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Positive correlation between soil bacterial metabolic and plant species diversity and bacterial and fungal diversity in a vegetation succession on Karst

机译:喀斯特植被演替过程中土壤细菌代谢与植物物种多样性及细菌和真菌多样性之间的正相关

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The hypothesis that positive links exist among plant taxonomic diversity, belowground microbial taxonomic and metabolic diversities was tested for four secondary vegetation successional stages (tussock (T), shrub (S), secondary forest (SF) and primary forest (PF)) in Huanjiang county, SW China. Soil bacterial communities were characterized by DNA fingerprinting and metabolic profiling. Along the succession, Shannon diversity indices followed the order SF>PF>S>T for plant taxonomic diversity, T>SF>PF>S for bacterial operational taxonomic diversity, SF>T>S>PF for fungal operational taxonomic diversity, and SF>PF>S>T for bacterial metabolic diversity. Significant positive correlations were found between bacterial and fungal taxonomic diversities. However, there was no significant correlation between soil microbial taxonomic diversity and bacterial metabolic diversity. Two-way ANOVA revealed that vegetation and season, as well as their interaction, had significant effects on soil microbial (fungal and bacterial) taxonomic diversities, but that there were no seasonal effects on metabolic diversity. However, PCA and MANOVA revealed highly significant differences among the bacterial community-level physiological profiles, reflecting the successional sequence. The findings from this survey support the notion that there are strong interactions between aboveground and belowground communities and suggest that bacterial metabolic and plant taxonomic diversities, but not microbial taxonomic and metabolic diversities, can be correlated.
机译:在环江的四个次生植被演替阶段(丛生(T),灌木(S),次生森林(SF)和原始森林(PF))检验了植物分类学多样性,地下微生物分类学和代谢多样性之间存在正向联系的假设。中国西南部县。土壤细菌群落的特征是DNA指纹图谱和代谢谱。在演替过程中,香农多样性指数遵循以下顺序:植物分类学多样性依次为SF> PF> S> T,细菌操作分类学多样性遵循T> SF> PF> S,真菌操作分类学多样性遵循SF> T> S> PF和SF > PF> S> T用于细菌代谢多样性。发现细菌和真菌分类学多样性之间存在显着的正相关。但是,土壤微生物分类多样性和细菌代谢多样性之间没有显着相关性。双向方差分析表明,植被和季节以及它们之间的相互作用对土壤微生物(真菌和细菌)分类学多样性有显着影响,但对代谢多样性没有季节性影响。但是,PCA和MANOVA揭示了细菌群落水平的生理特征之间的高度显着差异,反映了连续序列。这项调查的结果支持以下观点:地上和地下社区之间存在强大的相互作用,并表明细菌代谢和植物分类多样性,而不是微生物分类和代谢多样性可以相互关联。

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