物套种以生产牧草的传统方法相比,一年生豆类的相互套种为农民提供了更高质量的草料和蛋白质含量更高的谷物,以及对自然资源的更好利用。

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