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Metagenomic analysis exploring taxonomic and functional diversity of soil microbial communities in Chilean vineyards and surrounding native forests

机译:元基因组分析探索智利葡萄园和周围原始森林中土壤微生物群落的分类学和功能多样性

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摘要

Mediterranean biomes are biodiversity hotspots, and vineyards are important components of the Mediterranean landscape. Over the last few decades, the amount of land occupied by vineyards has augmented rapidly, thereby increasing threats to Mediterranean ecosystems. Land use change and agricultural management have important effects on soil biodiversity, because they change the physical and chemical properties of soil. These changes may also have consequences on wine production considering that soil is a key component of terroir. Here, we describe the taxonomic diversity and metabolic functions of bacterial and fungal communities present in forest and vineyard soils in Chile. To accomplish this goal, we collected soil samples from organic vineyards in central Chile and employed a shotgun metagenomic approach to sequence the microbial DNA. Additionally, we studied the surrounding native forest to obtain a baseline of the soil conditions in the area prior to the establishment of the vineyard. Our metagenomic analyses revealed that both habitats shared most of the soil microbial species. The most abundant genera in the two habitats were the bacteria Candidatus Solibacter and Bradyrhizobium and the fungus Gibberella. Our results suggest that the soil microbial communities are similar in these forests and vineyards. Therefore, we hypothesize that native forests surrounding the vineyards may be acting as a microbial reservoir buffering the effects of the land conversion. Regarding the metabolic diversity, we found that genes pertaining to the metabolism of amino acids, fatty acids, and nucleotides as well as genes involved in secondary metabolism were enriched in forest soils. On the other hand, genes related to miscellaneous functions were more abundant in vineyard soils. These results suggest that the metabolic function of microbes found in these habitats differs, though differences are not related to taxonomy. Finally, we propose that the implementation of environmentally friendly practices by the wine industry may help to maintain the microbial diversity and ecosystem functions associated with natural habitats.
机译:地中海生物群落是生物多样性的热点,而葡萄园是地中海景观的重要组成部分。在过去的几十年中,葡萄园占据的土地数量迅速增加,从而增加了对地中海生态系统的威胁。土地利用变化和农业管理对土壤生物多样性具有重要影响,因为它们改变了土壤的物理和化学特性。考虑到土壤是风土的重要组成部分,这些变化也可能对葡萄酒生产产生影响。在这里,我们描述了智利森林和葡萄园土壤中细菌和真菌群落的分类学多样性和代谢功能。为了实现这一目标,我们从智利中部的有机葡萄园中收集了土壤样品,并采用a弹枪宏基因组学方法对微生物DNA进行了测序。此外,我们研究了周围的原始森林,以获得建立葡萄园之前该地区土壤条件的基线。我们的宏基因组分析表明,两个生境共享大多数土壤微生物物种。在这两个栖息地中,最丰富的属是细菌念珠菌和慢生根瘤菌以及真菌赤霉菌。我们的结果表明,这些森林和葡萄园中的土壤微生物群落相似。因此,我们假设葡萄园周围的原生森林可能充当了缓冲土地转化影响的微生物库。关于代谢多样性,我们发现与氨基酸,脂肪酸和核苷酸代谢有关的基因以及与次级代谢有关的基因在森林土壤中富集。另一方面,与其他功能有关的基因在葡萄园土壤中更为丰富。这些结果表明,尽管这些差异与分类法无关,但在这些栖息地中发现的微生物的代谢功能却有所不同。最后,我们建议葡萄酒行业实施环境友好做法可能有助于维持与自然栖息地相关的微生物多样性和生态系统功能。

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