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首页> 外文期刊>Environmental Science and Pollution Research >Effects of ozone on the growth and yield of rice (Oryza sativa L.) under different nitrogen fertilization regimes
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Effects of ozone on the growth and yield of rice (Oryza sativa L.) under different nitrogen fertilization regimes

机译:臭氧对不同氮肥制度下水稻(Oryza Sativa L.)生长和产量的影响

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摘要

To examine whether the sensitivity of growth and yield of rice (Oryza sativa L.) to ozone (O-3) varies under different nitrogen (N) fertilization conditions, rice cultivar `Koshihikari' was exposed to O-3 under either standard N (SN) fertilization or no N (NN) fertilization. The rice plants were subjected to three gas treatments (charcoal-filtered air (CF) and O-3 at 1.0 (1.0xO(3)) and 1.5 (1.5xO(3)) times the ambient concentration) in combination with two conditions of N fertilization. At five time points throughout the growth period, plant samples were collected to measure the leaf area and dry mass of each plant organ. At the final harvest, yield, yield components, and harvest index were measured. There was a significant interactive effect of O-3 and N on leaf, stem, root, and whole-plant dry mass at the final harvest. The dry mass of each plant organ and the whole-plant dry mass of rice plants grown in 1.5xO(3) were significantly lower than those in the plants grown in CF and 1.0xO(3) under SN, whereas there were no significant differences in the dry mass among the three gas treatments under NN. Brown rice yield was significantly reduced by the exposure to O-3 under SN, but not under NN. Relative yield loss rate based on the AOT40 (accumulated exposure over a threshold of 40 nmol mol(-1)) was pronounced under SN, whereas relative yield was almost unchanged at different AOT40 levels under NN. We concluded that the sensitivity of growth and yield of rice to O-3 is dependent on N levels in the soil; the exposure to ambient levels of O-3 has a negative effect on rice under SN, but not under NN.
机译:为了检查水稻(ORYZA Sativa L.)对臭氧(O-3)的生长和产率的敏感性在不同的氮气(n)施肥条件下,水稻品种`Koshihikari'在标准n下暴露于O-3( SN)施肥或NO(NN)施肥。与两个条件相结合,将水稻植物(炭过滤空气(CF)和1.0)和1.5(1.0×10(3))倍)的气体处理(1.0×10(3))和1.5(1.5xO(3)))进行施肥。在整个生长期的五个时间点,收集植物样品以测量每种植物器官的叶面积和干燥质量。测量最终收获,产量,产量组分和收获指数。在最终收获的叶子,茎,根部和全植物干肿块上存在显着的互动效果。每种植物器官的干料和整个植物干含量在1.5xo(3)中生长的水稻植物的植物均显着低于SN的CF和1.0xo(3)中的植物中的植物,而没有显着差异在NN下的三种气体处理中的干肿块中。通过在SN下暴露于O-3,糙米产量显着降低,但在NN下没有。在Sn下发音,基于AOT40的相对屈服损失率(在40nmolmol(-1)的阈值上累积暴露),而在NN下的不同AOT40水平上几乎不变。我们得出结论,水稻的生长和产量对O-3的敏感性取决于土壤中的氮;暴露于O-3的环境水平对SN下的水稻具有负面影响,但不在NN下。

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