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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Comparative metatranscriptomics reveals kingdom level changes in the rhizosphere microbiome of plants
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Comparative metatranscriptomics reveals kingdom level changes in the rhizosphere microbiome of plants

机译:比较性转录组学揭示了植物根际微生物组中的王国水平变化

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Plant-microbe interactions in the rhizosphere have important roles in biogeochemical cycling, and maintenance of plant health and productivity, yet remain poorly understood. Using RNA-based metatranscriptomics, the global active microbiomes were analysed in soil and rhizospheres of wheat, oat, pea and an oat mutant (sad1) deficient in production of anti-fungal avenacins. Rhizosphere microbiomes differed from bulk soil and between plant species. Pea (a legume) had a much stronger effect on the rhizosphere than wheat and oat (cereals), resulting in a dramatically different rhizosphere community. the relative abundance of eukaryotes in the oat and pea rhizospheres was more than fivefold higher than in the wheat rhizosphere or bulk soil. Nematodes and bacterivorous protozoa were enriched in all rhizospheres, whereas the pea rhizosphere was highly enriched for fungi. Metabolic capabilities for rhizosphere colonisation were selected, including cellulose degradation (cereals), H 2 oxidation (pea) and methylotrophy (all plants). Avenacins had little effect on the prokaryotic community of oat, but the eukaryotic community was strongly altered in the sad1 mutant, suggesting that avenacins have a broader role than protecting from fungal pathogens. Profiling microbial communities with metatranscriptomics allows comparison of relative abundance, from multiple samples, across all domains of life, without polymerase chain reaction bias. this revealed profound differences in the rhizosphere microbiome, particularly at the kingdom level between plants.
机译:根际中的植物-微生物相互作用在生物地球化学循环中以及在维持植物健康和生产力方面具有重要作用,但人们对此知之甚少。使用基于RNA的元转录组学,分析了小麦,燕麦,豌豆和燕麦突变体(sad1)的土壤和根际中的总体活性微生物组,这些突变体不足以产生抗真菌的avenacins。根际微生物群不同于散装土壤和植物物种。豌豆(豆类)对根际的影响比小麦和燕麦(谷物)对根际的影响要大得多,从而导致根际群落的差异很大。燕麦和豌豆根际中真核生物的相对丰度比小麦根际或大块土壤中的高。线虫和细菌原生动物在所有根际中均富集,而豌豆根际中的真菌高度富集。选择了根际定植的代谢能力,包括纤维素降解(谷物),H 2氧化(豌豆)和甲基营养(所有植物)。阿维那星对燕麦的原核生物群落几乎没有影响,但在sad1突变体中,真核生物群落发生了很大的变化,这表明阿维那星具有比保护真菌病原体更广泛的作用。利用元转录组学对微生物群落进行分析,可以比较生活各个领域中多个样品的相对丰度,而不会产生聚合酶链反应偏倚。这揭示了根际微生物组的深层差异,特别是在植物之间的王国水平上。

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