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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Differential impact of some metal(loid)s on oxidative stress, antioxidant system, sulfur compounds, and protein profile of Indian mustard (Brassica junceaL.)
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Differential impact of some metal(loid)s on oxidative stress, antioxidant system, sulfur compounds, and protein profile of Indian mustard (Brassica junceaL.)

机译:一些金属(诱发)对印度芥末(Brassica Junceal)氧化应激,抗氧化体系,硫化合物和蛋白质剖面的差异影响(Brassica Junceal。)

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摘要

Levels of arsenic (As), chromium (Cr), and copper (Cu) are increasing in the soils worldwide. Such contaminants cause toxicity in the plant systems which adversely affects growth and productivity. The objective of the present investigation was to elucidate individual and combined effects of As, Cr, and Cu (100 mu M each) stress in metal hyper-accumulator plant Indian mustard (Brassica junceaL.), exposed for a week. The highest accumulation was in the roots and in decreasing order viz. Cu > As > Cr. The magnitude of oxidative stress was maximal in combined stress, followed by As, Cr, and then Cu stress. Glutathione in conjunction with glutathione reductase, glutathione peroxidase, and glutathione S-transferase increased in all set of stress treatments, notably when exposed to Cr alone. In addition, the level of sulfur-rich compounds like cysteine, phytochelatins, and non-protein thiols increased under each stress indicating efficient coupling of the enzyme system and sulfur-containing compounds during stress conditions. The highest tolerance or growth index of plants was recorded for Cu. Protein profiling of leaf tissues showed modulation of protein patterns in each stress. Mediator of RNA polymerase II transcription subunit 1 isoform X1, RuBisCO (large subunit), and ribosomal protein S3 proteins were more abundant under Cr and Cu stress. Zinc finger A20/AN1 domain-containing stress-associated protein 5-like protein was more abundant under Cu stress. HSP (15.7 kDa) and autophagy protein 5-like were in higher abundance under As and combined stress. Our results suggest that Indian mustard has a differential mode of defense against a particular stressor at the level of protein expression profile.
机译:砷(AS),铬(Cr)和铜(Cu)的水平在全世界的土壤中增加。这种污染物导致植物系统中的毒性,这对增长和生产力产生不利影响。本调查的目的是阐明金属超蓄电池植物印度芥末(Brassica Junceal)的含量,Cr和Cu(每次)压力的个体和综合影响,暴露一周。最高累积在根中,并降低了秩序viz。 Cu> As> Cr。氧化应激的幅度在组合应力中最大,其次是Cr,然后Cu应胁迫。谷胱甘肽与谷胱甘肽还原酶,谷胱甘肽过氧化物酶和谷胱甘肽S-转移酶一起在所有胁迫处理中增加,特别是当暴露于Cr单独时。此外,在每次应力下,在应力条件下表明酶系统和含硫化合物的每种应力下,富含富含硫化物的化合物和非蛋白质硫醇的水平增加。记录了植物的最高耐受性或增长指数的铜。叶组织的蛋白质分析显示每种应力中的蛋白质模式的调节。 RNA聚合酶II转录亚基1同种型X1,Rubisco(大亚基)和核糖体蛋白S3蛋白在Cr和Cu应力下更丰富的介质。锌指A20 / An1含有域的应力相关蛋白5样蛋白在Cu应力下更加丰富。 HSP(15.7kDa)和自噬蛋白5样在较高的高度下较高,胁迫较高。我们的研究结果表明,印度芥末对蛋白质表达谱的水平的特定压力源具有差异模式。

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