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Forest-to-pasture conversion increases the diversity of the phylum Verrucomicrobia in Amazon rainforest soils

机译:从森林到牧场的转换增加了亚马逊雨林土壤中疣状微生物门的多样性

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摘要

The Amazon rainforest is well known for its rich plant and animal diversity, but its bacterial diversity is virtually unexplored. Due to ongoing and widespread deforestation followed by conversion to agriculture, there is an urgent need to quantify the soil biological diversity within this tropical ecosystem. Given the abundance of the phylum Verrucomicrobia in soils, we targeted this group to examine its response to forest-to-pasture conversion. Both taxonomic and phylogenetic diversities were higher for pasture in comparison to primary and secondary forests. The community composition of Verrucomicrobia in pasture soils was significantly different from those of forests, with a 11.6% increase in the number of sequences belonging to subphylum 3 and a proportional decrease in sequences belonging to the class Spartobacteria. Based on 99% operational taxonomic unit identity, 40% of the sequences have not been detected in previous studies, underscoring the limited knowledge regarding the diversity of microorganisms in tropical ecosystems. The abundance of Verrucomicrobia, measured with quantitative PCR, was strongly correlated with soil C content (r = 0.80, P = 0.0016), indicating their importance in metabolizing plant-derived carbon compounds in soils.
机译:亚马逊雨林以其丰富的动植物多样性而闻名,但其细菌多样性实际上尚未得到开发。由于持续不断的广泛森林砍伐,然后转向农业,迫切需要对这一热带生态系统中的土壤生物多样性进行量化。鉴于土壤中的Verrucomicrobia门类丰富,我们针对该小组研究了其对森林到牧草转化的反应。与原始和次生林相比,牧场的分类学和系统发育多样性都更高。牧场土壤中的疣状微生物群落组成与森林明显不同,属于亚属3的序列数量增加了11.6%,而属于Spartobacteria类的序列则成比例地减少了。基于99%的操作生物分类单位同一性,以前的研究中未检测到40%的序列,这突显了有关热带生态系统中微生物多样性的有限知识。用定量PCR测得的Verrucomicrobia的丰度与土壤C含量密切相关(r = 0.80,P = 0.0016),表明它们在土壤中植物来源的碳化合物代谢中的重要性。

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