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Distribution patterns of microbial communities in ultramafic landscape: a metagenetic approach highlights the strong relationships between diversity and environmental traits

机译:超镁铁质景观中微生物群落的分布模式:一种遗传学方法突显了多样性与环境特征之间的紧密关系

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摘要

Microbial species richness and assemblages across ultramafic ecosystems were investigated to assess the relationship between their distributional patterns and environmental traits. The structure of microorganism communities in the Koniambo massif, New Caledonia, was investigated using a metagenetic approach correlated with edaphic and floristic factors. Vegetation cover and soil properties significantly shaped the large phylogenetic distribution of operational taxonomic unit within microbial populations, with a mean per habitat of 3.477 (+/- 317) for bacteria and 712 (+/- 43) for fungi. Using variance partitioning, we showed that the effect of aboveground vegetation was the most significant descriptor for both bacterial and fungal communities. The floristic significant predictors explained 43% of the variation for both the bacterial and fungal community structures, while the edaphic significant predictors explained only 32% and 31% of these variations, respectively. These results confirm the previous hypothesis that the distribution of microorganisms was more structured by the vegetation cover rather than the edaphic characteristics and that microbial diversity is not limited in ultramafic ecosystems.
机译:研究了超镁铁质生态系统中微生物物种的丰富度和组合,以评估其分布模式与环境特征之间的关系。使用与埃德海和植物区系相关的遗传学方法研究了新喀里多尼亚科尼奥博断层块中微生物群落的结构。植被的覆盖率和土壤特性显着影响了微生物种群中可操作分类单位的大系统发育分布,细菌的平均每生境平均数为3.477(+/- 317),真菌的平均每生境平均数为712(+/- 43)。使用方差分区,我们显示了地上植被的影响是细菌和真菌群落的最重要的描述。植物显着预测因子解释了细菌和真菌群落结构的43%变异,而食道显着预测因子分别解释了这些变异的32%和31%。这些结果证实了先前的假设,即微生物的分布更多地由植被覆盖而不是由水生特征构成,并且微生物多样性在超镁铁质生态系统中不受限制。

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