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小麦进化过程中根微生物组的变化。

Changes in root microbiome during wheat evolution.

机构信息

Department of Plant Breeding and Biotechnology, Faculty of Agriculture, University of Tabriz, Tabriz, Iran.

Center of Excellence in Cereal Molecular Breeding, University of Tabriz, Tabriz, Iran.

出版信息

BMC Microbiol. 2022 Feb 26;22(1):64. doi: 10.1186/s12866-022-02467-4.

Abstract

BACKGROUND

Although coevolutionary signatures of host-microbe interactions are considered to engineer the healthy microbiome of humans, little is known about the changes in root-microbiome during plant evolution. To understand how the composition of the wheat and its ancestral species microbiome have changed over the evolutionary processes, we performed a 16S rRNA metagenomic analysis on rhizobacterial communities associated with a phylogenetic framework of four Triticum species T. urartu, T. turgidum, T. durum, and T. aestivum along with their ancestral species Aegilops speltoides, and Ae. tauschii during vegetative and reproductive stages.

RESULTS

In this study, we illustrated that the genome contents of wild species Aegilops speltoides and Ae. tauschii can be significant factors determining the composition of root-associated bacterial communities in domesticated bread wheat. Although it was found that domestication and modern breeding practices might have had a significant impact on microbiome-plant interactions especially at the reproductive stage, we observed an extensive and selective control by wheat genotypes on associated rhizobacterial communities at the same time. Our data also showed a strong genotypic variation within species of T. aestivum and Ae. tauschii, suggesting potential breeding targets for plants surveyed.

CONCLUSIONS

This study performed with different genotypes of Triticum and Aegilops species is the first study showing that the genome contents of Ae. speltoides and Ae. tauschii along with domestication-related changes can be significant factors determining the composition of root-associated bacterial communities in bread wheat. It is also indirect evidence that shows a very extensive range of host traits and genes are probably involved in host-microbe interactions. Therefore, understanding the wheat root-associated microbiome needs to take into consideration of its polygenetic mosaic nature.

摘要

背景

尽管宿主-微生物相互作用的协同进化特征被认为是塑造人类健康微生物组的原因,但对于植物进化过程中根际微生物组的变化知之甚少。为了了解小麦及其祖先物种的微生物组在进化过程中的组成如何发生变化,我们对与四个小麦物种(Triticum urartu、T. turgidum、T. durum 和 T. aestivum)以及它们的祖先物种(Aegilops speltoides 和 Ae. tauschii)的根系微生物群落进行了 16S rRNA 宏基因组分析,这些微生物群落与一个系统发育框架相关联,该框架包括了营养和生殖阶段。

结果

在这项研究中,我们说明了野生种 Aegilops speltoides 和 Ae. tauschii 的基因组含量可能是决定驯化面包小麦根际细菌群落组成的重要因素。虽然发现驯化和现代育种实践可能对微生物-植物相互作用产生重大影响,特别是在生殖阶段,但我们同时观察到小麦基因型对相关根际细菌群落的广泛而选择性的控制。我们的数据还显示了 T. aestivum 和 Ae. tauschii 种内的强烈基因型变异,这表明了所调查植物的潜在育种目标。

结论

这项在不同基因型的小麦和 Aegilops 物种上进行的研究首次表明,Ae. speltoides 和 Ae. tauschii 的基因组含量以及与驯化相关的变化可能是决定面包小麦根际细菌群落组成的重要因素。这也间接表明,宿主的许多特征和基因可能参与了宿主-微生物的相互作用。因此,理解小麦的根际微生物组需要考虑其多基因镶嵌的性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd40/8881823/7fa0d6d681d2/12866_2022_2467_Fig1_HTML.jpg

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