巴西南部潘帕草原生物群落不同土壤利用方式对真菌群落的影响

Amanda Luisa Stroher, Thaís Müller, D. Heidrich, Guilherme Liberato da Silva, Claudete Rempel, Mônica Jachetti Maciel
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摘要

任何自然生态系统中的人为活动都会引起影响物理和生物环境的变化,从而导致退化。同样,这些活动会引起土壤化学和物理因素的显著变化,也会影响微生物群落。本研究旨在评价潘帕草原3种不同土壤的土壤生化和理化特征对真菌群落发育的影响。土壤类型为原生林、桉树人工林和牧区,土壤类型分为冷热两期。对土壤进行了微生物学、理化和生化分析。鉴定出真菌属、种:曲霉、黑曲霉、镰刀菌、土霉、土霉、青霉、花青菌、木霉、黄萎病菌。结果表明,不同采样区域的真菌群落均受到土壤组成特征的影响。曲霉(Aspergillus sp.)与土壤中较高的锰、硼含量和Ca+Mg/K比值有关,而黑曲霉(a.niger)和木霉(Trichodermasp.)与土壤中较高的锰、硼含量有关。与这些变量呈负相关。曲霉对锰的耐受性较好。暖期以牧场多样性最高,冷期以桉树人工林多样性最低。除曲霉属外,所分析的分类群在寒冷时期比温暖时期有所减少。在冷期比热期表现出更大的数量。由此可见,将潘帕草原生物群系土壤用于种植单一作物或生产牧场,干扰了潘帕草原生物群系的特性,对真菌群落产生了明显的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of different soil uses in the Pampa biome, southern Brazil, on fungal communities
Anthropogenic activities in any natural ecosystem cause changes that affect the physical and biological environment, causing degradation. Likewise, these activities can cause significant changes in the chemical and physical factors of the soil, also impacting the microbiological community. The study aimed to evaluate the influence of soil biochemical and physicochemical characteristics on the development of fungal communities in three different soils of the Pampa biome. The soil types selected were: native forest, Eucalyptus plantation and pasture area, in two distinct periods: hot and cold. Microbiological, physicochemical and biochemical analyses of the soils were carried out. The following genera and species of fungi were identified:Aspergillus sp., Aspergillus niger, Fusarium sp., Geotrichum sp., Isaria sp., Penicillium sp., Scedosporium sp., Trichoderma sp., Verticilliumsp. The results showed that the fungal community is being affected by soil composition characteristics, regardless of the sampled areas. Aspergillus sp. is associated with higher amounts of manganese, boron and the Ca+Mg/K ratio in the soil, while A. niger and Trichodermasp. have a negative relationship with these variables. Aspergillus sp. showed a high ability to tolerate Mn. The most diverse area was pasture in the warm period, and the least diverse was Eucalyptus plantation in the cold period. The analyzed taxa had a reduction in the cold period compared to the warm one, except for Aspergillussp. in the Eucalyptus area, which presented a greater amount in the cold period compared to the hot period. It can be seen that the use of soil in the Pampa biome for planting monocultures or for generating pastures interferes with its characteristics and distinctly affects the fungal community.
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