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Forest floor community metatranscriptomes identify fungal and bacterial responses to N deposition in two maple forests

机译:林地群落的转录组可以识别两种枫林对氮沉降的真菌和细菌反应

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摘要

Anthropogenic N deposition alters patterns of C and N cycling in temperate forests, where forest floor litter decomposition is a key process mediated by a diverse community of bacteria and fungi. To track forest floor decomposer activity we generated metatranscriptomes that simultaneously surveyed the actively expressed bacterial and eukaryote genes in the forest floor, to compare the impact of N deposition on the decomposers in two natural maple forests in Michigan, USA, where replicate field plots had been amended with N for 16 years. Site and N amendment responses were compared using about 74,000 carbohydrate active enzyme transcript sequences (CAZymes) in each metatranscriptome. Parallel ribosomal RNA (rRNA) surveys of bacterial and fungal biomass and taxonomic composition showed no significant differences in either biomass or OTU richness between the two sites or in response to N. Site and N amendment were not significant variables defining bacterial taxonomic composition, but they were significant for fungal community composition, explaining 17 and 14% of the variability, respectively. The relative abundance of expressed bacterial and fungal CAZymes changed significantly with N amendment in one of the forests, and N-response trends were also identified in the second forest. Although the two ambient forests were similar in community biomass, taxonomic structure and active CAZyme profile, the shifts in active CAZyme profiles in response to N-amendment differed between the sites. One site responded with an over-expression of bacterial CAZymes, and the other site responded with an over-expression of both fungal and different bacterial CAZymes. Both sites showed reduced representation of fungal lignocellulose degrading enzymes in N-amendment plots. The metatranscriptome approach provided a holistic assessment of eukaryote and bacterial gene expression and is applicable to other systems where eukaryotes and bacteria interact.
机译:人为氮的沉积改变了温带森林中碳和氮循环的模式,在森林中,凋落物分解是由细菌和真菌的多样性共同体介导的关键过程。为了跟踪林地分解器的活动,我们生成了元转录组,该组同时调查了林地中主动表达的细菌和真核生物基因,以比较氮沉降对美国密歇根州两个天然枫林中分解器的影响,在那两个自然枫林中有重复的田地。用N修改了16年。使用每个元转录组中的约74,000个碳水化合物活性酶转录物序列(CAZymes),比较位点和N修饰反应。细菌和真菌生物量及分类学组成的平行核糖体RNA(rRNA)调查显示,两个位点之间或响应N的生物量或OTU丰富度均无显着差异。位点和N的修饰不是定义细菌分类学组成的重要变量,但它们对真菌群落组成具有重要意义,分别解释了17%和14%的变异性。在其中一个森林中,表达的细菌和真菌CAZyme的相对丰度随着N的修正而发生了显着变化,并且在第二个森林中也发现了N反应趋势。尽管两个周围森林的群落生物量,分类结构和有效的CAZyme分布图相似,但不同地点之间,响应N修正的活动的CAZyme分布图却有所不同。一个位点以细菌CAZymes的过表达为响应,另一个位点以真菌和不同细菌CAZymes的过表达为响应。在N-修正图中,两个位点均显示出真菌木质纤维素降解酶的减少。元转录组方法提供了对真核生物和细菌基因表达的整体评估,并适用于真核生物和细菌相互作用的其他系统。

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