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Effect of anti-fungal compound phytosphingosine in wheat root exudates on the rhizosphere soil microbial community of watermelon

机译:抗真菌化合物植物磷酸在小麦根茎渗出物对西瓜根际土壤微生物群落中的影响

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Background and aims The relationship between wheat root exudates and watermelon rhizosphere microbial communities in wheat/watermelon cropping system is well documented now, however, less is known about the activity of allelochemicals in wheat root exudates against watermelonFusarium oxysporumf. sp.niveum(FON), and how it may influence belowground plant-microbe interactions for disease control. Methods TLC board and UPLC-Q-TOF-MS techniques were used to isolate and analyze the composition of wheat root exudates, and responses of watermelon rhizosphere community against phytosphingosine were analyzed by high-throughput sequencing and quantitative PCR (qPCR). Results Total of 15 inhibitory compounds were identified in wheat root exudates and most of them were long chain alcohols. Due to highest mass spectral fragment ion matching with already known compounds, we selected phytosphingosine as a model component to study the influence of allelochemical compounds of wheat root exudates onFONand overall rhizosphere microbial community composition of watermelon. Treatment with phytosphingosine increased the diversity of total fungi and bacteria, and altered the compositions of their communities particularly at lower concentration. The abundances and relative abundances of certain potentially plant beneficial bacteria and pathogen-antagonistic fungi were stimulated at lower concentration, while potentially pathogenic fungi includingFONwere inhibited at different degree. Conclusions Phytosphingosine inhibited theFONdirectly, regulated the microbial community structure in watermelon rhizosphere and formed an environment not conducive to pathogen invasion, eventually alleviating the incidence of watermelon Fusarium wilt in wheat/watermelon companion cropping system.
机译:背景技术目的,小麦根渗出物与西瓜流离星际微生物群落的关系现在已经良好地记载了小麦/西瓜种植体系的内容较小,关于小麦根茎渗出物的异丙醇中的等化化学活性的较低人物。 SP.Niveum(FON),以及如何影响低于地下植物微生物相互作用以进行疾病控制。方法采用TLC板和UPLC-Q-TOF-MS技术分离和分析小麦根茎的组成,并通过高通量测序和定量PCR(QPCR)分析了对肺鞘磷酸氨基磷酸磷苷的响应。结果在小麦根部渗出物中鉴定了15种抑制性化合物,其中大部分是长链醇。由于具有已知化合物的最高质谱片段离子匹配,我们选择植物磷酸作为模型组分,以研究小麦根部的等级化学化合物的影响渗出物OnfonAnd整体根际微生物群落组成的西瓜。用植物鞘磷酸磷酸盐治疗增加了总体真菌和细菌的多样性,并特别地改变了它们的群体的组合物,特别是较低的浓度。在较低浓度下刺激某些潜在的植物有益细菌和病原体 - 拮抗真菌的丰富和相对丰度,而潜在的致病性真菌在不同程度上抑制。结论植物磷苷抑制了西瓜根际的微生物群落,形成了不利于病原体侵袭的环境,最终缓解了小麦/西瓜伴侣种植系统中西瓜镰刀菌枯萎病的发生率。

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