Inoculation and tracking of beneficial microbes reveal they can establish in field-grown potato roots and decrease blemish diseases

IF 5.1 1区 农林科学 Q1 SOIL SCIENCE Biology and Fertility of Soils Pub Date : 2024-04-24 DOI:10.1007/s00374-024-01822-z
Geoffrey Darbon, Stéphane Declerck, Gaétan Riot, Marcé Doubell, Brice Dupuis
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Abstract

In a three-year field study, we inoculated two potato varieties with a selection of four beneficial microbial strains (i.e. Rhizophagus irregularis MUCL41833, Trichoderma asperelloides A, Pseudomonas brassicacearum 3Re2-7 and Paraburkholderia phytofirmans PsJN), alone or in combination. Plants were grown under rainfed or irrigated conditions, and potato yield and development of several diseases were evaluated. The microbial inoculants were traced in the root system at different stages of crop development via molecular markers. Whatever the water supply, the inoculants had no effect on yield. Conversely, some of the inoculants were able to lower the incidence and/or severity of several blemish diseases, namely common scab-associated symptoms (CSAS) and silver scurf/black dot-associated symptoms (SSAS). Microbial consortia were more efficient in decreasing symptoms compared to single strain inoculations. The best control was obtained with the combination of R. irregularis and P. brassicacearum, which reduced the incidence of CSAS by 22% and severity of SSAS by 21%. Root tracking revealed that P. brassicacearum and P. phytofirmans PsJN were able to establish in the root system of the potato, while only P. brassicacearum was detected from emergence until flowering of the plants.

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对有益微生物的接种和跟踪表明,它们能在田间种植的马铃薯根系中生长并减少疵病
在一项为期三年的田间研究中,我们给两个马铃薯品种单独或混合接种了精选的四种有益微生物菌株(即根瘤菌 MUCL41833、毛霉菌 A、铜绿假单胞菌 3Re2-7 和嗜茎假单胞菌 Paraburkholderia phytofirmans PsJN)。植物在雨水灌溉或灌溉条件下生长,并对马铃薯产量和几种病害的发展情况进行了评估。在作物生长的不同阶段,通过分子标记对根系中的微生物接种剂进行了追踪。无论供水情况如何,接种物对产量都没有影响。相反,一些接种剂能够降低几种疵病的发病率和/或严重程度,即常见疮痂相关症状(CSAS)和银屑病/黑点相关症状(SSAS)。与单一菌株接种相比,微生物群在减少症状方面更有效。R. irregularis 和 P. brassicacearum 的组合控制效果最好,可将 CSAS 的发病率降低 22%,将 SSAS 的严重程度降低 21%。根系追踪显示,黄铜锈病菌和phytofirmans PsJN能够在马铃薯根系中建立,而只有黄铜锈病菌从植株萌发到开花期间被检测到。
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来源期刊
Biology and Fertility of Soils
Biology and Fertility of Soils 农林科学-土壤科学
CiteScore
11.80
自引率
10.80%
发文量
62
审稿时长
2.2 months
期刊介绍: Biology and Fertility of Soils publishes in English original papers, reviews and short communications on all fundamental and applied aspects of biology – microflora and microfauna - and fertility of soils. It offers a forum for research aimed at broadening the understanding of biological functions, processes and interactions in soils, particularly concerning the increasing demands of agriculture, deforestation and industrialization. The journal includes articles on techniques and methods that evaluate processes, biogeochemical interactions and ecological stresses, and sometimes presents special issues on relevant topics.
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