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首页> 外文期刊>Journal of Radiation Research and Applied Sciences >Differential physiological and biochemical responses of two Vigna species under enhanced UV-B radiation
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Differential physiological and biochemical responses of two Vigna species under enhanced UV-B radiation

机译:增强UV-B辐射的两种 Vigna 物种的差异生理生化响应

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Differential physiological and biochemical responses of two Vigna spp. i.e. Vigna mungo (L.) and Vigna acontifolia (Jacq.) seedlings exposed to enhanced ultraviolet-B (ambient+supplemental, 280–320?nm) radiation were studied. UV-B radiation accelerated the generation of ROS i.e. superoxide radical (O 2 – ), hydrogen peroxide (H 2 O 2 ) and hydroxyl radical (OH) in leaves, and concomitantly damaging effects on lipid peroxidation, electrolyte leakage and growth in both Vigna spp. were noticed in dose dependent manner, but V. mungo exhibited greater UV-B damaging effects. UV-B stress induced positive response on antioxidants: superoxide dismutase (SOD) and guaiacol peroxidase (GPX) activity, and contents of proline, ascorbic acid, total phenolic contents (TPCs) and total flavonoid contents (TFCs) in leaves of both spp., however, catalase (CAT) exhibited varied activity. The study concludes that substantially higher contents of TPCs and TFCs in epidermal layer, proline and ascorbic acid, and higher CAT activity before and after enhanced UV-B exposure probably attributed greater tolerance to V. acontifolia species, thus exhibited lesser UV-B induced damaging effects on cellular components and growth than that of V. mungo . This study also suggests that V. acontifolia is comparatively resistant to UV-B and thus may be useful for practical cultivation.
机译:两个Vigna spp的差异生理和生化反应。即,研究了暴露于增强的紫外线-B(环境+补充的280-320nm)辐射的Vigna mungo(L.)和Vigna acontifolia(Jacq。)幼苗。 UV-B辐射加速了叶片中ROS的生成,即过氧化物自由基(O 2 –),过氧化氢(H 2 O 2)和羟基自由基(OH)的产生,并同时损害了Vigna对脂质过氧化,电解质渗漏和生长的影响spp。以剂量依赖性的方式观察到草,但是芒草表现出更大的UV-B破坏作用。 UV-B胁迫诱导了对抗氧化剂的正响应:超氧化物歧化酶(SOD)和愈创木酚过氧化物酶(GPX)活性以及脯氨酸,抗坏血酸,总酚含量(TPCs)和总黄酮含量(TFCs)的含量都在两个物种的叶片中。但是,过氧化氢酶(CAT)表现出不同的活性。该研究得出的结论是,在紫外线-B暴露增强前后,表皮层,脯氨酸和抗坏血酸中TPC和TFC的含量明显较高,CAT活性较高,这可能归因于对乌头虫的耐受性更高,因此显示出较少的UV-B诱导的伤害。对V. mungo的细胞成分和生长的影响。这项研究还表明,葡萄球菌对UV-B具有相对的抗性,因此可能对实际栽培有用。

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