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Analysis of changes in the Panax notoginseng glycerolipidome in response to long-term chilling and heat

机译:三七总皂苷脂组响应长期冷热的变化分析

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摘要

Long-term moderately high or low temperatures can damage economically important plants. In the present study, we treated , an important traditional Chinese medicine, with temperatures of 10, 20, and 30 °C for 30 days. We then investigated glycerolipidome responses to these moderate temperature stresses using an ESI/MS-MS-based lipidomic approach. Both long-term chilling (LTC, 10 °C) and long-term heat (LTH, 30 °C) decreased photo pigment levels and photosynthetic rate. LTH-induced degradation of photo pigments and glycerolipids may further cause the decline of photosynthesis and thereafter the senescence of leaves. LTC-induced photosynthesis decline is attributed to the degradation of photosynthetic pigments rather than the degradation of chloroplastidic lipids. has an especially high level of lysophosphatidylglycerol, which may indicate that either phospholipase A acts in a special manner on phosphatidylglycerol (PG), or that phospholipase B acts. The ratio of sulfoquinovosyldiacylglycerol (SQDG) to PG increased significantly after LTC treatment, which may indicate that SQDG partially substitutes for PG. After LTC treatment, the increase in the degree of unsaturation of plastidic lipids was less than that of extraplastidic lipids, and the increase in the unsaturation of PG was the largest among the ten lipid classes tested. These results indicate that increasing the level of unsaturated PG may play a special role in maintaining the function and stability of photosystems after LTC treatment.
机译:长期适度的高温或低温会损害重要的经济植物。在本研究中,我们用10、20和30°C的温度治疗了一种重要的中药30天。然后,我们使用基于ESI / MS-MS的脂质组学方法研究了甘油脂对这些中等温度胁迫的反应。长期冷却(LTC,10°C)和长期加热(LTH,30°C)都会降低光色素含量和光合速率。 LTH诱导的光敏颜料和甘油脂的降解可能进一步导致光合作用下降,进而导致叶片衰老。 LTC诱导的光合作用下降归因于光合色素的降解,而不是叶绿体脂质的降解。具有特别高水平的溶血磷脂酰甘油,这可能表明磷脂酶A以特殊方式作用于磷脂酰甘油(PG),或者磷脂酶B起作用。 LTC处理后,磺基喹喔基二酰基甘油(SQDG)与PG的比率显着增加,这可能表明SQDG部分替代了PG。 LTC处理后,质体脂质的不饱和度增加量小于质体脂质的增加,PG的不饱和度增加量是测试的十个脂质类别中最大的。这些结果表明,提高LTC处理后不饱和PG的含量可能对维持光系统的功能和稳定性起特殊作用。

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