Choudhary Krishna Kumar, Agrawal Shashi Bhushan
Laboratory of Air Pollution and Global Climate Change, Department of Botany, Banaras Hindu University, Varanasi, India.
Photochem Photobiol. 2016 Jan-Feb;92(1):134-43. doi: 10.1111/php.12544. Epub 2015 Dec 12.
Current scenarios under global climate change envisage a considerable increase in ultraviolet B (UV-B) radiation in near future which may affect the productivity and yield quality of major agricultural crops. Present investigation was conducted to examine various defense strategies adopted against elevated UV-B (ambient + 7.2 kJ m-(2) day-(1) ) and their impact on seed nutrients, content and quality of oil including fatty acid profile of two soybean cultivars (JS-335 and PS-1042). Elevated UV-B (eUV-B) exposure leads toward higher unsaturation of fatty acids and changes in other oil quality parameters (acid, iodine and saponification value) indicated that eUV-B favored the synthesis of long-chain fatty acids with fewer carboxylic acid groups, making the oil rancid, with undesirable flavor and low nutritional value. The effect was more severe in JS-335 as compared to PS-1042. Negative effects were also seen on nutrients of soybean seeds. Adverse effects resulted due to insufficient quenching of ROS (superoxide radical and hydrogen peroxide) by the defense system and thus unable to overcome the imposed oxidative stress. Credit of better performance by PS-1042 against eUV-B may be given to the adoption of efficient defense strategies like higher wax deposition, increase in lignin and flavonoids (quercetin and kaempferol) contents.
当前全球气候变化的情形预计在不久的将来紫外线B(UV-B)辐射会显著增加,这可能会影响主要农作物的生产力和产量质量。开展本研究以考察针对增强的UV-B(环境水平 + 7.2千焦·平方米⁻²·天⁻¹)所采取的各种防御策略及其对两种大豆品种(JS-335和PS-1042)种子营养成分、油脂含量和质量(包括脂肪酸谱)的影响。增强的UV-B(eUV-B)照射导致脂肪酸的不饱和度更高,其他油脂质量参数(酸值、碘值和皂化值)发生变化,这表明eUV-B有利于合成羧酸基团较少的长链脂肪酸,使油脂酸败,产生不良风味且营养价值低。与PS-1042相比,JS-335受到的影响更严重。大豆种子的营养成分也出现了负面影响。防御系统对活性氧(超氧自由基和过氧化氢)的淬灭不足导致了不利影响,因此无法克服所施加的氧化应激。PS-1042在应对eUV-B时表现更好,这可能归功于其采用了高效的防御策略,如更高的蜡质沉积、木质素和类黄酮(槲皮素和山奈酚)含量的增加。