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Rhizosphere Microbiomes from Root Knot Nematode Non-infested Plants Suppress Nematode Infection

机译:根结线虫未受侵染的植物的根际微生物群抑制线虫感染

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摘要

Root knot nematodes (RKN, Meloidogyne spp.) are serious pathogens of numerous crops worldwide. Understanding the roles plant rhizosphere soil microbiome play during RKN infection is very important. The current study aims at investigating the impacts of soil microbiome on the activity of RKN. In this study, the 16S rRNA genes of the bacterial communities from nematode-infested and non-infested rhizosphere soils from four different plants were sequenced on the Illumina Hi-Seq platform. The soil microbiome effects on RKN infection were tested in a greenhouse assay. The non-infested soils had more microbial diversity than the infested soils from all plant rhizospheres, and both soil types had exclusive microbial communities. The inoculation of the microbiomes from eggplant and cucumber non-infested soils to tomato plants significantly alleviated the RKN infection, while the microbiome from infested soil showed increased the RKN infection. Furthermore, bacteria Pseudomonas sp. and Bacillus sp. were screened out from non-infested eggplant soil and exhibited biocontrol activity to RKN on tomato. Our findings suggest that microbes may regulate RKN infection in plants and are involved in biocontrol of RKN.Electronic supplementary materialThe online version of this article (10.1007/s00248-019-01319-5) contains supplementary material, which is available to authorized users.
机译:根结线虫(RKN,Meloidogyne spp。)是全世界许多农作物的严重病原体。了解植物根际土壤微生物组在RKN感染过程中的作用非常重要。当前的研究旨在调查土壤微生物组对RKN活性的影响。在这项研究中,在Illumina Hi-Seq平台上对来自四种不同植物的线虫感染和未感染的根际土壤细菌群落的16S rRNA基因进行了测序。在温室测定中测试了土壤微生物组对RKN感染的影响。未受侵染的土壤比来自所有植物根际的受侵染的土壤具有更多的微生物多样性,并且两种土壤类型均具有唯一的微生物群落。从茄子和黄瓜未侵染的土壤微生物菌群接种到番茄植株可显着减轻RKN感染,而侵染土壤的微生物组显示RKN感染增加。此外,细菌为假单胞菌。和芽孢杆菌从未侵染的茄子土壤中筛选出番茄,并对其在番茄上对RKN表现出生物防治活性。我们的发现表明,微生物可能调节植物中RKN的感染,并参与RKN的生物防治。电子补充材料本文的在线版本(10.1007 / s00248-019-01319-5)包含补充材料,授权用户可以使用。

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