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对耐疫霉属溃疡病树木微生物群特定成员C2P003 - A的基因组特征分析

Genomic Characterization of C2P003-A Specific Member of the Microbiome of Trees Tolerant to Ash Dieback.

作者信息

Becker Regina, Ulrich Kristina, Behrendt Undine, Schneck Volker, Ulrich Andreas

机构信息

Microbial Biogeochemistry, Research Area Landscape Functioning, Leibniz Centre for Agricultural Landscape Research (ZALF), 15374 Müncheberg, Germany.

Institute of Forest Genetics, Johann Heinrich von Thünen Institute, 15377 Waldsieversdorf, Germany.

出版信息

Plants (Basel). 2022 Dec 13;11(24):3487. doi: 10.3390/plants11243487.

Abstract

Some European ash trees show tolerance towards dieback caused by the invasive pathogen . The microbiome of these trees harbours a range of specific bacterial groups. One of these groups belonging to the species was studied in detail by genome analysis and a plant inoculation trial. The strain group was shown to be phylogenetically distinct from clinical isolates by 16S rRNA analysis and phylogenomics. Genome analysis of a representative strain C2P003 resulted in a large number of unique gene sequences in comparison to other well-studied strains of the species. A functional analysis of the genome revealed features associated with the synthesis of exopolysaccharides, protein secretion and biofilm production as well as genes for stress adaptation, suggesting the ability of C2P003 to effectively colonize ash leaves. The inoculation of ash seedlings with C2P003 showed a significant positive effect on the plant health of the seedlings that were exposed to infection. This effect was maintained over a period of three years and was accompanied by a significant shift in the bacterial microbiome composition one year after inoculation. Overall, the results indicate that C2P003 may suppress in or on ash leaves via colonization resistance or indirectly by affecting the microbiome.

摘要

一些欧洲白蜡树对由入侵病原体引起的枯萎病表现出耐受性。这些树的微生物群落包含一系列特定的细菌群。通过基因组分析和植物接种试验,对其中一个属于该物种的菌群进行了详细研究。通过16S rRNA分析和系统基因组学表明,该菌株群在系统发育上与临床分离株不同。与该物种其他经过充分研究的菌株相比,对代表性菌株C2P003的基因组分析产生了大量独特的基因序列。对该基因组的功能分析揭示了与胞外多糖合成、蛋白质分泌和生物膜形成相关的特征以及应激适应基因,这表明C2P003能够有效地定殖于白蜡树叶上。用C2P003接种白蜡树苗对暴露于感染的树苗的植物健康产生了显著的积极影响。这种影响持续了三年,并且在接种一年后伴随着细菌微生物群落组成的显著变化。总体而言,结果表明C2P003可能通过定植抗性或间接影响微生物群落来抑制白蜡树叶上或叶内的(病原体)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db61/9781493/4f175a9362dc/plants-11-03487-g001.jpg

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