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作物种植前的选择塑造了与穿刺短体线虫对大麦根入侵减少相关的线虫附着细菌群落。

Pre-Crop Choice Shapes Nematode-Attached Bacterial Communities Associated With Reduced Pratylenchus penetrans Invasion of Barley Roots.

作者信息

Elhady Ahmed, Kanfra Xorla, Adss Shimaa, Heuer Holger

机构信息

Julius Kühn-Institute (JKI)-Federal Research Centre for Cultivated Plants, Institute for Epidemiology and Pathogen Diagnostics, Braunschweig, Germany.

Darwin21 Desert Research Initiative, Biological and Environmental Science and Engineering Department, King Abdullah University of Science and Technology, Thuwal, Saudi Arabia.

出版信息

Environ Microbiol. 2025 Sep;27(9):e70179. doi: 10.1111/1462-2920.70179.

Abstract

Soil microbiomes play a crucial role in plant-parasitic nematode suppression; however, the influence of plant-soil interactions remains unclear. This study examines plant-soil feedback effects on microbiomes attached to the cuticle of Pratylenchus penetrans in winter barley. We tested whether bacterial drivers of nematode suppression remain conserved across plant hosts or exhibit host specificity. Surface-sterilised P. penetrans were baited in different soils and rhizospheres, and their attached bacterial communities were analysed. Fallow and rhizosphere microbiomes from reduced P. penetrans invasion in barley, and suppression strength varied by plant species. Only the maize and Ethiopian mustard microbiomes inhibited invasion relative to other microbiomes and to surface-sterilised nematodes. By contrast, association with the oat microbiome did not reduce P. penetrans invasion of barley roots. The suppression of P. penetrans invasion relied on the cuticle-associated bacteria, with maize showing a distinct assembly rich in Proteobacteria and Firmicutes. Suppressive cuticle-associated bacteria differed between nematodes exposed to maize-derived and Ethiopian mustard-derived rhizosphere microbiomes from the same soil. Specific bacterial genera associated with reduced invasion included Chryseobacterium, Duganella, Streptomyces, Asticcacaulis, Pseudomonas, and members of Enterobacteriaceae. These results indicate that crop rotation and cover crop choices could steer nematode-associated microbiomes toward communities that prevent root invasion.

摘要

土壤微生物群落在抑制植物寄生线虫方面发挥着关键作用;然而,植物与土壤相互作用的影响仍不清楚。本研究考察了植物-土壤反馈对冬大麦中穿刺短体线虫角质层附着微生物群落的影响。我们测试了抑制线虫的细菌驱动因素在不同植物宿主间是保持不变还是具有宿主特异性。将表面消毒的穿刺短体线虫置于不同的土壤和根际中,分析其附着的细菌群落。休耕和根际微生物群落减少了大麦中穿刺短体线虫的入侵,且抑制强度因植物种类而异。相对于其他微生物群落和表面消毒的线虫,只有玉米和埃塞俄比亚芥的微生物群落抑制了线虫入侵。相比之下,与燕麦微生物群落的关联并未减少穿刺短体线虫对大麦根的入侵。穿刺短体线虫入侵的抑制依赖于与角质层相关的细菌,玉米表现出一个富含变形菌门和厚壁菌门的独特组合。暴露于来自同一土壤的玉米和埃塞俄比亚芥根际微生物群落的线虫,其与角质层相关的抑制性细菌有所不同。与入侵减少相关的特定细菌属包括金黄杆菌属、杜加氏菌属、链霉菌属、鞘杆菌属、假单胞菌属和肠杆菌科成员。这些结果表明,轮作和覆盖作物的选择可以引导与线虫相关的微生物群落朝着防止根系入侵的群落发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/accd/12445950/ef9f72094fe0/EMI-27-e70179-g008.jpg

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