根瘤菌
- 名rhizobia;leguminous bacteria;rhizobial bacteria;root module bacteria
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[root nodule bacteria] 一种细菌,能使豆科植物的根部形成根瘤,制造含氮的化合物,供植物利用。如花生根瘤菌、大豆根瘤菌等。农业上用根瘤菌拌种,使作物增产
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ph对土壤中土著快、慢生大豆根瘤菌结瘤的影响。
Effect of pH on nodulation of Soybean Rhizobia from Weifang and Huayuankou soils .
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根瘤菌RAPD引物筛选及条件优化
Optimization and primers screening of RAPD Reaction System for Rhizobia
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紫云英根瘤菌基因组中存在有类似IS因子的DNA重复顺序
Repeated sequence similar to insertion elements in the Rhizobium Astragali genome
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根瘤菌DNA中G+C含量的分析
Analysis of Guanine plus Cytosine Content in Rhizobium DNA
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花生施氮肥效果与根瘤菌固N的关系
The relationship between the effect of N application and nitrogen fixation in peanut
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放射型根瘤菌辅酶Q(10)发酵助剂的研究
Studies on the Promotor of CoQ _ ( 10 ) Fermentation with Rhizobium radiobacter
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发酵条件对豌豆根瘤菌细胞生长和辅酶Q(10)合成的影响
Effects of Culture Conditions on Rhizobium leguminosarum Cell Growth and CoQ _ ( 10 ) Production
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接种菌根菌和/或根瘤菌对紫花苜蓿的生长及N·P的吸收效果研究
Research on the Soil Erosion in Low Mountain Area Effect of Mycorrhiza and Rhizobium on N and P Utilization and Vegetative Growth of Alfalfa
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黄芪根瘤菌新表观群中心菌株与相关根瘤菌的DNA同源性分析
Determination of DNA Homology between Central Strains of New Phenotypic Groups Isolated from Astragalus spp . and Type Strains of Described Rhizobial Species
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Mo与花生根瘤菌的复合菌剂对盛花期花生生长的影响
Effects of Combined Inoculant with Peanut Bradyrhizobium and Molybdate on Peanut Growth in Florescence Stage
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通过6组试验数据的计算,发现根瘤菌接种量和其占瘤率之间存在一定的数学关系,并编写了相应的BASIC程序。
There is a mathematical relationship between inoculum rate and nodule occupancy by counting six groups of data , and also , a corresponding BASIC program about counting is compiled .
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结果表明,接种菌根菌和/或根瘤菌显著提高作物吸收利用土壤中N、P的能力,以至提高其产量和质量。
The present data indicated that mycorrhiza and / or rhizobium inoculation improved N and P utilization , and consequently increased the yield of alfalfa .
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诱导紫云英根瘤菌nod基因表达的一些植物因子
Plant Factors Inducing the Expression of Nodulation Gene in Rhizobium astragali
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VA菌根和根瘤菌双接种对白三叶草生长的影响
Response of white clover to rhizobium & va mycorrhiza dual inoculation
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用gfp基因检测饭豆根瘤菌在饭豆根部的定殖动态
Detect the Colonization of Rhizobium in Rice Bean by gfp Gene
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丛枝菌根真菌与根瘤菌对大豆根瘤形成、分布以及根际pH变化的影响
Effects of inoculations of AM Fungi and Rhizobium on the formation , distribution of nodules and the change of pH in rhizosphere of Soybean
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根瘤菌NOD因子的感知与信号传导
Perception and Signal Transduction of Nod Factors between Rhizobia and Host Plants
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应用RAPD分子标记技术研究苜蓿根瘤菌的田间竞争结瘤能力
Study on competitive nodulation ability of Rhizobium meliloti in field test by using RAPD Molecular Marker Method
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五种缓冲剂对根瘤菌生长的酵母汁阿拉伯糖半乳糖培养基(YAG)低pH的缓冲作用进行了测定。
Five buffers were examined for their ability to buffer low pH during the growth of Rhizobium in yeast extract-Arabinose-galactose medium ( YAG ) .
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从蛋白质和DNA水平分析与其共生的根瘤菌的遗传多样性。树突状细胞负载肝癌相关抗原后成熟调控的研究
Genetic diversity of symbiotic rhizobia was studies at the level of whole cell soluble protein and DNA . Maturation regulation of dendritic cells pulsed with hepatocellular carcinoma cell soluble antigens
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三是重复别人用2,4-D外源激素处理植物,接种根瘤菌。
And thirdly , plants were treated with exogenous 2,4-D before rhizobium innoculation .
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2,4-D和根瘤菌对烟草类根瘤形成的影响
Effect of 2,4-D and Rhizobia on Nodulation of Tobacco
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沙冬青根瘤菌结瘤基因nodAPCR-RFLP分析
PCR-RFLP Analysis of Nodulation Gene nodA of Rhizobia from Ammopiptanthus mongolicus
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不同紫花苜蓿品种根瘤菌遗传多样性的PCR-SSCP分析
Genetic Diversity on Rhizobia Isolated from Different Medicago sativa Varieties with PCR-SSCP Method
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根瘤菌(Rhizobium)对非豆科作物的侵染及侵染条件的研究
A study on invasion of Rhizobium against the nonlegumes and its invasive conditions
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四种除草剂对根瘤菌、AMF等土壤微生物的影响
The Effect of Four Herbicides on Rhizobium , AMF and Other Soil Microbe
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斜茎黄芪根瘤菌的16Srdna和23srDNAPCR-RFLP比较分析
16S rDNA and 23S rDNA PCR-RFLP comparative analysis of rhizobia isolated from Astragalus adsurgens
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根瘤菌新类群的全细胞蛋白电泳及16Srdna全序列分析
SDS PAGE of whole cell protein of new rhizobial groups and 16S rDNA sequencing of their representatives
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根瘤菌新类群代表菌株的16Srdna全序列测定及其系统发育地位
Sequencing the 16S rDNA of representative strain of new rhizobial group and determining of its phylogenetic relationship
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大豆根瘤菌(Bradyrhizobiumjaponicum)苹果酸脱氢酶(mdh)基因的插入失活
Insertional inactivation of the malate dehydrogenase gene from Bradyrhizobium japonicum