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与 Esca 病葡萄树木质部相关的细菌:功能多样性以及与 Fomitiporia mediterranea 的协同作用,以降解木质部成分。

Bacteria associated with wood tissues of Esca-diseased grapevines: functional diversity and synergy with Fomitiporia mediterranea to degrade wood components.

机构信息

INRAE, UMR SAVE, Bordeaux Science Agro, ISVV, University of Bordeaux, Villenave d'Ornon, 33882, France.

Biology Department, Faculty of Science, Tishreen University, Latakia, Syria.

出版信息

Environ Microbiol. 2021 Oct;23(10):6104-6121. doi: 10.1111/1462-2920.15676. Epub 2021 Jul 31.

Abstract

Fungi are considered to cause grapevine trunk diseases such as esca that result in wood degradation. For instance, the basidiomycete Fomitiporia mediterranea (Fmed) is overabundant in white rot, a key type of wood-necrosis associated with esca. However, many bacteria colonize the grapevine wood too, including the white rot. In this study, we hypothesized that bacteria colonizing grapevine wood interact, possibly synergistically, with Fmed and enhance the fungal ability to degrade wood. We isolated 237 bacterial strains from esca-affected grapevine wood. Most of them belonged to the families Xanthomonadaceae and Pseudomonadaceae. Some bacterial strains that degrade grapevine-wood components such as cellulose and hemicellulose did not inhibit Fmed growth in vitro. We proved that the fungal ability to degrade wood can be strongly influenced by bacteria inhabiting the wood. This was shown with a cellulolytic and xylanolytic strain of the Paenibacillus genus, which displays synergistic interaction with Fmed by enhancing the degradation of wood structures. Genome analysis of this Paenibacillus strain revealed several gene clusters such as those involved in the expression of carbohydrate-active enzymes, xylose utilization and vitamin metabolism. In addition, certain other genetic characteristics of the strain allow it to thrive as an endophyte in grapevine and influence the wood degradation by Fmed. This suggests that there might exist a synergistic interaction between the fungus Fmed and the bacterial strain mentioned above, enhancing grapevine wood degradation. Further step would be to point out its occurrence in mature grapevines to promote esca disease development.

摘要

真菌被认为会引起葡萄树干病害,如导致木质部降解的腐烂病。例如,担子菌 Fomitiporia mediterranea(Fmed)在白腐病中过度生长,白腐病是与腐烂病相关的一种关键木质坏死类型。然而,许多细菌也会在葡萄木质部中定殖,包括白腐菌。在这项研究中,我们假设定殖在葡萄木质部中的细菌会相互作用,可能具有协同作用,增强 Fmed 降解木质部的能力。我们从腐烂病感染的葡萄木质部中分离出 237 株细菌菌株。它们中的大多数属于黄单胞菌科和假单胞菌科。一些能够降解葡萄木质部成分如纤维素和半纤维素的细菌菌株在体外不会抑制 Fmed 的生长。我们证明了定殖在木质部中的细菌可以强烈影响真菌降解木质部的能力。这是通过纤维素酶和木聚糖酶的解淀粉芽孢杆菌属的菌株来证明的,该菌株通过增强木质部结构的降解与 Fmed 表现出协同作用。该解淀粉芽孢杆菌菌株的基因组分析揭示了几个基因簇,如参与碳水化合物活性酶表达、木糖利用和维生素代谢的基因簇。此外,该菌株的某些其他遗传特征使其能够在葡萄藤中作为内生菌茁壮成长,并影响 Fmed 对木质部的降解。这表明 Fmed 真菌和上述细菌菌株之间可能存在协同相互作用,增强了葡萄木质部的降解。下一步将是指出其在成熟葡萄藤中的存在,以促进腐烂病的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d44c/9291561/7ceebacd67c6/EMI-23-6104-g002.jpg

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