首页> 外文期刊>American Journal of Plant Sciences >How the Intercropping between Corn and Palisade Grass Cultivars Affects Forage Production and Pastures Characteristics under Grazing
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How the Intercropping between Corn and Palisade Grass Cultivars Affects Forage Production and Pastures Characteristics under Grazing

机译:玉米和栅栏草品种间作对牧草条件下牧草产量和牧草特性的影响

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Crop-livestock integrated systems have been identified as an excellent option to use land efficiently. This study investigates how the intercropping between corn and three palisade grass cultivars affects the species productivity and the physiological and structural characteristics of swards grazed under 95% light interception under mob stocking. Evaluations were performed before corn harvest and during three grazing cycles. Similarity between the cultivars on the proportion of corn morphological components has shown that none of the studied forage plants had influence on the growth of corn. The crop-livestock integrated system with corn modified the proportion of palisade grass cultivars’ morphological components, promoting the development of Xaraes cultivar. In the pre-grazing in the grazing cycles, considering 95% of light interception the Xaraes cultivar showed higher height (0.47 m) compared with Marandu (0.37 m) and similar to Piata (0.42 m). Forage density was higher in the second grazing cycle only when the forage mass was also greater with greater contribution of both leaves and stems compared to the other cycles. Mass of leaves, stems and dead material was similar between the cultivars both pre- and post-grazing. The corn and forage intercropping did not affect the growth and development of palisade grass pastures and it is a viable alternative for the crop-livestock integrated system. Corn production is not affected by the palisade grass cultivars but production can be affected by environmental conditions mainly rainfall. The Marandu, Xaraes and Piata cultivars can be recommended for integration farming system in crop-livestock integrated system and are recommended for sward managed under 95% light interception and 15 cm high residue.
机译:作物-畜牧综合系统被认为是有效利用土地的绝佳选择。本研究调查了玉米和三个栅栏草品种间作的种植如何影响生物放养下95%光拦截下放牧的草地的物种生产力和生理结构特征。在玉米收获前和三个放牧周期中进行了评估。不同品种之间在玉米形态成分比例上的相似性表明,所研究的饲草植物均不影响玉米的生长。玉米作物-畜牧综合系统改变了栅栏草品种形态成分的比例,促进了Xaraes品种的发展。在放牧周期的预放牧中,考虑到95%的光拦截,Xaraes品种的身高(0.47 m)比Marandu(0.37 m)高,与Piata(0.42 m)相似。仅在第二次放牧循环中,与其他循环相比,在草料质量也更大且叶片和茎的贡献更大的情况下,草料密度才更高。放牧前和放牧后两个品种的叶片,茎和枯死物质的质量相似。玉米和牧草间作不会影响木栅草牧场的生长和发育,它是农作物-畜牧综合系统的可行替代品。玉米的产量不受栅栏草品种的影响,但产量可能受到环境条件(主要是降雨)的影响。推荐将Marandu,Xaraes和Piata品种用于作物-畜牧综合系统中的整合耕作系统,并推荐将其用于在95%光线拦截和15 cm高残留下进行的草地管理。

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