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首页> 外文期刊>International Journal of Vegetable Science >Yield and Productivity of Eggplant Genotypes Intercropped with Vegetable Cowpea in the Humid Tropics
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Yield and Productivity of Eggplant Genotypes Intercropped with Vegetable Cowpea in the Humid Tropics

机译:茄子基因型的产量和生产力与潮湿的热带植物豇豆的间作

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摘要

Intercropping fruit vegetable crops with legumes may influence performance of component crops and improve residual nitrogen contribution to the cropping system. Eggplant (Solarium spp.) genotypes whose fruit and leaves are a good source of income andprovide essential vitamins and minerals for good health were intercropped with vegetable Cowpea (Vigna unguiculata Walp ssp. sesquipedalis) in 2 years. Eggplant was monocropped using genotypes 'Ex-Lantan', Solanum macrocarpon L, S. melogena L, S. aethio-picum L (mikky mikky-Gilo), 'Nsukka green', and 'Nsukka white'. A semiprostrate vegetable cowpea was grown in monocrop and the crops were intercropped. Eggplant fruit yield, pod yield of cowpea, and interrelationships between yield characters, as well asthe biological and economic productivity of the system, were studied. Intercropping eggplant with cowpea produced a high degree of complementarity. The mono- and intercropped eggplant genotypes exhibited wide genotypic variation. On average over two cropping seasons, 'Nsukka green'/cowpea intercrop followed by 'Nsukka white'/cowpea intercrop had the highest total land equivalent ratio (LER; 1.78) and land equivalent coefficient (0.79) compared to other mixes. The 'Ex-Lantan'/cowpea intercrop had the highest mean gross monetary and net returns (NR); the 5. melo-geno/cowpea intercrop produced the highest total cost of production (TCP) among intercrops; the highest benefit-cost ratio (BCR) was for monocropped S. macrocarpon. Among intercrops, the BCR of5. macrocarpon/cov/pea mix was highest compared to 'Ex-Lantan', S. melongena, 5. aethiopicum, 'Nsukka green', and 'Nsukka white', at 0.57%, 2158%, 33.46%, 26.30%, and 19.89%, respectively. There was a positive but weak linear relationship between LER andNR and between LER and BCR. Intercropping eggplant with cowpea enhances productivity and financial return.
机译:与豆类的间作水果蔬菜作物可能影响组件作物的性能,并改善对种植系统的残余氮贡献。茄子(日光浴SPP。)基因型,其水果和叶子是一种良好的收入来源,含有植物豇豆(Vigna Unguiculata Walp SSP)的良好的收入来源和矿物质的矿物质。茄子是使用基因型的“前兆”,Solanum Macrocarpon L,S. Melogena L,S.Athio-Picum L(Mikky Mikky-Gilo),'Nsukka Green'和'Nsukka White'。半润滑植物豇豆在一角质种植,作物是间作的。研究了茄子的果实产量,豇豆的豆荚产量,以及系统的生物和经济生产力的屈服性特征之间的相互关系。与豇豆的间作茄子产生高度的互补性。单声道和间作的茄子基因型表现出广泛的基因型变异。平均过度两种裁剪季节,'NSUKKA Green'/ Cowpea Intercrop之后是“NSUKKA White”/ Cowpea Intercrop的总量最高(LER; 1.78)和与其他混合物相比的土地等效系数(0.79)。 “前兆”/豇豆交联剂具有最高的均值货币和净返回(NR); 5. Melo-Geno / Cowpea和Cowpea和Cowpea和Cowpea和Cowpea和Cowpea和Cowpea和TCP)在跨性工中产生的总成本最高;最高的福利 - 成本比(BCR)是Monocropped S. Macrocarpon。在跨性器之间,BCR为5。与'喇叭兰',Melongena,5. Aethiopicum,'Nsukka Green'和'Nsukka White'相比,Macrocarpon / Cov /豌豆混合物最高,5.7%,2158%,33.46%,26.30%和19.89 %, 分别。 LER ANDNR和LER和BCR之间有一个积极但弱的线性关系。与豇豆的间作茄子增强了生产率和财务回报。

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