首页> 美国卫生研究院文献>Tropical Life Sciences Research >Ascorbate Peroxidase Activity of Aranda Broga Blue Orchid Protocorm-like Bodies (PLBs) In Response to PVS2 Cryopreservation Method
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Ascorbate Peroxidase Activity of Aranda Broga Blue Orchid Protocorm-like Bodies (PLBs) In Response to PVS2 Cryopreservation Method

机译:PVS2冷冻保存方法对阿兰达布鲁加蓝兰花原球茎样体(PLB)的抗坏血酸过氧化物酶活性的影响

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摘要

Throughout the cryopreservation process, plants were exposed to a series of abiotic stresses such as desiccation and osmotic pressure due to highly concentrated vitrification solution. Abiotic stress stimulates the production of reactive oxygen species (ROS) which include hydrogen peroxide, superoxide radicals, and singlet oxygen. Higher production of ROS may lead to oxidative stress which contributes to the major injuries in cryopreserved explants. Antioxidant enzymes in plant such as ascorbate peroxidase (APX) can protect plants from cell damage by scavenging the free radicals. This study was determined based on APX enzyme activity of Aranda Broga Blue orchid’s protocorm-like bodies (PLBs) in response to PVS2 (Plant Vitrification Solution 2) cryopreservation treatments at different stages. PLBs that were precultured at 0.25 M sucrose for 3 days were subjected to vitrification cryopreservation method. Results obtained showed that the highest APX activity was achieved at PVS2 cryoprotectant treatment prior liquid nitrogen (LN) storage. This phenomenon indicating that accumulation of osmotic and dehydrating stress throughout the cryopreservation treatment resulted in oxidative burst which in turn leads to higher APX activity in order to control the excess production of ROS. To conclude, PVS2 treatment was revealed as the most detrimental step throughout cryopreservation treatment. Thus, this research also suggested that exogenous antioxidant such as ascorbic acid can be added throughout cryopreservation procedure especially at PVS2 treatment in the future experiments to aid in regrowth of cryopreserved explants by reducing oxidative stress.
机译:在整个冷冻保存过程中,由于高度浓缩的玻璃化溶液,植物遭受了一系列非生物胁迫,例如干燥和渗透压。非生物胁迫刺激了活性氧物质(ROS)的产生,其中包括过氧化氢,超氧自由基和单线态氧。 ROS的较高产量可能会导致氧化应激,这会导致低温保存的外植体遭受重大伤害。植物中的抗氧化酶,例如抗坏血酸过氧化物酶(APX)可通过清除自由基来保护植物免受细胞损害。这项研究是基于Aranda Broga Blue兰花的原球茎样体(PLB)在不同阶段对PVS2(植物玻璃化溶液2)的低温保存处理的APX酶活性确定的。将在0.25 M蔗糖下预培养3天的PLB进行玻璃化冷冻保存方法。获得的结果表明,在液氮(LN)储存之前,PVS2冷冻保护剂处理可达到最高的APX活性。这种现象表明在整个低温保存过程中渗透和脱水压力的积累会导致氧化性爆发,进而导致更高的APX活性,从而控制ROS的过量产生。总而言之,PVS2处理被认为是整个冷冻保存过程中最有害的步骤。因此,这项研究还表明,可以在整个冷冻保存过程中添加外源抗氧化剂(例如抗坏血酸),尤其是在未来的实验中在PVS2处理中,以通过降低氧化应激来帮助冷冻保存的外植体再生。

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