首页> 外文期刊>Frontiers in Microbiology >Variation in Soil Microbial Community Structure Associated with Different Legume Species Is Greater than that Associated with Different Grass Species
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Variation in Soil Microbial Community Structure Associated with Different Legume Species Is Greater than that Associated with Different Grass Species

机译:与不同豆科植物物种相关的土壤微生物群落结构的变化要大于与不同草种相关的土壤微生物群落结构的变化。

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Plants are the essential factors shaping soil microbial community (SMC) structure. When most studies focus on the difference in the SMC structure associated different plant species, the variation in the SMC structure associated with phylogenetically close species is less investigated. Legume (Fabaceae) and grass (Poaceae) are functionally important plant groups; however, their influences on the SMC structure are seldom compared, and the variation in the SMC structure among legume or grass species is largely unknown. In this study, we grew three legume species vs. three grass species in mesocosms, and monitored the soil chemical property, quantified the abundance of bacteria and fungi. The SMC structure was also characterized using PCR-DGGE and Miseq sequencing. Results showed that legume and grass differentially affected soil pH, dissolved organic C, total N content, and available P content, and that legume enriched fungi more greatly than grass. Both DGGE profiling and Miseq-sequencing indicated that the bacterial diversity associated with legume was higher than that associated with grass. When legume increased the abundance of Verrucomicrobia , grass decreased it, and furthermore, linear discriminant analysis identified some group-specific microbial taxa as potential biomarkers of legume or grass. These data suggest that legume and grass differentially select for the SMC. More importantly, clustering analysis based on both DGGE profiling and Miseq-sequencing demonstrated that the variation in the SMC structure associated with three legume species was greater than that associated with three grass species.
机译:植物是影响土壤微生物群落(SMC)结构的重要因素。当大多数研究集中在与不同植物物种相关的SMC结构差异上时,与系统发育紧密物种相关的SMC结构变化则较少研究。豆科(豆科)和草(禾本科)在功能上很重要。然而,很少比较它们对SMC结构的影响,并且在豆类或草种中SMC结构的变化在很大程度上是未知的。在这项研究中,我们在中观世界中种植了三种豆科植物种与三种草类,并监测了土壤化学性质,定量了细菌和真菌的丰度。 SMC结构也使用PCR-DGGE和Miseq测序进行了表征。结果表明,豆科植物和草对土壤的pH,溶解性有机碳,总氮含量和有效磷含量有不同的影响,并且豆类比草更富集真菌。 DGGE分析和Miseq测序均表明与豆类相关的细菌多样性高于与草相关的细菌多样性。当豆科植物增加了Verrucomicrobia的丰度时,草将其减少,此外,线性判别分析还发现某些特定于群体的微生物类群是豆科植物或草的潜在生物标记。这些数据表明豆科植物和草对SMC的选择不同。更重要的是,基于DGGE分析和Miseq测序的聚类分析表明,与三种豆科植物相关的SMC结构变化大于与三种草科相关的SMC结构变化。

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