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Higher Diversity of Rhizobium leguminosarum Biovar viciae Populations in Arable Soils than in Grass Soils

机译:耕地中豆科根瘤菌的生物多样性比草类土壤更高

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摘要

The bacterial genetic diversity after long-term arable cultivation was compared with that under permanent grassland using replicated paired contrasts. Pea-nodulating Rhizobium leguminosarum populations were sampled from pairs of arable and grass sites at four locations in Yorkshire, United Kingdom. Isolates were characterized using both chromosomal (16S-23S ribosomal DNA internal transcribed spacer PCR-restriction fragment length polymorphism) and plasmid (group-specific repC PCR amplification) markers. The diversities of chromosomal types, repC profiles, and combined genotypes were calculated using richness in types (adjusted to equal sample sizes by rarefaction), Shannon-Wiener index, and Simpson's index. The relative differences in diversity within each pair of sites were similar for all three diversity measures. Chromosomal types, repC profiles, and combined genotypes were each more diverse in arable soils than in grass soils at two of the four locations. The other comparisons showed no significant differences. We conclude that rhizobial diversity can be affected by differences between these two management regimens. Multiple regression analyses indicated that lower diversity was associated with high potential nitrogen and phosphate levels or with acidity.
机译:使用重复配对对比,将长期可耕种后的细菌遗传多样性与永久草地下的细菌遗传多样性进行了比较。从联合王国约克郡四个地点的成对耕地和草场采样了豌豆根瘤菌豆科菌群。使用染色体(16S-23S核糖体DNA内部转录的间隔区PCR限制性片段长度多态性)和质粒(组特异性repC PCR扩增)标记物对分离物进行表征。使用类型丰富度(通过稀疏度调整为相等的样本大小),Shannon-Wiener指数和Simpson指数来计算染色体类型,repC图谱和组合基因型的多样性。对于所有三种多样性度量,每对站点内多样性的相对差异均相似。在四个位置中的两个位置,可耕土壤中的染色体类型,repC图谱和组合基因型比草土壤中的每个都更加多样化。其他比较显示无显着差异。我们得出的结论是,这两种管理方案之间的差异可能会影响根瘤菌多样性。多元回归分析表明,较低的多样性与较高的潜在氮和磷酸盐水平或酸性相关。

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