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Effect of nitrogen-deficiency on midday photoinhibition in flag leaves of different rice (Oryza sativa L.) cultivars

机译:缺氮对不同水稻品种剑叶午间光抑制的影响

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摘要

Effects of nitrogen (N)-deficiency on midday photoinhibition in flag leaves were compared between two contrastive Japanese rice cultivars, a traditional japonica cultivar with low yield, cv. Shirobeniya (SRB), and a japonica-indica intermediate type with high yield, cv. Akenohoshi (AKN). Both cultivars were grown under high-N and low-N conditions. At midday, low-N supply resulted in more intensive reductions in net photosynthetic rate, stomatal conductance, maximal quantum yield of photosystem II (PSII) and quantum yield of PSII electron transport in SRB than in AKN, indicating that SRB was more strongly photoinhibited than AKN under low-N condition. At midday, the low-N plants of two cultivars showed higher superoxide dismutase (SOD) activities than the high-N plants. However, ascorbate peroxidase (APX) activity was maintained in AKN but significantly decreased in SRB under low-N condition (N-deficiency). In contrast, hydrogen peroxide (H2O2) content in SRB significantly increased under low-N condition, indicating that the susceptibility to midday photoinhibition in the low-N plants of SRB is related to the increased H2O2 accumulation. It is suggested that the midday depression in photosynthesis may be a result of oxidative stress occurring in the low-N plants in which antioxidant capacity is not enough to cope with the generation of H2O2. Therefore, H2O2-scavenging capacity could be an important factor in determining the cultivar difference of midday photoinhibition in flag leaves of rice under low-N condition.
机译:比较了两个对比的日本水稻品种(传统的低产量粳稻品种)的氮(N)缺乏对旗叶午间光抑制的影响。 Shirobeniya(SRB)和高产的粳稻-ica中间品种,简历。 Akenohoshi(AKN)。两个品种都在高氮和低氮条件下生长。在午间,低氮供应导致SRB的净光合速率,气孔导度,光系统II(PSII)的最大量子产率和PSII电子传递的量子产率比AKN更强烈地降低,这表明SRB的光抑制比低N条件下的AKN。在午间,两个品种的低氮植物显示出比高氮植物更高的超氧化物歧化酶(SOD)活性。但是,在低氮条件下(N缺乏),AKN中抗坏血酸过氧化物酶(APX)的活性得以维持,而SRB中的抗坏血酸过氧化物酶的活性则显着下降。相反,在低氮条件下,SRB中过氧化氢(H 2 O 2 )的含量显着增加,表明低氮植物对中午光抑制的敏感性。 SRB与H 2 O 2 积累的增加有关。有人认为,光合作用的午后下降可能是由于低氮植物的抗氧化能力不足以应付H 2 O 2产生的氧化胁迫的结果。 。因此,在低氮条件下,H 2 O 2 清除能力可能是决定水稻旗叶中午光抑制品种差异的重要因素。

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