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砧木-接穗组合影响与葡萄根系相关的微生物群落的多样性和组成。

Rootstock-scion combination contributes to shape diversity and composition of microbial communities associated with grapevine root system.

机构信息

Biological and Environmental Sciences and Engineering Division (BESE), King Abdullah University of Science and Technology (KAUST), Thuwal, Kingdom of Saudi Arabia.

Marchesi Frescobaldi Società Agricola s.p.a. Fattoria Poggio a Remole, Sieci, Italy.

出版信息

Environ Microbiol. 2022 Aug;24(8):3791-3808. doi: 10.1111/1462-2920.16042. Epub 2022 May 17.

Abstract

To alleviate biotic and abiotic stresses and enhance fruit yield, many crops are cultivated in the form of grafted plants, in which the shoot (scion) and root (rootstock) systems of different species are joined together. Because (i) the plant species determines the microbial recruitment from the soil to the root and (ii) both scion and rootstock impact the physiology, morphology and biochemistry of the grafted plant, it can be expected that their different combinations should affect the recruitment and assembly of plant microbiome. To test our hypothesis, we investigated at a field scale the bacterial and fungal communities associated with the root system of seven grapevine rootstock-scion combinations cultivated across 10 different vineyards. Following the soil type, which resulted in the main determinant of the grapevine root microbial community diversity, the rootstock-scion combination resulted more important than the two components taken alone. Notably, the microbiome differences among the rootstock-scion combinations were mainly dictated by the changes in the relative abundance of microbiome members rather than by their presence/absence. These results reveal that the microbiome of grafted grapevine root systems is largely influenced by the combination of rootstock and scion, which affects the microbial diversity uptaken from soil.

摘要

为了缓解生物和非生物胁迫并提高果实产量,许多作物被培育成嫁接植物,其中不同物种的茎(接穗)和根(砧木)系统连接在一起。由于(i)植物物种决定了从土壤到根的微生物招募,以及(ii)接穗和砧木都影响嫁接植物的生理学、形态学和生物化学,因此可以预期它们的不同组合应该会影响植物微生物组的招募和组装。为了验证我们的假设,我们在田间尺度上调查了与 10 个不同葡萄园种植的 7 个葡萄砧木-接穗组合的根系相关的细菌和真菌群落。继土壤类型之后,它成为葡萄根微生物群落多样性的主要决定因素,砧木-接穗组合比单独的两个组成部分更重要。值得注意的是,砧木-接穗组合之间的微生物组差异主要由微生物组成员的相对丰度变化决定,而不是由它们的存在/不存在决定。这些结果表明,嫁接葡萄根系的微生物组在很大程度上受到砧木和接穗组合的影响,这影响了从土壤中吸收的微生物多样性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/feb7/9544687/d75c733b80ec/EMI-24-3791-g004.jpg

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