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The effect of low- and high-power microwave irradiation on in vitro grown Sequoia plants and their recovery after cryostorage

机译:低功率和高功率微波辐射对红杉植物体外生长及其冷冻后恢复的影响

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摘要

Two distinct microwave power levels and techniques have been studied in two cases: low-power microwave (LPM) irradiation on in vitro Sequoia plants and high-power microwave (HPM) exposure on recovery rates of cryostored (−196°C) Sequoia shoot apices. Experimental variants for LPM exposure included: (a) in vitro plants grown in regular conditions (at 24 ± 1°C during a 16-h light photoperiod with a light intensity of 39.06 μEm−2 s−1 photosynthetically active radiation), (b) in vitro plants grown in the anechoic chamber with controlled environment without microwave irradiation, and (c) in vitro plants grown in the anechoic chamber with LPM irradiation for various times (5, 15, 30, 40 days). In comparison to control plants, significant differences in shoot multiplication and growth parameters (length of shoots and roots) were observed after 40 days of LPM exposure. An opposite effect was achieved regarding the content of total soluble proteins, which decreased with increasing exposure time to LPM. HPM irradiation was tested as a novel rewarming method following storage in liquid nitrogen. To our knowledge, this is the first report using this type of rewarming method. Although, shoot tips subjected to HPM exposure showed 28% recovery following cryostorage compared to 44% for shoot tips rewarmed in liquid medium at 22 ± 1 °C, we consider that the method represent a basis and can be further improved. The results lead to the overall conclusion that LPM had a stimulating effect on growth and multiplication of in vitro Sequoia plants, while the HPM used for rewarming of cryopreserved apices was not effective to achieve high rates of regrowth after liquid nitrogen exposure.
机译:在两种情况下研究了两种不同的微波功率水平和技术:体外红杉植物上的低功率微波(LPM)辐射和冷冻保存(-196°C)红杉芽尖恢复率下的高功率微波(HPM)暴露。 LPM暴露的实验变体包括:(a)在常规条件下生长的体外植物(在16h光周期的24±1°C下,光强度为39.06μEm -2 s -1 光合有效辐射),(b)在无微波辐射的受控环境中在无回声室中生长的离体植物,以及(c)在不同时间通过LPM辐射在无声室中进行离体的植物(5 ,15、30、40天)。与对照植物相比,LPM暴露40天后观察到枝条繁殖和生长参数(枝条和根的长度)有显着差异。对于总可溶性蛋白质的含量,获得了相反的效果,随着对LPM暴露时间的增加,可溶性蛋白的含量降低。 HPM辐射在液氮中存储后作为一种新的加热方法进行了测试。据我们所知,这是使用这种重新加热方法的第一份报告。尽管经受HPM暴露的芽尖在冷冻后显示28%的恢复,而在22±1°C的液体培养基中重新加热的芽尖则为44%,我们认为该方法是基础,可以进一步改进。结果得出总体结论,LPM对体外红杉植物的生长和繁殖具有刺激作用,而用于液冷保存的顶点重温的HPM在暴露于液氮后不能有效地实现高的再生长率。

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