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首页> 外文期刊>American Journal of Experimental Agriculture >Respiration and Antioxidant Enzymes Activity in Watermelon Seeds and Seedlings Subjected to Salt and Temperature Stresses
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Respiration and Antioxidant Enzymes Activity in Watermelon Seeds and Seedlings Subjected to Salt and Temperature Stresses

机译:盐和温度胁迫下西瓜种子和幼苗的呼吸和抗氧化酶活性。

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This research aimed to evaluate the effect of salt and temperature stress on water uptake and respiration of watermelon seeds during germination process and to quantify changes in the activity of the antioxidant enzymes ascorbate peroxidase (APX), catalase (CAT) and glutathione-S transferase (GST) involved in protection against reactive oxygen species. The research was performed at the Seed Analysis Laboratory (LASESA) of Embrapa Semi-Arid, Petrolina, Pernambuco State, Brazil, from september to december 2011. The experimental design was completely randomized in a factorial 2x3 (cultivars x stress conditions) for respiration evaluation, 3x4 (cultivars x electrical conductivities) for salt stress assays and 3x3 (cultivars x temperature) for temperature stress assays. The data were submitted to the mean test and evaluated using the standard errors of means. Respiration was measured by CO2 releases by watermelon seeds cv. cv. Crimson Sweet and Charleston Gray evaluated by an infrared gas analyzer, from 0-120 hours of seed imbibition in different environmental conditions (0 dSm-1/25°C, 0 dSm-1/30°C, 4 dSm-1/25°C). The antioxidant enzymes ascorbate peroxidase (APX), catalase (CAT) and glutathione-S transferase (GST) were evaluated in cvs. Crimson Sweet, Charleston Gray and Fairfax seeds and seedlings after five days imbibition in different electrical conductivities (0, 4 and 6 dSm-1) or temperatures (20, 25, 30°C). Crimson Sweet seed respiration rate was increased with increasing temperature, salinity however did not influence the respiration of seeds until the radicle protrusion. The activities of APX and CAT enzymes were antagonistically influenced stresses. The activity of GST was not altered with increased electrical conductivity, however high temperatures led to increase of its activity in watermelon seedlings. The antioxidant detoxification system was activated when imposing temperature and salt stress in all studied watermelon cultivars. Different cultivars of watermelon show different adaptation to salt and temperature stress.
机译:这项研究旨在评估盐和温度胁迫对发芽过程中西瓜种子水分吸收和呼吸的影响,并量化抗氧化剂抗坏血酸过氧化物酶(APX),过氧化氢酶(CAT)和谷胱甘肽S转移酶( GST)参与针对活性氧的保护。该研究于2011年9月至12月在巴西伯南布哥州Petrolapa的Embrapa Semi-Arid种子分析实验室(LASESA)进行。实验设计完全随机化为2x3阶乘(品种x压力条件)以评估呼吸作用。 ,3x4(品种x电导率)用于盐胁迫测定,以及3x3(品种x温度)用于温度胁迫测定。将数据提交至均值检验,并使用均值的标准误进行评估。通过西瓜种子cv释放CO 2 来测量呼吸。简历。通过红外气体分析仪评估了Crimson Sweet和Charleston Gray在不同环境条件(0 dSm -1 / 25°C,0 dSm -1 / 30°C,4 dSm -1 / 25°C)。在cvs中评估了抗氧化剂抗坏血酸过氧化物酶(APX),过氧化氢酶(CAT)和谷胱甘肽S转移酶(GST)。在不同电导率(0、4和6 dSm -1 )或温度(20、25、30°C)下吸水5天后,Crimson Sweet,Charleston Gray和Fairfax种子和幼苗。绯红色甜种子的呼吸速率随温度的升高而增加,但是盐度直到胚根伸出才影响种子的呼吸。 APX和CAT酶的活性受到压力的拮抗作用。 GST的活性没有随电导率的增加而改变,但是高温导致西瓜幼苗中GST的活性增加。当在所有研究的西瓜品种中施加温度和盐胁迫时,抗氧化剂解毒系统被激活。不同品种的西瓜对盐和温度的适应性不同。

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