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首页> 外文期刊>African Journal of Biotechnology >Mechanism of action of hydrogen peroxide in wheat thermotolerance - interaction between antioxidant isoenzymes, proline and cell membrane
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Mechanism of action of hydrogen peroxide in wheat thermotolerance - interaction between antioxidant isoenzymes, proline and cell membrane

机译:过氧化氢在小麦耐热性中的作用机理-抗氧化剂同工酶,脯氨酸与细胞膜之间的相互作用

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Terminal heat stress causes an array of physiological, biochemical and morphological changes in plants, which affect plant growth and development. It has very severe effect on the pollen viability and seed setting in wheat.?In?the?present investigation, an altered expression of H2O2?(0.9 μg/g in C-306 and 0.75 μg/g in HD2329) was observed with?the?highest accumulation at seed hardening stage and against heat shock (HS) of 42°C for 2 h. With?the?increase in H2O2?accumulation, an increase in the number of isoenzymes of superoxide dismutase and catalase were observed with high activities under differential heat shock. A?decrease in the proline accumulation was observed under differential heat shock. Exogenous application of H2O2?(10 mmole/L) leads to increase in the accumulation of intracellular H2O2?and further an increase in the number of isoenzymes of superoxide dismutase (SOD) and catalase (CAT) was observed. The tolerant cultivar was more responsive to exogenous application of H2O2?compared to susceptible cultivar. The percentage decrease in cell membrane stability under differential heat shock was low in H2O2?treated plants compared to non-treated.?The?results?from?this?study suggest?a?potential?role?for?H2O2in regulating the activity of antioxidant enzymes and accumulation of proline inside cells and in turn influence the cell membrane stability under heat stress.?All the defense associated genes were observed to be very responsive to intracellular H2O2, which gives inference that H2O2?has regulatory role to play in controlling the expression and activities of these proteins under abiotic stresses.?Key?words:?Antioxidant?enzymes,?wheat,?heat?stress,?H2O2,?proline, catalase, superoxide dismutase, cell membrane stability, reactive oxygen species.
机译:终极热应激会导致植物发生一系列生理,生化和形态变化,从而影响植物的生长发育。它对小麦的花粉活力和结实有非常严重的影响。在目前的研究中,观察到H2O2的表达发生了变化(C-306为0.9μg/ g,HD2329为0.75μg/ g)。在种子硬化阶段的最高积累量为42 h,抗热冲击(HS)2 h。随着H2O2积累的增加,在不同的热激条件下,高活性的超氧化物歧化酶和过氧化氢酶的同工酶数量增加。在不同的热冲击下,脯氨酸积累的减少。外源施用过氧化氢(10 mmol / L)导致细胞内过氧化氢的积累增加,并且观察到超氧化物歧化酶(SOD)和过氧化氢酶(CAT)的同工酶数量增加。与易感品种相比,耐性品种对H2O2?的外源施用反应更敏感。 H2O2处理过的植物与未处理过的植物相比,在不同的热休克条件下细胞膜稳定性降低的百分比较低。该研究结果表明,H2O2在调节抗氧化剂活性方面的潜在作用酶和脯氨酸在细胞内的积累,进而影响热应激下细胞膜的稳定性。观察到所有防御相关基因对细胞内H2O2的反应非常敏感,这说明H2O2在控制表达中起调节作用。关键词:抗氧化酶,小麦,热应激,H2O2,脯氨酸,过氧化氢酶,超氧化物歧化酶,细胞膜稳定性,活性氧。

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