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首页> 外文期刊>Journal of Biotechnology >Interactive role of salicylic acid and nitric oxide on transcriptional reprogramming for high temperature tolerance in lablab purpureus L.: Structural and functional insights using computational approaches
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Interactive role of salicylic acid and nitric oxide on transcriptional reprogramming for high temperature tolerance in lablab purpureus L.: Structural and functional insights using computational approaches

机译:水杨酸和一氧化氮对高温耐受性的转录重编程的互动作用,用于使用计算方法的结构和功能见解

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摘要

Salicylic acid (SA) and nitric oxide (NO) are considered as putative plant growth regulators that are involved in the regulation of an array of plant's growth and developmental functions under environmental fluctuations when applied at lower concentrations. The possible involvement of NO in SA induced attenuation of high temperature (HT) induced oxidative stress in plants is however, still vague and need to be explored. Therefore, the present study aimed to investigates the biochemical and physiological changes induced by foliar spray of SA and NO combinations to ameliorate HT induced oxidative stress in Lablab purpureus L. Foliar application of combined SA and NO significantly improved relative water content (27.8 %), photosynthetic pigment content (67.2 %), membrane stability (45 %), proline content (1.0 %), expression of enzymatic antioxidants (7.1-18 %) along with pod yield (1.0 %). Heat Shock Factors (HSFs) play crucial roles in plants abiotic stress tolerance, however there structural and functional classifications in L. purpureus L. is still unknown. So, In-silico approach was also used for functional characterization and homology modelling of HSFs in L. purpureus. The experimental findings depicted that combine effect of SA and NO enhances tolerance in HT stressed L. purpureus L. plants by regulating physiological functions, antioxidants, expression and regulation of stress-responsive genes via transcriptional regulation of heat shock factor.
机译:水杨酸(SA)和一氧化氮(NO)被认为是推定的植物生长调节剂,其参与在较低浓度下施用时在环境波动下的植物生长和发育功能的调节。然而,在植物中诱导的高温(HT)诱导的氧化胁迫的可能涉及的可能涉及仍然模糊,需要探索。因此,本研究旨在研究SA的叶面喷雾诱导的生物化学和生理变化,没有改善HT诱导的Lablab Purpureus L.叶面施用SA的索参和相对含水量没有显着改善(27.8%)光合色素含量(67.2%),膜稳定性(45%),脯氨酸含量(1.0%),酶促抗氧化剂的表达(7.1-18%)以及豆荚产率(1.0%)。热休克因子(HSFS)在植物中存在非生物胁迫耐受性的关键作用,然而L. Purpureus L.仍然未知。因此,硅基方法也用于L. purpureus的HSFS的功能表征和同源性建模。通过通过调节热休克因子的转录调节,通过调节生理功能,抗氧化剂,表达和调节,通过调节热休克因子来调节生理功能,抗氧化剂,表达和调节来施用SA和NO增强植株的实验结果。

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