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首页> 外文期刊>Applied and Environmental Microbiology >Genotypic and Phenotypic Comparisons of Chromosomal Types within an Indigenous Soil Population of Rhizobium leguminosarum bv. trifolii
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Genotypic and Phenotypic Comparisons of Chromosomal Types within an Indigenous Soil Population of Rhizobium leguminosarum bv. trifolii

机译:豆科根瘤菌土著土壤种群中染色体类型的基因型和表型比较。三叶草

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The relative genetic similarities of 200 isolates of Rhizobium leguminosarum bv. trifolii recovered from an Oregon soil were determined at 13 enzyme loci by multilocus enzyme electrophoresis (MLEE). These isolates represented 13 antigenically distinct serotypes recovered from nodules formed on various clover species. The MLEE-derived levels of relatedness among isolates of R. leguminosarum bv. trifolii were found to be in good agreement with the levels of relatedness established by using repetitive (repetitive extragenic palindromic and enterobacterial repetitive intergeneric consensus) sequences and the PCR technique and with levels of relatedness from previously published DNA reassociation studies. BIOLOG substrate utilization patterns showed that isolates within an electrophoretic type (ET) were phenotypically more similar to each other than to isolates of other ETs. The soil isolates were represented by 53 ETs which could be clustered into seven groups (groups B, E, G, H1, H2, I, and J). Evidence for multilocus structure within the population was obtained, and group B was identified as the primary creator of the disequilibrium. Of 75 isolates belonging to the nodule-dominant serotype AS6 complex, 72 were found in group B. Isolates WS2-01 and WS2-02 representing nodule-dominant serotypes recovered from subclover grown at another Oregon site were also found in group B. Isolates representing the most numerous ETs in group B (ETs 2 and 3) were either suboptimally effective or completely ineffective at fixing nitrogen on six different clover species. Another four groups of isolates (groups A, C, D, and F) were identified when 32 strains of diverse origins were analyzed by MLEE and incorporated into the cluster analysis. Group A was most dissimilar in comparisons with other groups and contained strain USDA 2124 (T24), which produces trifolitoxin and has unique symbiotic characteristics.
机译:200株豆科根瘤菌的相对遗传相似性。通过多基因座酶电泳(MLEE)在13个酶基因座上确定了从俄勒冈州土壤中回收的三叶草。这些分离物代表了从在各种三叶草物种上形成的结节中回收的13种抗原性不同的血清型。 MLEE衍生的豆科双歧杆菌分离株之间的相关性水平。发现三叶草与通过使用重复(重复性基因外回文和肠杆菌重复性基因间共识)序列和PCR技术建立的相关性水平高度一致,并且与先前发表的DNA重新关联性研究的相关性高度一致。 BIOLOG底物利用模式显示,电泳类型(ET)内的分离物在表型上彼此相似,而不是其他ET的分离物。土壤分离物由53个ET代表,它们可以分为7个组(B,E,G,H1,H2,I和J组)。获得了群体内多基因座结构的证据,B组被确定为不平衡的主要创造者。在B组中发现了75个属于结节优势血清型AS6复合体的分离株。在B组中还发现了代表从另一个俄勒冈州生长的三叶草中回收的结节优势血清型的分离株WS2-01和WS2-02。 B组中最多的ET(ET 2和3)在将氮固定在六种不同的三叶草物种上的效果不是最理想的就是完全无效。当通过MLEE分析32种不同来源的菌株并将其纳入聚类分析时,鉴定出另外四组分离株(A,C,D和F组)。与其他组相比,A组最不相似,并且包含菌株USDA 2124(T24),该菌株产生三叶毒素并具有独特的共生特性。

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