首页> 美国卫生研究院文献>BioMed Research International >Changes in Mannitol Content, Regulation of Genes Involved in Mannitol Metabolism, and the Protective Effect of Mannitol on Volvariella volvacea at Low Temperature
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Changes in Mannitol Content, Regulation of Genes Involved in Mannitol Metabolism, and the Protective Effect of Mannitol on Volvariella volvacea at Low Temperature

机译:甘露醇含量的变化,甘露醇代谢相关基因的调控以及甘露醇在低温下对草菇的保护作用

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摘要

The mechanism of autolysis of Volvariella volvacea (V. volvacea) at low temperature has not been fully explained. As mannitol is among the most important osmotic adjustment substances in fungal resistance, this study sampled mycelia of strains V23 and VH3 treated at 0°C for 0, 2, 4, 8, and 10 h to analyze changes in intracellular mannitol content by high-performance anion chromatography with pulsed amperometric detection (HAPEC-PAD). Reverse transcription quantitative PCR (RT-qPCR) analysis was applied to assess differences in the transcript levels of genes associated with mannitol metabolism under low-temperature stress. A mannitol solution was added to cultures of V. volvacea fruiting bodies, and effects on the hypothermic resistance of these organs were explored by evaluating variations in sensory properties during cryogenic storage after harvest. The results suggested that in the initial stage of low-temperature treatment, intracellular mannitol was largely catabolized as an energy storage material and the expression of genes encoding enzymes involved in synthetic reactions was inhibited. However, low-temperature resistance was induced with further treatment, with activation of mannitol synthesis and inhibition of degradation; the cells accumulated mannitol, leading to osmoregulation. No significant elongation of V. volvacea fruiting bodies during storage at 4°C was observed, and these organs tended to shrink and collapse. The sensory quality of mannitol-treated fruiting bodies was much better than that of control fruiting bodies. Application of a mannitol solution at the cultivation stage of V. volvacea somewhat improved the low-temperature resistance of the fruiting bodies, verifying the correlation between mannitol and resistance to this stress in V. volvacea. The results of this study lay a foundation for a deeper understanding of the autolysis mechanism of V. volvacea, providing technical support for increasing the cryopreservation time of this species and extending the postharvest shelf life of its fruiting bodies. In addition, the mechanism underlying the low-temperature tolerance of the VH3 strain should be further explained at the molecular level.
机译:在低温下自发Volvolvella volvacea(V. volvacea)的自解机理尚未得到充分解释。由于甘露醇是抗真菌性最重要的渗透调节物质之一,因此本研究对023、0、2、4、8和10μh处理的V23和VH3菌株的菌丝体进行了采样,以分析高浓度甘露醇对细胞内甘露醇含量的影响。带有脉冲安培检测的高性能阴离子色谱(HAPEC-PAD)。应用逆转录定量PCR(RT-qPCR)分析来评估低温胁迫下与甘露醇代谢相关的基因的转录水平差异。将甘露醇溶液添加到旋律菌子实体的培养物中,并通过评估收获后低温保存期间感官特性的变化来探索对这些器官的耐低温性的影响。结果表明,在低温处理的初始阶段,细胞内甘露醇被大量分解代谢为一种能量储存材料,并且抑制了参与合成反应的编码酶的基因的表达。然而,通过进一步处理诱导了抗低温性,激活了甘露醇的合成并抑制了降解。细胞会积聚甘露醇,导致渗透调节。在4°C的贮藏过程中,没有观察到马齿形葡萄菌子实体的明显伸长,并且这些器官倾向于收缩和塌陷。甘露醇处理的子实体的感官质量比对照子实体的感官质量好得多。在菜豆假单胞菌的培养阶段施用甘露醇溶液在一定程度上改善了子实体的低温抗性,证实了甘露醇与菜豆假单胞菌对这种胁迫的抗性之间的相关性。这项研究的结果为加深对稻瘟病菌自溶机理的深入了解奠定了基础,为延长该物种的冷冻保存时间并延长其子实体的收获后货架寿命提供了技术支持。另外,应该在分子水平上进一步解释VH3菌株的低温耐受性的潜在机理。

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