首页> 外文期刊>Revista Caatinga >SOIL PHYSICAL ATTRIBUTES AND YIELD OF WINTER COMMON BEAN CROP UNDER A NO-TILL SYSTEM IN THE BRAZILIAN CERRADO
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SOIL PHYSICAL ATTRIBUTES AND YIELD OF WINTER COMMON BEAN CROP UNDER A NO-TILL SYSTEM IN THE BRAZILIAN CERRADO

机译:免耕模式下巴西塞拉多冬季常见豆类作物的土壤物理属性和产量

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Knowledge of the interactions between soil physical properties and yield performance in agricultural crops is very important for the adoption of appropriate management practices. This study aimed to evaluate the linear and spatial correlations between some soil physical attributes, straw production in the palisade grass (Urochloa brizantha), and grain yield of winter common bean in succession to the grass under an irrigated no-till system in an Oxisol Haplorthox in the Cerrado lowlands region of Brazil. The plant attributes determined were dry matter yield of U. brizantha (DMY), and grain yield (GY) and final plant population (PP) of winter common bean. The soil physical attributes, evaluated at 0.0-0.10 m and 0.10-0.20 m, were soil bulk density (BD), macroporosity (MA), microporosity (MI), total porosity (TP), penetration resistance (PR), gravimetric water content (GW), and volumetric water content (VW). A geostatistical grid with 124 sampling points was installed to collect the soil and plant data in an area of 4000 m2. The remaining straw amount of palisade grass exhibited an inverse linear correlation with bean yield and bean plant population when the bean was cultivated in succession. However, no spatial correlations were observed among the attributes. The common bean yield had a direct linear correlation with gravimetric water content in the 0.10-0.20 m soil layer. From a spatial point of view, winter bean yield showed a strong dependence on the distribution of the volumetric water content in the 0-0.10 m soil layer.
机译:了解农业作物的土壤物理性质和产量表现之间的相互作用对于采用适当的管理方法非常重要。这项研究的目的是评估在Oxisol Haplorthox灌溉系统中,土壤物理属性,木栅栏草(Urochloa brizantha)的秸秆产量以及接替草的冬季普通豆的谷物产量之间的线性和空间相关性。在巴西的塞拉多低地地区。确定的植物属性是茄子的干物质产量(DMY),冬季普通豆的谷物产量(GY)和最终植物种群(PP)。在0.0-0.10 m和0.10-0.20 m处评估的土壤物理属性是土壤容重(BD),大孔隙率(MA),微孔隙率(MI),总孔隙率(TP),耐渗透性(PR),重量水含量(GW)和体积水含量(VW)。安装了具有124个采样点的地统计网格,以收集4000平方米的土壤和植物数据。连续种植大豆时,栅栏草的剩余秸秆量与大豆产量和植物种群呈反线性关系。但是,在这些属性之间没有观察到空间相关性。普通豆产量与0.10-0.20 m土层中的水分重量有直接的线性关系。从空间角度来看,冬小麦的产量表现出对0-0.10 m土壤层中体积水含量分布的强烈依赖性。

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