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Effect of exogenous nitric oxide on seed germination and physiological characteristics of Brassica napus

机译:外源一氧化氮对芸苔种子萌发和生理特性的影响

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The aim of this research was to investigate the effects of exogenous NO on seed germination, seedling growth, and other physiological characteristics of Brassica napus under PEG stresses. The results indicate that the damages to Brassica napus caused by the stress of 10% PEG were significantly alleviated in the presence of 25μM SNP: the seed germination rate increased by 35.3%; the plant height, main root length and the number of adventitious roots increased by 14.26%, 6.1% and 35.76%, respectively; the protective enzyme activities of CAT and APX increased by 69.25% and 53.95%; the level of MDA decreased by 31.87%; the chlorophyll content increased by 62.5%. When SNP was increased to 100μM, a diminishing stimulative effect was observed and the oxidative damage to leaves sustained. Based on the data reported, we conclude that to some extent SNP can alleviate inhibitory effect under PEG stresses effectively and stimulates Brassica napus seed germination and seedling growth. SNP can also regulate the activity of protective enzymes and relief oxidative damages.
机译:该研究的目的是研究外源性NO对PEG胁迫下甘蓝型油菜种子萌发,幼苗生长和其他生理特性的影响。结果表明,在25μm的SNP存在下,由10%PEG的应力引起的芸苔内纳珀的损伤显着减轻:种子萌发率增加35.3%;植物高度,主要根长度和不定根数量分别增加了14.26%,6.1%和35.76%; CAT和APX的保护酶活性增加69.25%和53.95%; MDA的水平降低了31.87%;叶绿素含量增加62.5%。当SNP增加到100μm时,观察到趋化效果递减,并且持续氧化损伤。基于报告的数据,我们得出结论,在某种程度上,SNP可以减轻PEG在PEG胁迫下的抑制作用,并刺激芸苔Napus种子萌发和幼苗生长。 SNP还可以调节保护酶的活性和浮雕氧化损伤。

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