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Impact of Foliar Application of Chitosan Dissolved in Different Organic Acids on Isozymes Protein Patterns and Physio-Biochemical Characteristics of Tomato Grown under Salinity Stress

机译:壳聚糖溶解在不同有机酸中的叶片应用对盐度胁迫下番茄的同工酶蛋白质模式和生理学特性的影响

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摘要

In this study, the anti-stress capabilities of the foliar application of chitosan, dissolved in four different organic acids (acetic acid, ascorbic acid, citric acid and malic acid) have been investigated on tomato (Solanum lycopersicum L.) plants under salinity stress (100 mM NaCl). Morphological traits, photosynthetic pigments, osmolytes, secondary metabolites, oxidative stress, minerals, antioxidant enzymes activity, isozymes and protein patterns were tested for potential tolerance of tomato plants growing under salinity stress. Salinity stress was caused a reduction in growth parameters, photosynthetic pigments, soluble sugars, soluble proteins and potassium (K+) content. However, the contents of proline, ascorbic acid, total phenol, malondialdehyde (MDA), hydrogen peroxide (H2O2), sodium (Na+) and antioxidant enzyme activity were increased in tomato plants grown under saline conditions. Chitosan treatments in any of the non-stressed plants showed improvements in morphological traits, photosynthetic pigments, osmolytes, total phenol and antioxidant enzymes activity. Besides, the harmful impacts of salinity on tomato plants have also been reduced by lowering MDA, H2O2 and Na+ levels. Chitosan treatments in either non-stressed or stressed plants showed different responses in number and density of peroxidase (POD), polyphenol oxidase (PPO) and superoxide dismutase (SOD) isozymes. NaCl stress led to the diminishing of protein bands with different molecular weights, while they were produced again in response to chitosan foliar application. These responses were varied according to the type of solvent acid. It could be suggested that foliar application of chitosan, especially that dissolved in ascorbic or citric acid, could be commercially used for the stimulation of tomato plants grown under salinity stress.
机译:在本研究中,已经在盐度应力下研究了盐度(Solanum Lycopersicum L.)植物中脱壳多糖溶解在四种不同的有机酸(乙酸,抗坏血酸,柠檬酸和苹果酸,柠檬酸和苹果酸)的抗应力能力(100 mm NaCl)。测试形态特征,光合色素,渗透性,次级代谢物,氧化应激,矿物质,抗氧化酶活性,同工酶和蛋白质图案,用于盐度胁迫下生长的番茄植物的潜能耐受性。盐度应力导致生长参数,光合色素,可溶性糖,可溶性蛋白质和钾(K +)含量的降低。然而,在盐条件下生长的番茄植物中,脯氨酸,抗坏血酸,总苯酚,丙二醛(MDA),过氧化氢(H 2 O 2),钠(Na +)和抗氧化酶活性的含量增加。在任何非压力植物中的壳聚糖治疗表明形态特征,光合色素,渗透物,总酚和抗氧化酶活性的改善。此外,通过降低MDA,H 2 O 2和Na +水平,还降低了盐度对番茄植物的有害影响。在非应激或压力植物中的壳聚糖处理显示出过氧化物酶(POD),多酚氧化酶(PPO)和超氧化物歧化酶(SOD)同工酶的数量和密度的不同反应。 NaCl胁迫导致蛋白质带的蛋白质带递减,同时响应壳聚糖叶面施用而再次产生。这些反应根据溶剂酸的类型而变化。有可能表明壳聚糖的叶面施用,尤其是溶解在抗坏血酸或柠檬酸中,可以商购用于刺激在盐度应力下生长的番茄植物。

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