Singh Suruchi, Agrawal Shashi B, Agrawal Madhoolika
Laboratory of Air Pollution and Global Climate Change, Department of Botany, Banaras Hindu University, Varanasi-221005, India.
Funct Plant Biol. 2015 Nov;42(11):1045-1056. doi: 10.1071/FP15003.
The effects of elevated UV-B (280-315nm) were assessed on nitrogen metabolism, carbohydrate pool, total phenolics, photosynthetic pigments, UV-B absorbing compounds, variables related to oxidative stress, biomass and yield of pea plants grown under various levels of NPK. The NPK levels assayed were: background NPK level (F0); recommended NPK (F1) and recommended NK+1.5×recommended P (F2) and the UV-B levels were: control (C) and elevated (T). The responses of T plants varied with different combinations of NPK. Yield reduced under elevated UV-B at all NPK levels with maximum reduction in F0T and minimum reduction in F1T. Leghaemoglobin content was reduced under elevated UV-B at all NPK levels. Maximum increase in malondialdehyde content recorded in F0T plants corresponded with higher superoxide and hydrogen peroxide contents. Nitrite reductase activity decreased significantly under UV-B at all NPK levels, but nitrate reductase activity increased significantly in F1T and F2T. Maximum reduction in C:N ratio of leaves in F2T plants suggests competition between sucrose synthesis and nitrate reduction under additional P level. The study concludes that application of recommended level of NPK caused least changes in N metabolism leading to minimum yield losses due to elevated UV-B stress.
研究了增强型UV-B(280-315纳米)对在不同氮磷钾水平下生长的豌豆植株的氮代谢、碳水化合物库、总酚类、光合色素、UV-B吸收化合物、与氧化应激相关的变量、生物量和产量的影响。测定的氮磷钾水平为:背景氮磷钾水平(F0);推荐氮磷钾水平(F1)和推荐氮钾水平+1.5倍推荐磷水平(F2),UV-B水平为:对照(C)和增强型(T)。T处理植株的反应因氮磷钾的不同组合而异。在所有氮磷钾水平下,增强型UV-B均导致产量降低,其中F0T处理的产量降幅最大,F1T处理的产量降幅最小。在所有氮磷钾水平下,增强型UV-B均使豆血红蛋白含量降低。F0T处理植株中丙二醛含量的最大增幅与超氧化物和过氧化氢含量的升高相对应。在所有氮磷钾水平下,UV-B处理均使亚硝酸还原酶活性显著降低,但F1T和F2T处理的硝酸还原酶活性显著升高。F2T处理植株叶片碳氮比的最大降幅表明,在额外施磷水平下,蔗糖合成与硝酸盐还原之间存在竞争。研究得出结论,施用推荐水平的氮磷钾导致氮代谢变化最小,从而使因增强型UV-B胁迫导致的产量损失最小。