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Successive plant growth amplifies genotype-specific assembly of the tomato rhizosphere microbiome

机译:连续植物生长放大番茄根际微生物组的基因型特异性组装

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摘要

Plant microbiome assembly is a spatial and dynamic process driven by root exudates and influenced by soil type, plant developmental stage and genotype. Genotype-dependent microbiome assembly has been reported for different crop plant species. Despite the effect of plant genetics on microbiome assembly, the magnitude of host control over its root microbiome is relatively small or, for many plant species, still largely unknown. Here we cultivated modern and wild tomato genotypes for four successive cycles and showed that divergence in microbiome assembly between the two genotypes was significantly amplified over time. Also, we show that the composition of the rhizosphere microbiome of modern and wild plants became more dissimilar from the initial bulk soil and from each other. Co-occurrence analyses further identified amplicon sequence variants (ASVs) associated with early and late successions of the tomato rhizosphere microbiome. Among the members of the Late Successional Rhizosphere microbiome, we observed an enrichment of ASVs belonging to the genera Acidovorax, Massilia and Rhizobium in the wild tomato rhizosphere, whereas the modern tomato rhizosphere was enriched for an ASV belonging to the genus Pseudomonas. Collectively, our approach allowed us to study the dynamics of rhizosphere microbiome over successional cultivation as well as to categorize rhizobacterial taxa for their ability to form transient or long-term associations with their host plants.
机译:植物微生物组件是由根渗出物驱动和受土壤类型,植物发育阶段和基因型的影响的空间和动态过程。据报道了基因型依赖性微生物组件用于不同的作物植物物种。尽管植物遗传学对微生物组组件的影响,但是对其根部微生物组的宿主控制的大小相对较小或,对于许多植物物种仍然很大程度上。在这里,我们为四个连续循环培养了现代和野生番茄基因型,并显示出两种基因型之间微生物组组件的分歧随时间显着扩增。此外,我们表明,现代和野生植物的根际微生物组成的组成与初始散装土壤和彼此变得更加不相似。共同发生分析与番茄根际微生物组的早期和晚期连续相关的进一步鉴定的扩增子序列变体(ASV)。在连续后期根际微生物组中的成员中,我们观察到野生番茄根际属于野生番茄根际,塞米利亚和根茎属于属酸甲的富集,而现代番茄根际富含属于假鼠属的ASV。统称,我们的方法使我们能够研究流离际微生物组的动态,以对连续种植进行分类,以使流离虫分类纳能力与其宿主植物形成瞬态或长期关联的能力。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|144825.1-144825.10|共10页
  • 作者单位

    Department of Microbial Ecology Netherlands Institute of Ecology Wageningen the Netherlands Institute of Biology Leiden University Leiden the Netherlands;

    Department of Microbial Ecology Netherlands Institute of Ecology Wageningen the Netherlands;

    Department of Microbial Ecology Netherlands Institute of Ecology Wageningen the Netherlands Department of Plant Science The Pennsylvania State University University Park PA USA Huck Institutes of the Life Sciences. The Pennsylvania State University University Park PA USA;

    Department of Microbial Ecology Netherlands Institute of Ecology Wageningen the Netherlands Bioinformatics Group Wageningen University & Research Wageningen the Netherlands;

    Department of Microbial Ecology Netherlands Institute of Ecology Wageningen the Netherlands Institute of Biology Leiden University Leiden the Netherlands;

    Department of Microbial Ecology Netherlands Institute of Ecology Wageningen the Netherlands Institute of Biology Leiden University Leiden the Netherlands;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rhizosphere microbiome; Host-mediated selection; Host genetics; Ecological succession;

    机译:根际微生物组;宿主介导的选择;宿主遗传学;生态继承;

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