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51.
化学融雪剂是寒冷地区冬季除雪的主要措施之一,其对地表水生态系统的累积性影响已逐渐受到重视。拟以草鱼为研究对象,采用邻苯三酚自氧化法和紫外吸收的方法,研究不同浓度融雪剂对鱼鳃和肌肉组织中SOD和CAT活性的影响,旨在为融雪剂对水生生物的毒性效应提供数据支持。在4.10、5.13、6.41、8.01 g·L-1和10.01 g·L-1不同浓度条件下,进行融雪剂对草鱼的暴露实验。结果表明:融雪剂对草鱼的96 h LC50值为14.19 g·L-1,安全浓度值应不超过4.03 g·L-1。根据化学融雪剂对草鱼(Ctenopharyngodon idellus)96 h LC50值,5.13、6.41、8.01、10.01 g·L-1浓度融雪剂暴露组与对照组相比,草鱼鳃和肌肉组织SOD的活性均被显著抑制 (P<0.05或P<0.01)。在7 d时,化学融雪剂胁迫下草鱼鳃和肌肉组织CAT活性均表现为显著抑制(P<0.05或P<0.01),草鱼鳃中CAT活性高于肌肉组织中。  相似文献   
52.
铜锌超氧化物歧化酶(Superoxide dismutase,SOD)是一种广泛存在于生物体中最主要的抗氧化酶之一,在抵御过多活性氧簇对机体毒害的过程中起重要作用。本研究以太洋真宽水蚤为研究对象,采用RT-PCR与RACE方法克隆得到太平洋真宽水蚤Cu/Zn SOD基因全长c DNA序列。Cu/Zn SOD(Gen Bank登录号:MF289343)基因序列全长837bp,其中完全开放阅读框为456bp编码152个氨基酸,5′非编码区长297bp,3′非编码区长84bp,分子量约为15.050k Da,理论等电点为5.73。序列比较表明,太平洋真宽水蚤Cu/Zn SOD c DNA的氨基酸序列与其他甲壳动物的一致性较高;存在8个蛋白翻译后修饰位点及蛋白家族标签序列,无跨膜结构域与信号肽。在重金属铬与镍胁迫下,通过实时荧光定量PCR对太平洋真宽水蚤Cu/Zn SOD m RNA体内表达特点分析显示,其表达量均呈现先升后降趋势,在暴露12小时后表达量达到峰值;铬胁迫下的表达量略高于镍;联合胁迫下呈现出拮抗作用。本研究结果将有利于深入探讨桡足类Cu/Zn SOD基因的结构与功能,为进一步研究抗氧化分子机理奠定基础。  相似文献   
53.
为探讨黄条鰤(Seriola aureovittata)对盐度渐变的应激响应机制,设置盐度5、10、15、20、29和35共6个盐度渐变点,对幼鱼的消化酶活力、超氧化物歧化酶(SOD)和甲状腺激素(T4)等生理指标进行了检测和分析。研究显示:胃、肠、肝脏和幽门盲囊的脂肪酶的活性均在盐度29渐变点最高,在低盐度渐变点这4个组织的脂肪酶活性均随盐度降低而降低。肠和肝脏的蛋白酶活性在盐度29渐变点达到峰值,幽门盲囊的蛋白酶活性则在盐度35渐变点最高,且与其他盐度渐变点间有显著性差异(P<0.05)。胃、肠、肝脏的淀粉酶活性在盐度29渐变点最高,而幽门盲囊的淀粉酶活性在盐度35渐变点最高,但与盐度29渐变点无显著性差异(P>0.05)。血清SOD活性在盐度5渐变点显著低于其他盐度渐变点(P<0.05),SOD活性在盐度20和35渐变点与29渐变点无显著性差异(P>0.05)。血清T4浓度随着盐度的升高或降低均升高,盐度20渐变点与29渐变点的T4浓度无显著性差异(P>0.05)。研究显示,自然海水盐度29是黄条鰤幼鱼存活的适宜盐度,且黄条鰤幼鱼能较快适应略低盐度(20~29),但较低或较高盐度渐变点的消化酶活力和抗应激指标则显著异常。盐度渐变可引起黄条鰤幼鱼的消化生理、抗氧化水平和T4浓度的变化,黄条鰤幼鱼对外界盐度变化表现出较强的适应性。  相似文献   
54.
壬基酚、辛基酚、二氯酚和双酚A是水环境中普遍存在的酚类污染物,由于其内分泌干扰活性和致癌性近年来受到广泛的关注.本研究以菲律宾蛤仔(Ruditapes philippinarum)为受试生物,研究4种典型酚类污染物暴露对其内脏组织和鳃组织中抗氧化酶包括超氧化物歧化酶(SOD)和过氧化氢酶(CAT)以及解毒酶谷胱甘肽硫转移酶(GST)活性的影响.研究结果表明:壬基酚低浓度处理组(0.05~0.2 mg/L)3种酶活性无显著变化,高浓度处理组(0.4 mg/L),SOD、CAT和GST 3种酶活性均受到显著抑制,抑制率分别为56.6%,59.0%和35.5%.在实验浓度范围(0.05~0.4 mg/L)内,二氯酚能够显著抑制内脏组织CAT活性,双酚A能够显著抑制鳃组织GST活性.3种酶活性变化对于酚类污染物的响应呈现较好的规律性,因此可以作为生物标志物联合指示水体中的酚类污染.  相似文献   
55.
56.
A superoxide dismutase was purified from Enteromorpha linza using a simple and safe procedure, which comprised phosphate buffer extraction, ammonium sulphate precipitation, ion exchange chromatography on Q-sepharose column, and gel filtration chromatography on Superdex 200 10/300GL. The E. linza superoxide dismutase (E/SOD) was purified 103.6-fold, and a yield of 19.1% and a specific activity of 1 750 U/rag protein were obtained. The SDS-PAGE exhibited E/SOD a single band near 23 kDa and the gel filtration study showed E/SOD's molecular weight is near 46 kDa in nondenatured condition, indicating it's a homodimeric protein. E/SOD is an iron-cofactored superoxide dismutase (Fe-SOD) because it was inhibited by hydrogen peroxide, insensitive to potassium cyanide. The optimal temperature for its maximal enzyme activity was 35℃, and it still had 29.8% relative activity at 0℃, then E/SOD can be classified as a cold-adapted enzyme. E/SOD was stable when temperature was below 40℃ or the pH was within the range of 5 10. The first 11 N-terminal amino acids orE/SOD were ALELKAPPYEL, comparison of its N-terminal sequence with other Fe-SOD N-terminal sequences at the same position suggests it is possibly a chloroplastic Fe-SOD.  相似文献   
57.
通过对抗逆性不同的6个烟台冬小麦品种在盐处理和干旱胁迫交互作用进程中叶片相对含水量(RWC),膜脂过氧化产物(MDA)和抗氧化酶活力(SOD,POD,CAT)及渗透调节物含量(脯氨酸,可溶性蛋白)的分析,以了解不同冬小麦品种对盐处理和干旱胁迫交互作用响应的生理调节差异。研究表明,在水分供应充足条件下盐处理10 d,6个品种冬小麦生长良好并和对照没有差异,但在干旱胁迫中盐处理组较对照MDA含量低,RWC和抗氧化酶活力和渗透调节物含量均高,且叶片萎蔫较对照出现晚。但经盐处理的6个冬小麦品种对干旱胁迫响应有差异。在长期干旱(12 d),抗旱性强的品种RWC(81%)明显高于抗旱性弱的(62%),前者叶片MDA含量较后者低30%,抗旱性强的品种抗氧化酶活力和渗透调节物含量略低于抗旱性弱的品种,但是差异不明显。在盐处理和干旱胁迫交互作用下,盐离子自身可作为渗透调节物既增加了土壤的持水力又提高了细胞保水力而使冬小麦耐旱性增强。抗旱性强的冬小麦品种对盐处理反应敏感且保水性强,细胞膜脂过氧化程度较低,故耐旱力高,抗旱性弱的品种则相反。研究进一步表明,在未来干旱地区实施适度的盐水灌溉可提高冬小麦的耐旱力,但选择抗旱力强的冬小麦品种是实施这一农业耕作措施的关键。  相似文献   
58.
硫化物集合体的硫同位素比值介于其单矿物中硫同位素比值的最大和最小值之间。当|δ2-δ1|<Δ时 ,δ(1 2 ) 与矿物中硫同位素组成最大和最小值的距离均小于Δ。当|δ2-δ1|>Δ时 ,δ(1 2 ) 与δ1 和δ2 的距离有可能大于Δ。对现代海底热液沉积物来讲 ,排除了生物和有机质的影响后 ,直接测定其硫化物集合体的硫同位素比值进行同位素示踪研究是可行的。  相似文献   
59.
Uniconazole, as a plant growth retardant, can enhance stress tolerance in plants, possibly because of improved antioxidation defense mechanisms with higher activities of superoxide dismutase(SOD) and peroxidase(POD) enzymes that retard lipid peroxidation and membrane deterioration. These years much attention has been focused on the responses of antioxidant system in plants to uniconazole stress, but such studies on aquatic organism are very few. Moreover, no information is available on growth and antioxidant response in marine microalgae to uniconazole. In this paper, the growth and antioxidant responses of two marine microalgal species, Platymonas helgolandica and Pavlova viridis, at six uniconazole concentrations(0-15 mg L-1) were investigated. The results demonstrated that 3 mg L-1 uniconazole could increase significantly chlorophyll a and carbohydrate contents of P. helgolandica(P 0.05). Higher concentrations(≥12 mg L-1) of uniconazole could inhibit significantly the growth, dry weight, chlorophyll-a and carbohydrate contents of P. helgolandica and P. viridis(P 0.05). Uniconazole caused a significant increase in lipid peroxidation production(MDA) at higher concentrations(≥ 9 mg L-1). The activities of antioxidant enzymes, superoxide dismutase(SOD) and catalase(CAT) were enhanced remarkably at low concentrations of uniconazole. However, significant reduction of SOD and CAT activities was observed at higher concentrations of uniconazole.  相似文献   
60.
In a previous study we have demonstrated the suitability of using vetiver grass (Vetiveria zizanioides L.) for the phytostabilization of lead‐based paint contaminated residential soils. Vetiver did not show any growth retardation or toxicity symptoms despite high soil Pb levels. Antioxidant enzymes like superoxide dismutase (SOD), catalase (CAT), and glutathione peroxidase (GPx) reportedly allow plants to combat metal stress. Thus, we hypothesized that in vetiver, these antioxidant enzymes can play an important role in combating Pb induced stress, and that chelant‐bound Pb is less toxic to vetiver compared to free Pb in soil. The response of antioxidant enzymes was studied in vetiver grass grown in Pb paint‐contaminated residential soils collected from San Antonio, Texas and Baltimore, Maryland. Chelating agents such as ethylenediaminetetraacetic acid (EDTA) and ethylenediaminedisuccinic acid (EDDS) were used to mobilize Pb from bound fractions to the labile pool, facilitating Pb uptake by vetiver. Although the Pb concentration in vetiver from these treatments was significantly higher than those grown in the absence of a chelant, the antioxidant enzymes activities were lower compared to the latter. Antioxidant enzymes activity of vetiver plants grown in the presence of chelants is lower compared to those in without chelant treatment, while they tended to increase with dose in treatments with varying chelant concentrations. Data obtained support the proposed hypothesis.  相似文献   
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