首页> 外文期刊>Journal of Plant Physiology >VARIATION IN THE ANTIOXIDANT METABOLISM OF DROUGHT TOLERANT AND DROUGHT SUSCEPTIBLE VARIETIES OF SORGHUM BICOLOR (L) MOENCH - EXPOSED TO HIGH LIGHT, LOW WATER AND HIGH TEMPERATURE STRESS
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VARIATION IN THE ANTIOXIDANT METABOLISM OF DROUGHT TOLERANT AND DROUGHT SUSCEPTIBLE VARIETIES OF SORGHUM BICOLOR (L) MOENCH - EXPOSED TO HIGH LIGHT, LOW WATER AND HIGH TEMPERATURE STRESS

机译:高粱,低水分和高温胁迫下高粱粉(L)的耐旱性和干旱性状易发生变化的抗氧化剂代谢变化

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Seedlings of four varieties of Sorghum bicolor differing in drought tolerance under field conditions were exposed to three components of drought stress in the laboratory. They were exposed to high light (10,000 lux), high temperature (36 +/- 2 degrees C), and low water stress (-0.5 MPa) in different experiments. After 72 hours of exposure to each of these stresses, changes in lipid peroxidation, and the activities of catalase, superoxide dismutase and guaicol dependent peroxidase were assayed. Out of the four varieties, CSV-5, which is a drought susceptible variety, showed maximum increases in the level of malondialdehyde, which is a product of lipid peroxidation, under all three stress conditions. IS-22380, PA-59 and E-36 showed lesser lipid peroxidation. Superoxide dismutase and catalase activities increased in the drought tolerant varieties. While IS-22380 seemed to adapt to stress conditions by manipulating the catalase levels, E-36 showed higher adaptability by manipulating the superoxide dismutase levels under water and temperature stress. Adaptation to light stress was manifested by increases in the levels of superoxide dismutase in the drought tolerant varieties. Thus, a drought tolerant variety can adapt to drought stress by diverse manipulations in the antioxidant system.
机译:在实验室条件下,四种在田间条件下耐旱性不同的双色高粱品种的幼苗暴露于干旱胁迫的三个组成部分。在不同的实验中,它们暴露于高光(10,000 lux),高温(36 +/- 2摄氏度)和低水分胁迫(-0.5 MPa)下。在暴露于这些压力中的每一个72小时后,测定脂质过氧化的变化以及过氧化氢酶,超氧化物歧化酶和愈创木酚依赖性过氧化物酶的活性。在这四个品种中,对干旱敏感的CSV-5在所有三个胁迫条件下均显示出丙二醛水平的最大增加,后者是脂质过氧化作用的产物。 IS-22380,PA-59和E-36显示较少的脂质过氧化作用。耐旱品种中超氧化物歧化酶和过氧化氢酶的活性增加。虽然IS-22380似乎可以通过控制过氧化氢酶水平来适应压力条件,但E-36可以通过控制水和温度胁迫下的超氧化物歧化酶水平来显示更高的适应性。耐旱品种中超氧化物歧化酶水平的增加表明了对光胁迫的适应性。因此,耐旱品种可以通过抗氧化剂系统中的多种操作来适应干旱胁迫。

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