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Effects of space flight on DNA mutation and secondary metabolites of licorice (Glycyrrhiza uralensis Fisch.)

机译:航天对甘草DNA突变和次生代谢产物的影响

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摘要

Licorice ( Fisch.) seeds were flown on a recoverable satellite for 18 days(the average radiation dose in the flight recovery module was 0.102 mGy/d, the distance from flight apogee to earth was 350 km, gravity 10 ). After returning to earth, the seeds were germinated and grown to maturity. The parallel ground-based seeds were also planted under the same conditions. The leaves of licorice were used for inter-simple sequence repeat (ISSR) analysis and the two main secondary metabolites in one-year-old roots were analyzed by high performance liquid chromatography (HPLC). Among 22 random primers used in this experiment, 6 primers generated different DNA band types. Analysis of HPLC showed that the content of glycyrrhizic acid (GA) and liquiritin (LQ) in the roots from seeds flown in space was respectively 2.19, 1.18 times higher than that of the control group. The results demonstrated that the extraterrestrial environment induced mutagenic effects on licorice and affected its secondary metabolites. These changes indicated that extraterrestrial orbit is possible means of breeding of licorice so as to preserve this endangered medicinal plant.
机译:甘草种子在可恢复卫星上飞行18天(飞行恢复模块中的平均辐射剂量为0.102 mGy / d,飞行顶点到地球的距离为350 km,重力10)。回到地球后,种子发芽并成熟。在相同条件下也种植了平行的地面种子。甘草叶用于简单序列间重复(ISSR)分析,并通过高效液相色谱(HPLC)分析一岁根中的两个主要次生代谢产物。在该实验中使用的22种随机引物中,有6种引物产生了不同的DNA条带类型。高效液相色谱分析表明,在太空中飞行的种子的根中甘草酸(GA)和甘草酸(LQ)的含量分别为对照组的2.19倍和1.18倍。结果表明,地外环境诱导了对甘草的诱变作用并影响了其次生代谢产物。这些变化表明,地外轨道可能是繁殖甘草从而保护这种濒临灭绝的药用植物的可能手段。

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