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Adaptation of cucurbit species to changes in substrate temperature: Root growth, antioxidants, and peroxidation

机译:葫芦科物种适应底物温度变化的原因:根生长,抗氧化剂和过氧化

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摘要

To investigate their response to changes in substrate temperatures, the roots from six species of cucurbit plants were exposed to 14 degrees C, 24 degrees C, or WC, while their aerial portions were maintained at natural ambient temperatures (23 degrees C to 33 degrees C). These species could be classified into three groups based on their stress response: Group A, Cucurbita ficifolia and C. maxima, heat-sensitive but cold-tolerant; Group B, Cucumis sativus and C. melo, heat- and cold-sensitive; and Group C, Luffa cylindrica and Benincasa hispida, heat-tolerant but cold-sensitive. The highest growth rates and lowest contents of malondialdehyde (MDA) for plants in Groups A, B, and C were achieved at temperatures of 14 degrees C, 24 degrees C, and 24 degrees C to WC, respectively. Superoxide dismutase (SOD) activity was lowest in the roots exposed to optimal growth temperatures while activities of catalase (CAT), ascorbate peroxidase (APX), and guaiacol peroxidase (G-POD) operated coordinately in a complicated manner to prevent the accumulation of reactive oxygen species (ROS) in the root cells. Moreover, all plants, regardless of species, responded to unfavorable temperatures by increasing their synthesis of ascorbate and glutathione as well as by reducing the redox ratio of those two important antioxidants.
机译:为了研究它们对基质温度变化的响应,将六种葫芦科植物的根暴露于14摄氏度,24摄氏度或WC,而其空中部分则保持在自然环境温度(23摄氏度至33摄氏度)下。 )。根据它们的胁迫反应,这些种类可分为三类:A组,西葫芦和C. maxima,对热敏感但耐寒; B组,对黄瓜和黄瓜C. melo,对热和冷敏感; C组,耐热丝瓜和扁贝纳萨棉,耐热但对冷敏感。 A,B和C组中植物的最高生长速率和最低丙二醛含量是在相对于WC的温度分别为14摄氏度,24摄氏度和24摄氏度的条件下实现的。在最佳生长温度下,根部的超氧化物歧化酶(SOD)活性最低,而过氧化氢酶(CAT),抗坏血酸过氧化物酶(APX)和愈创木酚过氧化物酶(G-POD)的活性以复杂的方式协同运作,以防止活性物质的积累根细胞中的氧(ROS)。此外,所有植物,无论物种如何,都通过增加其抗坏血酸和谷胱甘肽的合成以及降低这两种重要抗氧化剂的氧化还原比来应对不利的温度。

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