首页> 外文期刊>Comparative biochemistry and physiology, Part A. Molecular and integrative physiology >Interrelationship of salinity shift with oxidative stress and lipid metabolism in the monogonont rotifer &ITBrachiomis koreanus&IT
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Interrelationship of salinity shift with oxidative stress and lipid metabolism in the monogonont rotifer &ITBrachiomis koreanus&IT

机译:盐度与氧化应激和脂质代谢的相互关系,在莫加诺顿旋转器和艾格拉肌肌中兼麦克芹菌

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Salinity is a critical key abiotic factor affecting biological processes such as lipid metabolism, yet the relationship between salinity and lipid metabolism has not been studied in the rotifer. To understand the effects of salinity on the monogonont rotifer B. koreanus, we examined high saline (25 and 35 psu) conditions compared to the control (15 psu). In vivo life cycle parameters (e.g. cumulative offspring and life span) were observed in response to 25 and 35 psu compared to 15 psu. In addition, to investigate whether high salinity induces oxidative stress, the level of reactive oxygen species (ROS) and glutathione S-transferase activity (GST) were measured in a salinity (15, 25, and 35 psu; 24 h) and time-dependent manner (3, 6,12, 24 h; 35 psu). Furthermore composition of fatty acid (FA) and lipid metabolism-related genes (e.g. elortgases and desaturases ) were examined in response to different salinity conditions. As a result, retardation in cumulative offspring and significant increase in life span were demonstrated in the 35 psu treatment group compared to the control (15 psu). Furthermore, ROS level and GST activity have both demonstrated a significant increase (P < 0.05) in the 35 psu treatment. In general, the quantity of FA and mRNA expression of the lipid metabolism-related genes was significantly decreased (P < 0.05) in response to high saline condition with exceptions for both GST-S4 and S5 demonstrated a significant increase in their mRNA expression. This study demonstrates that high salinity induces oxidative stress, leading to a negative impact on lipid metabolism in the monogonont rotifer, B. koreanus.
机译:盐度是影响脂质代谢的生物过程的关键关键非生物因子,但尚未在转子中进行盐度和脂质代谢之间的关系。要了解盐度对霍乱的影响,我们将在与对照(15psu)相比检查高盐水(25和35psu)条件。在与15psu相比,响应于25和35 psu,观察到体内生命周期参数(例如累积后代和寿命)。另外,为了研究高盐度是否诱导氧化应激,在盐度(15,25和35psu; 24小时)和时间中测量反应性氧物质(ROS)和谷胱甘肽S-转移酶活性(GST)的水平。依赖方式(3,6,12,24小时; 35 psu)。此外,脂肪酸(FA)和脂质代谢相关基因的组成(例如,Elortgase和去饱和酶)被检查响应于不同的盐度条件。结果,与对照(15psu)相比,在35psu处理组中,在35psu治疗组中证明了累积后代的延迟和寿命显着增加。此外,ROS水平和GST活性均表现出35psu治疗中的显着增加(P <0.05)。通常,脂质代谢相关基因的FA和mRNA表达的量显着降低(P <0.05),响应于GST-S4和S5的例外情况,S5的例外表现出其mRNA表达的显着增加。该研究表明,高盐度诱导氧化应激,导致甘蓝型旋转器,B. koreanus的脂质代谢的负面影响。

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