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The heat-tolerance evaluation of an Isochrysis zhangjiangensis mutant generated by atmospheric and room temperature plasmas

机译:常温和室温等离子体产生的等张线虫突变体的耐热性评估

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摘要

Isochrysis zhangjiangensis is widely used in the marine aquaculture as larval feed, especially for filter feeding cultures, as well as a good candidate for biofuels. However, the optimal cultivation temperature for I. zhangjiangensis is below 30 °C and this stain is seriously affected by high temperature, which causes the limited application during the summer. I. zhangjiangensis IM130005 is a strain generated by atmospheric and room temperature plasmas with relative higher growth rate and lipid production than the wide strain (WT), with the ability to tolerate several hours’ high temperature during the outdoor cultivation. Here, a detailed comparison was performed by continuous monitoring growth, chlorophyll fluorescence and fatty acid profile between IM13005 and WT under a mimic temperature shock to the summer outdoor cultivation. Based on a nearly 20% increase of total fatty acid in IM13005, which was majorly contributed by saturated or monounsaturated FAs in form of neutral lipids, within 5 h under the heat shock, the fatty acids and lipids synthesis variation were postulated as the physiological reason for the high temperature tolerance.
机译:张江等量线虫广泛用作海水养殖的幼体饲料,尤其是过滤饲料的养殖,也是生物燃料的良好候选者。但是,张江石。的最佳栽培温度低于30°C,高温严重影响了这种污渍,导致夏季的应用受到限制。 I. zhangjiangensis IM130005是一种由大气和室温血浆产生的菌株,与宽菌株(WT)相比,具有较高的生长速率和脂质产生能力,并且能够在户外栽培中耐受数小时的高温。在这里,通过连续监测IM13005和野生型在模拟夏季户外温度下的温度下的生长,叶绿素荧光和脂肪酸谱,进行了详细的比较。基于IM13005中总脂肪酸增加近20%,这主要是由中性脂质形式的饱和或单不饱和FA引起的,在热冲击下5小时内,推测脂肪酸和脂质的合成变化是生理原因对于高温耐受性。

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