锌与其他肥料的串扰支撑了番茄植株对早疫病的互作效应和抗性

Z. A. Awan, A. Shoaib, K. Khan
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引用次数: 23

摘要

本研究旨在评价锌(Zn)与其他营养物质对番茄早疫病的综合防治效果。本试验采用完全随机重复设计,在推荐水平基础上施用氮磷钾(NPK)和微量元素镁(Mg)、硼(B),双侧配施锌(2.5和5.0 Mg /kg)。结果表明,锌与Mg或B的相互作用通常是无效的,在某些情况下是协同作用的。锌与氮磷钾产量协同效应,因此EB病得到了显著的控制(发病率为25%,严重程度指数为13%),这导致了一个有效的信号网络,相互控制养分的获取和利用,促进了番茄植株的生长发育。因此,代谢途径机制的串串和趋同导致番茄植株对病原菌产生抗性,并显著提高光合色素、总酚类物质、总蛋白含量和防御相关酶[超氧化物歧化酶(SOD)、过氧化氢酶(CAT)、过氧化物酶(POX)、多酚氧化酶(PPO)和苯丙氨酸解氨酶(PAL)]。总酚类物质和PAL活性的显著增加表明它们对水杨酸具有加性作用,这可能有助于植物系统地诱导对病原体的抗性。综上所述,锌(5.0 mg/kg)与氮磷钾(NPK)互作能显著控制EB病,对番茄生长和生理生化指标均有显著影响,因此锌+氮磷钾(Zn + NPK)是一种简单、可靠的防治番茄交替病的方法。
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Crosstalk of Zn in Combination with Other Fertilizers Underpins Interactive Effects and Induces Resistance in Tomato Plant against Early Blight Disease
The present study was undertaken to evaluate the integrated effect of zinc (Zn) with other nutrients in managing early blight (EB) disease in tomato. A pot experiment was carried out with basal application of the recommended level of macronutrients [nitrogen, phosphorus and potassium (NPK)] and micronutrients [magnesium (Mg) and boron (B)] in bilateral combination with Zn (2.5 and 5.0 mg/kg) in a completely randomized deigned in replicates. Results revealed that interactive effect of Zn with Mg or B was often futile and in some cases synergistic. Zn with NPK yield synergistic outcome, therefore EB disease was managed significantly (disease incidence: 25% and percent severity index: 13%), which resulted in an efficient signaling network that reciprocally controls nutrient acquisition and uses with improved growth and development in a tomato plant. Thus, crosstalk and convergence of mechanisms in metabolic pathways resulted in induction of resistance in tomato plant against a pathogen which significantly improved photosynthetic pigment, total phenolics, total protein content and defense-related enzymes [superoxide dismutase (SOD), catalase (CAT), peroxidase (POX), polyphenol oxidase (PPO) and phenylalanine ammonia-lyase (PAL)]. The tremendous increase in total phenolics and PAL activity suggesting their additive effect on salicylic acid which may help the plant to systemically induce resistance against pathogen attack. It was concluded that interactive effect of Zn (5.0 mg/kg) with NPK significantly managed EB disease and showed positive effect on growth, physiological and biochemical attributes therefor use of Zn + NPK is simple and credible efforts to combat Alternaria stress in tomato plants.
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