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1.
以芒果中多酚氧化酶(PPO)和过氧化物酶(POD)为研究对象,探讨加热与超声波作用对多酚氧化酶和过氧化物酶钝化效果的影响。结果表明:单独的加热(≤50℃)或0℃低温超声波(403.19、601.25、799.31 W/cm2)处理酶液,随着时间的延长,酶活性逐渐下降,但酶残留活性均在75%以上;而超声波与热处理结合能使POD和PPO显著失活,在45℃,799.31 W/cm2条件下处理15 min后,PPO、POD残余酶活力分别降至38.66%、14.43%。试验结果表明:超声波和热处理结合对芒果PPO和POD的钝化有协同效应。  相似文献   
2.
以2年生晚松盆栽苗为供试材料,从抗大气环境中SO2污染方面对晚松的抗逆能力进行了定量评价,为晚松的园林应用提供理论依据。研究表明,晚松叶绿素a、b对模拟SO2污染反应敏感,叶绿素b所受伤害大于叶绿素a,类胡萝卜素较不敏感。过氧化物酶活性的提高有助于减轻膜脂过氧化造成的伤害,从而使其在SO2污染胁迫较轻(10 mmol/L)时免受伤害。  相似文献   
3.
高昆  王佳琪 《北方园艺》2020,(7):132-137
以锦灯笼种子为试材,用3%、5%、8%和10%4个浓度的PEG-6000溶液模拟不同的干旱胁迫条件,研究锦灯笼种子萌发情况和幼苗生理特性,以期了解其抗旱性。结果表明:1)随着PEG-6000浓度的加大,锦灯笼种子的发芽率和发芽势先增加后减少,浓度为5%时最大,株高也是在胁迫浓度为5%时达到最高,这说明一定程度的干旱胁迫可以促进种子萌发及幼苗生长。2)丙二醛含量、可溶性糖含量和电导率随着PEG-6000浓度的增加表现为持续上升的趋势,过氧化物酶(POD)活性则呈现先上升后降低的趋势。  相似文献   
4.
低氧胁迫对河川沙塘鳢抗氧化酶及ATP酶活性的影响   总被引:1,自引:0,他引:1  
研究了在急性低氧1.5 h、5 h和慢性低氧3 d下,河川沙塘鳢(Odontobutis potamophila)5种组织(心、脑、肝、鳃和肾)的超氧化物歧化酶(SOD)、过氧化氢酶(CAT)及谷胱甘肽过氧化物酶(GPX)3种抗氧化酶和ATP酶活性的变化规律。结果显示:在急性低氧暴露1.5 h时,河川沙塘鳢SOD和GPX的活力在各组织中与对照组相比均无显著差异,CAT活力在心、鳃和肝3种组织呈现显著升高(P0.05),ATP酶活力在心和肝组织极显著升高(P0.01);在急性低氧暴露5 h时,除肝组织SOD酶活性显著降低外(P0.05),其它4种组织的CAT、GPX和ATP酶均不同程度显著升高(P0.05);在慢性低氧处理3 d时,心、脑组织的抗氧化酶已基本恢复至与对照组无显著差异的水平,但鳃、肝和肾中酶活力仍较高(P0.05)。研究表明,河川沙塘鳢能通过自身调节抗氧化酶及ATP酶活性,改变代谢底物,提高机体适应低氧环境的能力。  相似文献   
5.
以蝴蝶兰鲜切花为试材,对切花花被不同生理阶段3种酶活性的变化进行测量分析,以期为蝴蝶兰切花寿命的延长提供参考依据。结果表明:萼片和花瓣中的过氧化物酶(POD)从花苞期到半开期酶活性变化不明显,从半开期到衰老期酶活性显著升高。花瓣中的超氧化物歧化酶(SOD)从花苞期到半开期酶活性升高,从半开期到衰老期酶活性显著降低;萼片中的超氧化物歧化酶活性变化不显著但也呈先上升后下降趋势。花瓣中的中性蛋白酶(NP)从花苞期到半开期酶活性呈上升趋势,半开期到盛开期呈下降趋势,盛开期到衰老期呈上升趋势;花萼中的中性蛋白酶从花苞期到盛开期酶活性呈下降趋势,从盛开期到衰老期呈上升趋势;总体来看中性蛋白酶的活性呈先下降后上升趋势。  相似文献   
6.
2个多年生花生品种低温胁迫下活性氧代谢特性研究   总被引:1,自引:0,他引:1  
不同低温胁迫下对平托花生Arachis pintoi与蔓花生A.duranensis2个多年生花生品种进行的叶片活性氧代谢与质膜特性进行研究。结果表明,A.duranensis品种无论在超氧化物岐化酶(SOD)、过氧化物酶(POD)还是过氧化氢酶(CAT)相对活性在低温胁迫下均不低于或显著高于A.pintoi,表现出相对较高的清除自由基能力;其质膜相对透性(RPP)增加幅度明显小于A.pintoi;丙二醛(MDA)相对含量增加率则表现出相反趋势;表明A.duranensis具有更强的抗寒性。  相似文献   
7.
N‐3 polyunsaturated fatty acids (PUFA) are essential for foetal development. Hence, including n‐3 PUFA in the sow diet can be beneficial for reproduction. Both the amount and form (precursor fatty acids vs. long chain PUFA) of supplementation are important in this respect. Furthermore, including n‐3 PUFA in the diet can have negative effects, such as decreased arachidonic acid (ARA) concentration and increased oxidative stress. This study aimed to compare the efficacy to increase eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) concentrations in the piglet, when different concentrations of linseed oil (LO, source of precursor α‐linolenic acid) or fish oil (FO, source of EPA and DHA) were included in the maternal diet. Sows were fed a palm oil diet or a diet including 0.5% or 2% LO or FO from day 45 of gestation until weaning. Linoleic acid (LA) was kept constant in the diets to prevent a decrease in ARA, and all diets were supplemented with α‐tocopherol acetate (150 mg/kg) and organic selenium (0.4 mg/kg) to prevent oxidative stress. Feeding 0.5% LO or 0.5% FO to the sows resulted in comparable EPA concentrations in the 5‐day old piglet liver, but both diets resulted in lower EPA concentrations than when 2% LO was fed. The highest EPA concentration was obtained when 2% FO was fed. The DHA level in the piglet liver could only be increased when FO, but not LO, was fed to the sows. The 2% FO diet had no advantage over the 0.5% FO diet to increase DHA in the piglet. Despite the constant LA concentration in the sow diet, a decrease in ARA could not be avoided when LO or FO were included in the diet. Feeding 2% FO to the sows increased the malondialdehyde concentration (marker for lipid peroxidation) in sow plasma, but not in piglets.  相似文献   
8.
Sodic‐alkalinity may be more deleterious to plant growth than salinity. The objectives of this study were to determine whether 5‐aminolevulinic acid (ALA: an essential precursor for chlorophyll biosynthesis) foliar application could improve the sodic‐alkaline resistance of Swiss chard (Beta vulgaris L. subsp. cicla ) by regulating water uptake, ionic homeostasis, photosynthetic capacity, and antioxidant metabolism. Eight‐week‐old uniform plants were grown in nutrient medium without and with a sodic‐alkaline regime generated by a mixture of NaHCO3 and Na2CO3 (NaHCO3 : Na2CO3 = 9:1 molar ratio) for 12 d, and leaves were sprayed daily with water or ALA. The Na+ and ALA concentrations were gradually increased to 60 mM and 120 μM, respectively. ALA foliar application alleviated the physiological damage from sodic‐alkalinity, as reflected by the increases in plant dry weight, relative growth rate, chlorophyll, Mg2+ concentration, and the decrease in Na+ concentration. However, ALA foliar application did not change the water uptake capacity or the concentration of K+, Fe3+, and endogenous ALA in leaf tissues under sodic‐alkaline conditions. ALA foliar application effectively mitigated damage from sodic‐alkalinity because of the increased activity of antioxidant enzymes (catalase and guaiacol peroxidase), particularly superoxide dismutase activity, which was maintained at the same level as for control plants. These results suggest that ALA foliar application alleviated sodic‐alkaline stress mainly owing to its antioxidant capacity, and superoxide dismutase has the main responsibility for reducing oxidative stress in Swiss chard.  相似文献   
9.
Drought stress causes various physiological and biochemical effects in plants. Chicory (Cichorium intybus L.), of the Asteraceae, is a medicinal herbal that is found in most parts of Iran. This study was taken as a factorial experiment based on a completely randomized design? with four replications, to evaluate the effect of water deficit on changes in antioxidant enzyme activity, proline content, and ABA accumulation of four ecotypes of chicory (Sefid Shiraz, Siyah Shiraz, Sefid Isfahan, Siyah Isfahan). To conduct this research, greenhouse cultivation at four different irrigation levels, 100% (as a control), 80, 60 and 40% of field capacity (FC), was conducted and after 60 days of tension under specific treatment, the plants were harvested and the indicators were investigated. The results of the present study indicate that Siyah Shiraz performs better than the others under water deficit conditions, as indicated by higher antioxidant enzyme (superoxide dismutase, catalase, and peroxidase) activity, proline content (as non-enzymatic anti oxidant) and abscisic acid accumulation in leaves. Since activation of the antioxidant system helps the plants with stress-induced damages, our results indicate that Siyah Shiraz has a better defense system against oxidative damage. These data are useful for better understanding of the physiological basis of changes in drought resistance as well as crop breeding projects.  相似文献   
10.
Lignin-degrading enzymes secreted by white rot fungi play an important role in the degradation of lignin and persistent organic pollutants(POPs).In this study,effect of environmental C/N ratio on the activities of lignin-degrading enzymes,lignin peroxide(Li P)and manganese peroxidase(Mn P),produced by Phanerochaete chrysosporium,a white rot fungus,was investigated.Glucose was used as C source,and ammonium tartrate of different concentrations was used as N source to provide different C/N ratios.Relationships between Li P and Mn P activities and environmental C/N ratio were explored.The results showed that the higher the N source concentration,the faster the mycelium pellets aged.The faster the mycelium dry weight increased,the higher the Li P and Mn P activities.A high C/N ratio was a necessary condition for the secretion of Li P or Mn P.In addition,mycelium dry weight essentially affected enzyme activities.In the 122 C/N ratio and 50 C/N ratio treatments,mycelium dry weight essentially affected Mn P activity and both Li P and Mn P activities,respectively.  相似文献   
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