Department of Plant Production and Genetics, Faculty of Agriculture, Malayer University, Malayer, Iran.
Department of Landscape Engineering, Faculty of Agriculture, Malayer University, Malayer, Iran.
Curr Microbiol. 2023 May 24;80(7):224. doi: 10.1007/s00284-023-03335-8.
The exploitation of symbiotic interactions between fungi and plants, coupled with the application of osmoprotectants such as trehalose (Tre), presents a promising strategy for mitigating environmental stress. To determine the mechanism of Serendipita indica and Tre-mediated cold stress tolerance, a comparative experiment was designed to study the impact of S. indica, Tre and their combination on tomato plants grown under cold stress. The results showed that cold stress significantly decreased biomass, relative water content, photosynthetic pigments and elements concomitantly with increasing antioxidant activities, malondialdehyde (MDA), electrolyte leakage, hydrogen peroxide and proline content. Meanwhile, S. indica and Tre treatments promoted biomass and enhanced carbohydrate, protein, proline, potassium, phosphorous, antioxidant enzymes and photosynthetic pigments content under cold stress. Furthermore, single or dual application of endophyte and Tre mitigated physiological disorders induced by cold stress and increased the integrity of cell membranes by decreasing hydrogen peroxide, MDA, and electrolyte leakage (EL). Our findings suggest that S. indica and Tre combination could significantly promote cold stress tolerance compared with single treatment. This study is novel in showing the cold adaptation of tomato plants by combination use of S. indica and Tre, which can be a promising strategy for improving cold tolerance. The underlying molecular mechanisms of sugar-fungus interaction must be further investigated.
利用真菌和植物之间的共生相互作用,并应用海藻糖(Tre)等渗透保护剂,是减轻环境压力的一种有前途的策略。为了确定 Serendipita indica 和 Tre 介导的冷胁迫耐受性的机制,设计了一个比较实验来研究 S. indica、Tre 及其组合对冷胁迫下生长的番茄植物的影响。结果表明,冷胁迫显著降低了生物量、相对水含量、光合色素和元素含量,同时增加了抗氧化活性、丙二醛(MDA)、电解质泄漏、过氧化氢和脯氨酸含量。同时,S. indica 和 Tre 处理在冷胁迫下促进了生物量的增加,并增强了碳水化合物、蛋白质、脯氨酸、钾、磷、抗氧化酶和光合色素的含量。此外,内生菌和 Tre 的单一或双重应用减轻了冷胁迫引起的生理障碍,通过降低过氧化氢、MDA 和电解质泄漏(EL)来提高细胞膜的完整性。我们的研究结果表明,与单一处理相比,S. indica 和 Tre 的组合可以显著促进番茄的冷胁迫耐受性。本研究的新颖之处在于通过使用 S. indica 和 Tre 的组合来展示番茄植物的冷适应能力,这可能是提高耐寒性的一种有前途的策略。必须进一步研究糖-真菌相互作用的潜在分子机制。