College of Life Sciences, Nankai University, Tianjin, 300071, People's Republic of China.
Mycorrhiza. 2017 Nov;27(8):791-799. doi: 10.1007/s00572-017-0794-8. Epub 2017 Aug 10.
Grasses can be infected simultaneously by endophytic fungi and arbuscular mycorrhizal (AM) fungi. In this study, we tested the hypothesis that endophyte-associated drought resistance of a native grass was affected by an AM fungus. In a greenhouse experiment, we compared the performance of endophyte-infected (EI) and endophyte-free (EF) Leymus chinensis, a dominant species native to the Inner Mongolia steppe, under altered water and AM fungus availability. The results showed that endophyte infection significantly increased drought resistance of the host grass, but the beneficial effects were reduced by AM fungus inoculation. In the mycorrhizal-non-inoculated (MF) treatment, EI plants accumulated significantly more biomass, had greater proline and total phenolic concentration, and lower malondialdehyde concentration than EF plants. In the mycorrhizal-inoculation (MI) treatment, however, no significant difference occurred in either growth or physiological characters measured between EI and EF plants. AM fungus inoculation enhanced drought resistance of EF plants but had no significant effect on drought resistance of EI plants, thus AM fungus inoculation reduced the difference between EI and EF plants. Our findings highlight the importance of interactions among multiple microorganisms for plant performance under drought stress.
草本植物可以同时被内生真菌和丛枝菌根(AM)真菌感染。在这项研究中,我们检验了一个假设,即内生真菌与抗旱性有关,而这种抗旱性会受到 AM 真菌的影响。在温室实验中,我们比较了内生菌感染(EI)和无内生菌(EF)的赖草的表现,赖草是一种原产于内蒙古草原的优势物种,其水分和 AM 真菌的供应情况发生了变化。结果表明,内生菌感染显著提高了宿主草的抗旱性,但 AM 真菌接种降低了有益效果。在未接种菌根(MF)处理中,EI 植物的生物量积累显著增加,脯氨酸和总酚浓度更高,丙二醛浓度更低。然而,在接种菌根(MI)处理中,EI 和 EF 植物在生长和生理特征方面没有显著差异。AM 真菌接种增强了 EF 植物的抗旱性,但对 EI 植物的抗旱性没有显著影响,因此 AM 真菌接种降低了 EI 和 EF 植物之间的差异。我们的发现强调了在干旱胁迫下,多种微生物相互作用对植物表现的重要性。