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首页> 外文期刊>African Journal of Agricultural Research >Systems of land use affecting nodulation and growth of tree legumes in different soils of the Brazilian semiarid area
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Systems of land use affecting nodulation and growth of tree legumes in different soils of the Brazilian semiarid area

机译:影响巴西半干旱地区不同土壤中豆类植物结瘤和生长的土地利用系统

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The growth of tree legumes in degraded areas must be preceded by assessments of nodulation ability of naturally established rhizobia populations since such information contributes to defining the species which can be planted for recovering disturbed areas. The aim of this study was to evaluate the growth and natural nodulation of “sabiá” (Mimosa caesalpiniifolia Benth.) and leucaena (Leucaena leucocephala (Lam.) de Wit.) in soils of the Brazilian semiarid area under different systems of land use: native vegetation (locally called caatinga) and areas with different agricultural systems (a monocrop system and an intercropping with various species). For each species, a greenhouse experiment in randomized block design was realized, using soils of different types (Luvisol and Ultisol), with 4 replicates. The results evidentiate significant differences in the evaluated growth characteristics (height, leaflet number and shoot diameter) of M. caesalpiniifolia, that have displayed lower plant growth when cultivated in the Luvisol under conventional system. Plant growth, nodulation and total N accumulation in both seedling tree legumes increased in Ultisol under the different systems of land use. L. leucocephala showed higher potential of biological nitrogen fixation and nodulation effectiveness promoted by indigenous rhizobia.
机译:在退化地区树木豆科植物的生长之前,必须先评估自然形成的根瘤菌种群的结瘤能力,因为这种信息有助于确定可以种植的物种,以恢复受干扰的地区。这项研究的目的是评估在不同土地利用方式下巴西半干旱地区土壤中的“sabiá”(含羞草)和白桦(Leucaena leucocephala(Lam。)de Wit。)的生长和自然结节:原生植被(当地称为caatinga)和具有不同农业系统(单作系统和各种物种的间作系统)的区域。对于每个物种,使用不同类型的土壤(Luvisol和Ultisol)进行了随机区组设计的温室实验,重复了4次。结果证明,在常规系统下在Luvisol中栽培的Caesalpiniifolia的生长特性(高度,小叶数和枝条直径)的评估差异显着,这些植物显示出较低的植物生长。在不同土地利用方式下,Ultisol两种豆科植物的生长,结瘤和总氮积累均增加。 L. leucocephala表现出更高的潜在生物固氮能力和根瘤菌促进的结瘤功效。

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