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Lipid Remodeling Confers Osmotic Stress Tolerance to Embryogenic Cells during Cryopreservation

机译:脂质重塑在冷冻保存期间将渗透胁迫耐受性赋予胚胎胁迫耐受性

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摘要

Plant species conservation through cryopreservation using plant vitrification solutions (PVS) is based in empiricism and the mechanisms that confer cell integrity are not well understood. Using ESI-MS/MS analysis and quantification, we generated 12 comparative lipidomics datasets for membranes of embryogenic cells (ECs) of Magnolia officinalis during cryogenic treatments. Each step of the complex PVS-based cryoprotocol had a profoundly different impact on membrane lipid composition. Loading treatment (osmoprotection) remodeled the cell membrane by lipid turnover, between increased phosphatidic acid (PA) and phosphatidylglycerol (PG) and decreased phosphatidylcholine (PC) and phosphatidylethanolamine (PE). The PA increase likely serves as an intermediate for adjustments in lipid metabolism to desiccation stress. Following PVS treatment, lipid levels increased, including PC and PE, and this effectively counteracted the potential for massive loss of lipid species when cryopreservation was implemented in the absence of cryoprotection. The present detailed cryobiotechnology findings suggest that the remodeling of membrane lipids and attenuation of lipid degradation are critical for the successful use of PVS. As lipid metabolism and composition varies with species, these new insights provide a framework for technology development for the preservation of other species at increasing risk of extinction.
机译:植物物种通过使用植物玻璃化解决方案(PVS)的冷冻保存保护基本性基于经验主义和赋予细胞完整性的机制并不了解。使用ESI-MS / MS分析和定量,我们在低温治疗期间生成了玉兰型玉米型胚胎胚胎细胞(ECS)膜的12种比较脂质谱系数据集。复杂的PVS的冷冻组合的每个步骤对膜脂质组合物具有深刻不同的影响。加载处理(OsMophotection)通过脂质转换,在增加的磷脂酸(PA)和磷脂酰甘油(PG)之间并降低磷脂酰胆碱(PC)和磷脂酰乙醇胺(PE)之间通过脂质转换来改造细胞膜。 PA增加可能是用于调节脂质代谢的中间体,以脱盐应力。在PVS治疗之后,脂质水平增加,包括PC和PE,并且这种有效地抵消了在没有冷冻保护的情况下在冷冻保存实施时脂质物种大规模损失的可能性。本发明的细节冷冻技术表明,膜脂质的重塑和脂质降解的衰减对于成功使用PVS至关重要。随着脂质代谢和组成随物种而异,这些新见解提供了一种技术开发框架,以保护其他物种在越来越灭绝的风险上。

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