首页> 美国卫生研究院文献>Saudi Journal of Biological Sciences >Effects of water-deficit stress and paclobutrazol on growth relative water content electrolyte leakage proline content and some antioxidant changes in Curcuma alismatifolia Gagnep. cv. Chiang Mai Pink
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Effects of water-deficit stress and paclobutrazol on growth relative water content electrolyte leakage proline content and some antioxidant changes in Curcuma alismatifolia Gagnep. cv. Chiang Mai Pink

机译:水分亏缺胁迫和多效唑对姜黄生长相对水含量电解质渗漏脯氨酸含量和某些抗氧化剂变化的影响。简历。清迈粉

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摘要

Effects of water-deficit stress and paclobutrazol (PBZ) on the physiological and biochemical changes in Curcuma alismatifolia Gagnep. cv. Chiang Mai Pink (Zingiberaceae) were investigated. One hundred rhizomes were grown for 30–35 days and then divided into the following 4 treatments: (1) well-watered, (2) not watered, (3) well-watered and treated with 1500 ppm PBZ being applied once to the soil, and (4) not watered but treated with 1500 ppm PBZ. After 50 days of growth, watering was withheld for 30 days. After water stress was initiated, plant height, plant fresh weight, soil water content, relative water content (RWC), electrolyte leakage (EL), proline content, vitamin C and E content, as well as the activities of catalase (CAT) and superoxide dismutase (SOD) in the leaves were determined every 10 days. The results showed that water-deficit stress decreased plant height and plant fresh weight, whereas this stress and PBZ did not result in a decrease in these parameters. Water stress reduced RWC, but induced EL and proline content in the leaves. However, the leaves showed opposite results when PBZ was added to the treatments. Some antioxidants such as vitamin C, vitamin E, and the activities of CAT and SOD were induced in the leaves by PBZ. Moreover, the content of vitamin C, vitamin E and CAT activity were higher in relation to water-deficit stress and PBZ treatments. This indicates that PBZ induced a number of some physiological and biochemical adaptations (maintaining growth and RWC, decreasing EL and proline content, increasing the vitamin C and vitamin E levels, and CAT and SOD activities) that enable the Curcuma plant to tolerate drought.
机译:缺水胁迫和多效唑对姜黄姜生理生化变化的影响。简历。清迈粉红色(姜科)被调查。一百个根茎生长30-35天,然后分为以下4种处理方法:(1)浇水良好,(2)不浇水,(3)浇水良好并用1500 ppm PBZ处理一次,和(4)不浇水,但用1500 ppm PBZ处理。生长50天后,禁水30天。启动水分胁迫后,植物株高,植物鲜重,土壤水分,相对水分(RWC),电解质渗漏(EL),脯氨酸含量,维生素C和E含量以及过氧化氢酶(CAT)和每10天测定一次叶片中的超氧化物歧化酶(SOD)。结果表明,水分亏缺胁迫降低了株高和新鲜鲜重,而该胁迫和PBZ并未导致这些参数的降低。水分胁迫降低了RWC,但诱导了叶片中EL和脯氨酸的含量。但是,当在处理中添加PBZ时,叶子显示相反的结果。 PBZ在叶片中诱导了一些抗氧化剂,例如维生素C,维生素E以及CAT和SOD的活性。此外,相对于缺水胁迫和PBZ处理,维生素C,维生素E和CAT活性的含量更高。这表明PBZ引起了许多生理和生化适应(保持生长和RWC,降低EL和脯氨酸含量,增加维生素C和维生素E水平以及CAT和SOD活性),从而使姜黄植物能够耐受干旱。

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