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首页> 外文期刊>Microbial Ecology: An International Journal >Host Genotype and Nitrogen Form Shape the Root Microbiome of Pinus radiata
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Host Genotype and Nitrogen Form Shape the Root Microbiome of Pinus radiata

机译:宿主基因型和氮形式造成松弛radiata的根微生物组

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A central challenge in community ecology is understanding the role that phenotypic variation among genotypes plays in structuring host-associated communities. While recent studies have investigated the relationship between plant genotype and the composition of soil microbial communities, the effect of genotype-by-environment interactions on the plant microbiome remains unclear. In this study, we assessed the influence of tree genetics (G), nitrogen (N) form and genotype-by-environment interaction (G x N) on the composition of the root microbiome. Rhizosphere communities (bacteria and fungi) and root-associated fungi (including ectomycorrhizal and saprotrophic guilds) were characterised in two genotypes of Pinus radiata with contrasting physiological responses to exogenous organic or inorganic N supply. Genotype-specific responses to N form influenced the composition of the root microbiome. Specifically, (1) diversity and composition of rhizosphere bacterial and root-associated fungal communities differed between genotypes that had distinct responses to N form, (2) shifts in the relative abundance of individual taxa were driven by the main effects of N form or host genotype and (3) the root microbiome of the P. radiata genotype with the most divergent growth responses to organic and inorganic N was most sensitive to differences in N form. Our results show that intraspecific variation in tree response to N form has significant consequences for the root microbiome of P. radiata, demonstrating the importance of genotype-by-environment interactions in shaping host-associated communities.
机译:社区生态中的中枢挑战是理解基因型中的表型变异在结构化宿主相关社区中的作用。虽然最近的研究已经调查了植物基因型与土壤微生物社区的组成之间的关系,但是植物微生物组对基因型的逐环相互作用的影响尚不清楚。在这项研究中,我们评估了树遗传学(G),氮(N)形式和基因型 - 逐环族相互作用(G X N)对根微生物组的组成的影响。根际社区(细菌和真菌)和根联的真菌(包括外炎和嗜血癖和嗜血卵细胞)的特征在于Pinus Radiata的两种基因型,具有对截味的生理反应对外源性有机或无机N供应。对N形式的基因型特异性反应影响了根微生物组的组成。具体地,(1)根际细菌和根系相关真菌社区的多样性和组成在具有对N形式的基因型之间的基因型之间不同,(2)在单个类别的主要效果或宿主的主要效果驱动相对丰富的相对丰富的转变基因型和(3)对有机和无机N具有最分散的生长响应的P.Radiata基因型的根微生物组对N形式的差异最敏感。我们的研究结果表明,对N形式的树木反应的内部变化对P. Radiata的根微生物组具有显着的后果,展示了基因型逐个环境相互作用在塑造宿主相关社区中的重要性。

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