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葡萄树衰退过程中,其根系和根际的微生物群落失调与活跃的代谢功能相关。

Microbial dysbiosis in roots and rhizosphere of grapevines experiencing decline is associated with active metabolic functions.

作者信息

Darriaut Romain, Marzari Tania, Lailheugue Vincent, Tran Joseph, Martins Guilherme, Marguerit Elisa, Masneuf-Pomarède Isabelle, Lauvergeat Virginie

机构信息

EGFV, Univ. Bordeaux, Bordeaux Sciences Agro, INRAE, ISVV, Villenave d'Ornon, France.

Université de Bordeaux, INRAE, Bordeaux INP, Bordeaux Sciences Agro, UMR Œnologie 1366, ISVV, Villenave d'Ornon, France.

出版信息

Front Plant Sci. 2024 Apr 2;15:1358213. doi: 10.3389/fpls.2024.1358213. eCollection 2024.

Abstract

When grapevine decline, characterized by a premature decrease in vigor and yield and sometimes plant death, cannot be explained by pathological or physiological diseases, one may inquire whether the microbiological status of the soil is responsible. Previous studies have shown that the composition and structure of bacterial and fungal microbial communities in inter-row soil are affected in areas displaying vine decline, compared to areas with non-declining vines within the same plot. A more comprehensive analysis was conducted in one such plot. Although soil chemical parameters could not directly explain these differences, the declining vines presented lower vigor, yield, berry quality, and petiole mineral content than those in non-declining vines. The bacterial and fungal microbiome of the root endosphere, rhizosphere, and different horizons of the bulk soil were explored through enzymatic, metabolic diversity, and metabarcoding analysis in both areas. Despite the lower microbial diversity and richness in symptomatic roots and soil, higher microbial activity and enrichment of potentially both beneficial bacteria and pathogenic fungi were found in the declining area. Path modeling analysis linked the root microbial activity to berry quality, suggesting a determinant role of root microbiome in the berry mineral content. Furthermore, certain fungal and bacterial taxa were correlated with predicted metabolic pathways and metabolic processes assessed with Eco-Plates. These results unexpectedly revealed active microbial profiles in the belowground compartments associated with stressed vines, highlighting the interest of exploring the functional microbiota of plants, and more specifically roots and rhizosphere, under stressed conditions.

摘要

当葡萄树衰退(表现为活力和产量过早下降,有时植株死亡)无法用病理或生理疾病来解释时,人们可能会探究土壤的微生物状况是否是原因所在。先前的研究表明,与同一块地中未衰退葡萄树所在区域相比,出现葡萄树衰退的区域,行间土壤中细菌和真菌微生物群落的组成和结构受到了影响。在这样一个地块中进行了更全面的分析。尽管土壤化学参数无法直接解释这些差异,但与未衰退的葡萄树相比,衰退的葡萄树活力、产量、浆果品质和叶柄矿物质含量更低。通过对两个区域根内圈、根际和不同土层的细菌和真菌微生物组进行酶活性、代谢多样性和宏条形码分析。尽管有症状的根系和土壤中的微生物多样性和丰富度较低,但在衰退区域发现了更高的微生物活性以及潜在有益细菌和致病真菌的富集。通径模型分析将根系微生物活性与浆果品质联系起来,表明根际微生物群在浆果矿物质含量中起决定性作用。此外,某些真菌和细菌分类群与用Eco-Plates评估的预测代谢途径和代谢过程相关。这些结果意外地揭示了与受胁迫葡萄树相关的地下部分的活跃微生物特征,凸显了在胁迫条件下探索植物,更具体地说是根系和根际的功能微生物群的意义。

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