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首页> 外文期刊>Applied and Environmental Microbiology >Single-Strain versus Multistrain Inoculation: Effect of Soil Mineral N Availability on Rhizobial Strain Effectiveness and Competition for Nodulation on Chick-Pea, Soybean, and Dry Bean
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Single-Strain versus Multistrain Inoculation: Effect of Soil Mineral N Availability on Rhizobial Strain Effectiveness and Competition for Nodulation on Chick-Pea, Soybean, and Dry Bean

机译:单株接种与多株接种:土壤矿质氮有效性对根瘤菌有效性的影响以及对小豌豆,大豆和干豆结瘤的竞争

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摘要

The nitrogen-fixing effectiveness of multistrain inoculants was found to be determined by both the effectiveness of the component strains and the percentage of the nodules occupied by them. Multistrain formulations were always either as good as the most effective single-strain inoculant or intermediate between the most and the least effective. The percentage of nodules occupied and the amount of nitrogen fixed by the component strains of a multistrain inoculant showed highly significant linear correlation. The availability of soil N had a significant influence on the nitrogen fixation potential of each strain. The mineral N status of the soil was clearly a significant factor in affecting the competition pattern of Rhizobium loti (chick-pea) and Bradyrhizobium japonicum strains. Differences between the effectiveness of strains were masked under conditions of soil N availability. However, when soil N was immobilized with sugarcane bagasse, the differences became significant. In the chick-pea system, R. loti TAL 1148 (Nit 27A8) was the most effective but not the most competitive of the three strains used. In the soybean and dry bean systems, B. japonicum TAL 102 (USDA 110) and R. leguminosarum bv. phaseoli TAL 182, respectively, were consistently the most effective and, more often than not, the most competitive of the strains used for each species.
机译:发现多菌株接种剂的固氮有效性取决于组分菌株的有效性和它们所占结核的百分比。多株制剂总是与最有效的单株孕育剂一样好,或者总是在最有效和最差之间。多菌种孕育剂的组成菌株所占据的根瘤百分比和固氮量显示出高度显着的线性相关性。土壤N的有效性对每种菌株的固氮潜力都有重要影响。土壤的矿质N状况显然是影响Lothi根瘤菌(鸡豆)和Bradyrhizobium japonicum菌株竞争模式的重要因素。在土壤氮素有效利用条件下,菌株有效性之间的差异被掩盖了。但是,当将土壤N固定在甘蔗渣中时,差异变得很明显。在鹰嘴豆系统中,R。loti TAL 1148(Nit 27A8)在使用的三种菌株中最有效,但不是最具竞争力的。在大豆和干豆系统中,B。japonicum TAL 102(USDA 110)和R. leguminosarum bv。在每个物种使用的菌株中,菜豆TAL 182分别始终是最有效的,而且通常是最具竞争力的。

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