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Influence of salinity and Fusarium oxysporum as the stress factors on morpho-physiological and yield attributes in onion

机译:盐度和尖孢镰刀菌作为胁迫因子对洋葱形态生理和产量属性的影响

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摘要

Occurrence of salt stress with the soil borne fungus Fusarium oxysporum f. sp. cepa (FOC) are potential threat to the crop yield. This investigation reports effect of the concurrent stresses (salinity and FOC) on morpho-physiological and yield attributes in onion. In vitro growth tests revealed proliferation of FOC biomass at different levels of salinity (2–8 dS m−1). A greenhouse pot experiment with the proposed levels of salinity (2.5, 3.5 and 4.5 dS m−1) in combination with FOC inoculation showed more drastic effect of combined stress on disease severity, plant growth and bulb as compared to the individual stress. In general, osmotic potential, total chlorophyll content, membrane stability index and total protein content of the leaf were decreased, while total phenolics were increased due to the given stress/s. Total sugar content decreased due to effect of the  individual stress of FOC, while it increased under the individual stress of salinity and in combination with FOC. FOC infection did not change activity of polyphenol oxidase (PPO), while it improved peroxidase (POX) and phenylalanine ammonia lyase (PAL) and decreased catalase (CAT) activity. Activities of POX and PPO increased, however PAL and CAT declined under individual as well as simultaneous stress of salinity  and  FOC. The research work concluded that FOC will be a more severe disease threat for onion cultivation in saline soils.
机译:土生真菌镰刀菌f。 sp。 cepa(FOC)是对作物产量的潜在威胁。这项研究报告了同时存在的压力(盐度和FOC)对洋葱形态生理和产量属性的影响。体外生长试验表明,在不同盐度下(2-8 dS m -1 )FOC生物量的增殖。与建议的盐度水平(2.5、3.5和4.5dS m -1 )结合FOC接种的温室盆栽试验显示,与胁迫相比,组合胁迫对病害严重程度,植物生长和鳞茎的影响更大对个人的压力。通常,由于给定的压力,叶片的渗透势,总叶绿素含量,膜稳定性指数和总蛋白含量降低,而总酚含量增加。总糖含量由于FOC的单独胁迫作用而降低,而在盐分的单独胁迫下以及与FOC结合时总糖含量增加。 FOC感染并没有改变多酚氧化酶(PPO)的活性,而改善了过氧化物酶(POX)和苯丙氨酸氨裂合酶(PAL)并降低了过氧化氢酶(CAT)活性。 POX和PPO的活性增加,但是在盐分和CFOC同时受胁迫的情况下,PAL和CAT下降。研究工作得出结论,FOC将对盐渍土壤中的洋葱栽培造成更严重的疾病威胁。

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