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首页> 外文期刊>Phytobiomes Journal >Phylogeny, Plant Species, and Plant Diversity Influence Carbon Use Phenotypes Among Fusarium Populations in the Rhizosphere Microbiome
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Phylogeny, Plant Species, and Plant Diversity Influence Carbon Use Phenotypes Among Fusarium Populations in the Rhizosphere Microbiome

机译:系统发育,植物种类和植物多样性影响根际微生物组中镰刀菌种群之间的碳利用表型。

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Carbon use by microorganisms in the rhizosphere microbiome has been linked to plant pathogen suppression and increased mineralization of soil nutrients for plant uptake; however, factors that influence carbon use traits are poorly understood for most microbial groups. This work characterized the relationships of phylogeny, plant species, and plant diversity with carbon use among fungi in the genus Fusarium from rhizosphere soil. Eighty-four randomly collected Fusarium isolates were cultured from the rhizosphere of the perennial plants Lespedeza capitata and Andropogon gerardii, maintained as long-term monocultures or growing in 16-plant species polycultures. For each isolate, a portion of the RPB2 locus was sequenced for phylogenetic analyses and growth on 95 carbon substrates was measured using Biolog SF-P2 plates. Similarity in carbon use among isolates decreased with increasing genetic distance and there were differences in niche width (i.e., number of carbon substrates used) and growth on preferred substrates (i.e., mean growth on the five carbon substrates supporting the greatest growth) among isolates within two predominant phylogenetic clades. Carbon use also varied with plant species and the diversity of the surrounding plant community. Within each of the two predominant clades, niche width was greater among Fusarium isolates from the rhizosphere of L. capitata than A. gerardii. The correspondence of phylogeny with carbon use suggests changes in Fusarium community composition may lead to the differential use of carbon substrates in the rhizosphere, while the effects of plant species and diversity suggest variation in plants communities may also correspond to variation in carbon use by these fungi. In addition, the consistent effect of plant species on niche width within different clades provides evidence that the rhizosphere environment of the two plants selects for particular traits, rather than promoting the presence of clades with those traits. Overall, this research shows the dynamics of plant and fungal communities are likely to influence carbon use in the rhizosphere and consequently processes related to this phenotype, such as soil nutrient cycling and competition for carbon among soil microbes.
机译:根际微生物组中微生物的碳消耗与植物病原体抑制和增加土壤养分矿化以吸收植物有​​关。然而,大多数微生物群体对影响碳使用特性的因素了解甚少。这项工作表征了根际土壤镰刀菌属真菌之间的系统发育,植物种类和植物多样性与碳利用的关系。从多年生Lespedeza capitata和Andropogon gerardii多年生植物的根际培养了八十四种随机收集的镰刀菌分离株,它们保持长期单培养或在16种植物的多品种培养中生长。对于每个分离物,对一部分RPB2基因座进行测序,以进行系统发育分析,并使用Biolog SF-P2平板测量在95个碳底物上的生长。分离株之间碳使用的相似性随遗传距离的增加而降低,并且分离株之间的生态位宽度(即,所用碳底物的数量)和优选底物上的生长(即,支持最大生长的五个碳底物上的平均生长)存在差异。两个主要的系统发育进化枝。碳的使用也随植物种类和周围植物群落的多样性而变化。在两个主要进化枝中的每一个中,从人参L的根际中分离出来的镰刀菌的生态位宽度都比A. gerardii大。系统发育与碳利用的对应性表明,镰刀菌群落组成的变化可能导致根际碳底物的差异利用,而植物种类和多样性的影响表明植物群落的变化也可能与这些真菌的碳利用变化相对应。 。另外,植物种类对不同进化枝中生态位宽度的一致影响提供了证据,表明两种植物的根际环境选择了特定的性状,而不是促进具有这些性状的进化枝的存在。总体而言,这项研究表明植物和真菌群落的动态可能会影响根际中的碳利用,并因此影响与此表型有关的过程,例如土壤养分循环和土壤微生物之间碳的竞争。

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