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Zinc and Paclobutrazol Mediated Regulation of Growth Upregulating Antioxidant Aptitude and Plant Productivity of Pea Plants under Salinity

机译:锌和紫杉醇唑介导的生长调节上调盐度豌豆植物的抗氧化能力和植物生产力

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摘要

Soil salinity is the main obstacle to worldwide sustainable productivity and food security. Zinc sulfate (Zn) and paclobutrazol (PBZ) as a cost-effective agent, has multiple biochemical functions in plant productivity. Meanwhile, their synergistic effects on inducing salt tolerance are indecisive and not often reported. A pot experiment was done for evaluating the defensive function of Zn (100 mg/L) or PBZ (200 mg/L) on salt (0, 50, 100 mM NaCl) affected pea plant growth, photosynthetic pigment, ions, antioxidant capacity, and yield. Salinity stress significantly reduces all growth and yield attributes of pea plants relative to nonsalinized treatment. This reduction was accompanied by a decline in chlorophyll, nitrogen, phosphorus, and potassium (K+), the ratio between K+ and sodium (Na+), as well as reduced glutathione (GSH) and glutathione reductase (GR). Alternatively, salinity increased Na+, carotenoid (CAR), proline (PRO), ascorbic acid (AsA), superoxide dismutase (SOD), catalase (CAT), and ascorbate peroxidase (APX) over nonsalinized treatment. Foliar spraying with Zn and PBZ under normal condition increased plant growth, nitrogen, phosphorus, potassium, K+/Na+ ratio, CAR, PRO, AsA, GSH, APX, GR, and yield and its quality, meanwhile decreased Na+ over nonsprayed plants. Application of Zn and PBZ counteracted the harmful effects of salinity on pea plants, by upregulating the antioxidant system, ion homeostasis, and improving chlorophyll biosynthesis that induced plant growth and yield components. In conclusion, Zn plus PBZ application at 30 and 45 days from sowing offset the injuries of salinity on pea plant growth and yield by upregulating the antioxidant capacity and increasing photosynthetic pigments.
机译:土壤盐度是全球可持续生产力和粮食安全的主要障碍。硫酸锌(Zn)和PACLOBUTRAZOL(PBZ)作为成本效益的药剂,具有多种植物生产率的生物化学功能。同时,它们对诱导耐盐性的协同作用是犹豫不决的,并且通常报道。进行罐实验,用于评估Zn(100mg / L)或PBZ(200mg / L)对盐(0,50,100mM NaCl)受影响的豌豆植物生长,光合色素,离子,抗氧化能力的抗氧化能力的防御功能和产量。盐度应力显着降低了豌豆植物相对于非alinized治疗的所有生长和产量属性。这种减少伴随着叶绿素,氮,磷和钾(K +)的下降,K +和钠(Na +)之间的比例,以及还原的谷胱甘肽(GSH)和谷胱甘肽还原酶(GR)。或者,盐度增加Na +,类胡萝卜素(汽车),脯氨酸(Pro),抗坏血酸(ASA),超氧化物歧化酶(SOD),过氧化氢酶和抗坏血酸过氧化物酶(APX)在非alinized治疗中。在正常情况下,用Zn和PBZ喷涂植物生长增加,氮,磷,钾,K + / Na +比,汽车,Pro,ASA,GSH,APX,GR和产量及其质量,同时降低了Nonsprayed植物。 Zn和PBZ的应用抵消了盐度对豌豆植物的有害影响,通过上调抗氧化系统,离子稳态,改善诱导植物生长和产量组分的叶绿素生物合成。总之,Zn加上PBZ应用在播种抵消豌豆植物生长的盐度损伤,并通过上调抗氧化容量和增加光合色素来抵消盐度损伤。

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