生物防治对小麦生理和赤霉病结果的影响是菌株和品种特有的内生细菌

IF 3.3 3区 生物学 Q2 MICROBIOLOGY
B. Whitaker, M. Vaughan, S. McCormick
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引用次数: 1

摘要

镰刀菌头枯病(FHB)是一种在全球范围内具有重要经济意义的小谷物疾病,主要由北美的禾谷镰刀菌引起。最近,微生物生物控制作为可持续的疾病控制剂的重要性越来越高。然而,在农业中实施微生物生物控制的途径将需要了解微生物群如何影响植物的整体性能,并随着固有的寄主抗病性而变化。使用全因子对照温室实验,我们测试了七种细菌内生菌浸种处理如何影响小麦(小麦)病原体感染前的植物生理和FHB疾病进展。细菌内生菌处理强烈影响光合作用的光依赖反应,植物性状的变化调节光能分配和类囊体膜上电化学能量储存的积累。生理反应取决于寄主的多样性。细菌内生菌对小麦感染反应的直接影响较弱,并且取决于寄主品种的内在抗病性。然而,疾病结果是由细菌对植物性状的影响间接介导的,质子动力性状成为宿主品种和其他性状疾病反应的常见预测因子,表明宿主对细菌接种物和禾谷镰刀菌感染的反应可能存在权衡。我们的研究结果为微生物生物控制效力提供了一种替代机制,而不是与宿主内病原体的直接拮抗作用。此外,本文评估的基于叶绿素荧光和吸光度的标记物可能具有作为小麦和其他小颗粒FHB易感性表型工具的翻译潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biocontrol impacts on wheat physiology and Fusarium head blight outcomes are bacterial endophyte strain- and cultivar specific
Fusarium head blight (FHB) is an economically important disease of small grains globally and is primarily caused by Fusarium graminearum in North America. Recently, microbial biocontrols have risen in importance as sustainable agents of disease control. However, the path to implementation of microbial biocontrols in agriculture will require an understanding of how microbiota impact both plant performance overall and vary with inherent host disease resistance. Using a full-factorial, controlled greenhouse experiment, we tested how seven bacterial endophyte seed soak treatments impacted both plant physiology prior to pathogen infection and FHB disease progression in Triticum aestivum (wheat). Bacterial endophyte treatments strongly impacted the light dependent reactions of photosynthesis, with changes in plant traits regulating light energy allocation and the build-up of electrochemical energy storage across the thylakoid membrane. Physiological responses were contingent on host variety. The direct effects of bacterial endophytes on wheat response to infection were weak and dependent on the inherent disease resistance of the host variety. However, disease outcomes were indirectly mediated by bacterial impacts on plant traits, with proton motive force traits emerging as common predictors of disease response across both host varieties and other traits indicating potential trade-offs in host response to bacterial inoculants and F. graminearum infection. Our results provide an alternate mechanism for microbial biocontrol efficacy other than direct antagonism with the pathogen inside the host. Furthermore, the chlorophyll-fluorescence and absorbance-based markers assessed here may have translational potential as a phenotyping tool for FHB susceptibility in wheat and other small grains.
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来源期刊
CiteScore
7.40
自引率
6.80%
发文量
42
审稿时长
4 weeks
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