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Ascomycete diversity in soil-feeding termite nests and soils from a tropical rainforest

机译:热带雨林中以土壤为食的白蚁巢和土壤中的子囊菌多样性

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Molecular microbial ecology has revealed remarkable biodiversity – prokaryotic and eukaryotic – in numerous soil environments. However, no culture-independent surveys of the termitosphere exists, although termites dominate tropical rainforests. Here, we focused on soil feeders, building nests with their soil-born faeces, enriched with clay–organic complexes, thus contributing to the improvement of soil fertility. In order to assess the fungal community composition of these termitaries compared with soils not foraged by termites, samples of the two types were collected in the Lopé rainforest, Gabon, and processed for generation of fungal internal transcribed spacer (ITS) clone libraries. Although primers were universal, most of the recovered sequences represented Ascomycete that were previously uncharacterized and the proportions of which reached 72.5% in soils and 80% in termitaries. Their affiliation with identified fungi was analysed in performing a phylogenetic tree based on 5.8S rDNA. Furthermore, the ascomycete communities of soil-feeding termitaries and soils shared only 6.3% of sequences. This discrepancy of composition between soil and nest may result from the building behaviour of termites, as the organic matter in the nest is chemically modified, and some vacant ecological microniches are available for more specialized fungi.
机译:分子微生物生态学已经揭示了在许多土壤环境中非凡的生物多样性-原核和真核。然而,尽管白蚁在热带雨林中占主导地位,但没有关于文化的白蚁层调查。在这里,我们专注于土壤饲养者,利用其土壤出生的粪便筑巢,并富含粘土有机复合物,从而为改善土壤肥力做出了贡献。为了评估这些白蚁的真菌群落组成与未白蚁觅食的土壤相比,在加蓬的洛佩雨林中收集了这两种类型的样本,并对其进行了处理,以生成真菌内部转录间隔子(ITS)克隆文库。尽管引物是通用的,但大多数回收的序列代表了以前未鉴定的子囊菌,其比例在土壤中达到72.5%,在白蚁中达到80%。在执行基于5.8S rDNA的系统进化树时,分析了它们与已鉴定真菌的联系。此外,土壤摄食白蚁和土壤的子囊菌群落仅共享6.3%的序列。土与巢之间的这种成分差异可能是由于白蚁的建筑行为引起的,因为巢中的有机物经过化学修饰,有些空缺的生态微生态位可用于更专门的真菌。

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