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Fungal ecological strategies reflected in gene transcription - a case study of two litter decomposers

机译:基因转录中反映的真菌生态策略 - 一种垃圾分解器的案例研究

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摘要

Microbial communities interplay with their environment through their functional traits that can be a response or an effect on the environment. Here, we explore how a functional trait-the decomposition of organic matter, can be addressed based on genetic markers and how the expression of these markers reflect ecological strategies of two fungal litter decomposer Gymnopus androsaceus and Chalara longipes. We sequenced the genomes of these two fungi, as well as their transcriptomes at different steps of Pinus sylvestris needles decomposition in microcosms. Our results highlighted that if the gene content of the two species could indicate similar potential decomposition abilities, the expression levels of specific gene families belonging to the glycoside hydrolase category reflected contrasting ecological strategies. Actually, C. longipes, the weaker decomposer in this experiment, turned out to have a high content of genes involved in cell wall polysaccharides decomposition but low expression levels, reflecting a versatile ecology compare to the more competitive G. androsaceus with high expression levels of keystone functional genes. Thus, we established that sequential expression of genes coding for different components of the decomposer machinery indicated adaptation to chemical changes in the substrate as decomposition progressed.
机译:微生物社区通过其功能性状与其环境相互作用,这可能是对环境的反应或影响。在这里,我们探讨如何基于遗传标记的有机物分解的功能性状和如何解决这些标志物的表达反映了两种真菌垃圾分解器健身房androsaceus和chalara onvipes的生态策略。我们测序了这两种真菌的基因组,以及它们在微观粒子的Pinus Sylvestris针分解的不同步骤的转录om。我们的结果强调,如果两种物种的基因含量可以表明相似的潜在分解能力,则属于糖苷水解酶类别的特定基因家族的表达水平反映了对比生态策略。实际上,C.较弱的分解器在该实验中,原来具有高含量的基因,参与细胞壁多糖分解但表达水平低,反映了与具有高表达水平的更具竞争力的G.和葡萄糖的多功能生态学。基石功能基因。因此,我们确定编码分解机机械的不同组分的基因的顺序表达表明在基材中的化学变化进行了分解的进展。

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