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Identifying the Biogeographic Patterns of Rare and Abundant Bacterial Communities Using Different Primer Sets on the Loess Plateau

机译:在黄土高原上使用不同底漆识别罕见和丰富的细菌群落的生物地图模式

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摘要

High-throughput sequencing is commonly used to study soil microbial communities. However, different primers targeting different 16S rRNA hypervariable regions often generate different microbial communities and result in different values of diversity and community structure. This study determined the consequences of using two bacterial primers (338f/806r, targeting the V3–V4 region, and 520f/802r, targeting the V4 region) to assess bacterial communities in the soils of different land uses along a latitudinal gradient. The results showed that the variations in the soil bacterial diversity in different land uses were more evident based on the former pair. The statistical results showed that land use had no significant impact on soil bacterial diversity when primer pair 520f/802r was used. In contrast, when primer pair 338f/806r was used, the cropland and orchard soils had significantly higher operational taxonomic units (OTUs) and Shannon diversity index values than those of the shrubland and grassland soils. Similarly, the soil bacterial diversity generated by primer pair 338f/806r was significantly impacted by mean annual precipitation, soil total phosphorus (TP), soil total nitrogen (TN), and soil available phosphorus (AVP), while the soil bacterial diversity generated by primer pair 520f/802r showed no significant correlations with most of these environmental factors. Multiple regression models indicated that soil pH and soil organic carbon (SOC) shaped the soil bacterial community structure on the Loess Plateau regardless of what primer pair was used. Climatic conditions mainly affected the diversity of rare bacteria. Abundant bacteria are more sensitive than rare bacteria to environmental changes. Very little of the variation in the rare bacterial community was explained by environmental factors or geographic distance, suggesting that the communities of rare bacteria are unpredictable. The distributions of the abundant taxa were mainly determined by variations in environmental factors.
机译:高通量测序通常用于研究土壤微生物群群。然而,靶向不同16s的不同引物靶向RRNA高变区域通常会产生不同的微生物社区,并导致不同的多样性和社区结构的值。该研究确定了使用两种细菌引物(338F / 806R,靶向V3-V4区和520F / 802R,靶向V4区)的后果,以评估不同土地土壤中的细菌群落沿着纬度梯度。结果表明,基于前对对的不同土地用途中土壤细菌多样性的变化更加明显。统计结果表明,当使用引物对520F / 802R时,土地利用对土壤细菌多样性没有显着影响。相反,当使用引物对338F / 806R时,农田和果园土壤具有比灌木丛和草原土壤的公共分类单位(OTUS)和香蒲分集指数值明显高。类似地,引物对338F / 806R产生的土壤细菌多样性受平均年降水,土壤总磷(TP),土壤总氮(TN)和土壤可用磷(AVP)显着影响,而土壤细菌多样性引物对520F / 802R与大多数环境因素没有显着相关性。多元回归模型表明,无论使用哪种引物对,土壤pH和土壤有机碳(SOC)形状在黄土高原上的土壤细菌群落结构。气候条件主要影响稀有细菌的多样性。丰富的细菌比稀有细菌更敏感到环境变化。稀有细菌群落的变异很少是由环境因素或地理距离解释的,这表明稀有细菌的社区是不可预测的。丰富的分类群的分布主要由环境因素的变化决定。

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