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首页> 外文期刊>Journal of Plant Nutrition >EFFECTS OF NITROGEN DEFICIENCY ON LEAF CHLOROPHYLL FLUORESCENCE PARAMETERS IN TWO OLIVE TREE CULTIVARS 'MESKI' AND 'KORONEIKI'
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EFFECTS OF NITROGEN DEFICIENCY ON LEAF CHLOROPHYLL FLUORESCENCE PARAMETERS IN TWO OLIVE TREE CULTIVARS 'MESKI' AND 'KORONEIKI'

机译:氮素缺乏对两个橄榄树品种“ MESKI”和“ KORONEIKI”叶片叶绿素荧光参数的影响

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Effects of nitrogen (N) deficiency on photosynthetic carbon dioxide (CO2) assimilation, photosystem II (PSII) photochemistry and photoinhibition were investigated in young trees of two olive cultivars Meski' and Koroneiki' grown in a greenhouse under controlled conditions. The trees were subjected to four different levels of N supply. N deficient trees had a significantly smaller CO2 assimilatory capacity, but showed little changes in maximum quantum efficiency of PSII photochemistry. However, modifications in PSII photochemistry induced by N deficiency were observed. This was reflected in decreases in quantum yield of PSII electron transport (phi(PSII)) and efficiency of excitation energy capture by open PSII reaction centres (F-v'/F-m') and in an increase in non-photochemical quenching (NPQ). These results suggest that modifications in PSII photochemistry might be a mechanism to down-regulate photosynthetic electron transport so that production of adenosine triphosphate (ATP) and nicotinamide adenine dinucleotide phosphate (NADPH). would be in equilibrium with the decreased demand in the Calvin cycle in the N deficient trees. Therefore, both CO2 assimilation rate and total electron flow (J(t)) with its compound electron flows devoted to either carboxylation (J(c)) or oxygenation (J(o)) can be considered as useful tools to assess the N nutrition status of the trees. Clear relationships were found between A(max) and the nitrogen nutrition index (NNI) on the one hand, and between J(t) and NNI on the other hand. The results demonstrate that Meski' is more efficient than Koroneiki' when subjected to N deficiency.
机译:研究了在受控条件下在温室中种植的两个橄榄栽培品种Meski'和Koroneiki'的幼树中氮(N)缺乏对光合二氧化碳(CO2)同化,光系统II(PSII)光化学和光抑制的影响。树木受到四种不同水平的氮供应。 N缺乏的树木的CO2同化能力明显较小,但PSII光化学的最大量子效率几乎没有变化。然而,观察到由氮缺乏引起的PSII光化学的修饰。这反映在PSII电子传输的量子产率降低(phi(PSII))和开放PSII反应中心捕获激发能的效率(F-v'/ F-m')以及非光化学猝灭的增加( NPQ)。这些结果表明PSII光化学中的修饰可能是下调光合作用电子传递的机制,从而产生三磷酸腺苷(ATP)和烟酰胺腺嘌呤二核苷酸磷酸(NADPH)。在N个亏缺树中,加尔文循环中的需求减少将与之平衡。因此,CO2同化率和总电子流(J(t))以及其复合电子流分别用于羧化(J(c))或氧合(J(o))均可被视为评估N营养的有用工具树木的状况。一方面发现A(max)与氮营养指数(NNI)之间存在明显的关系,另一方面,发现J(t)与NNI之间存在明显的关系。结果表明,当遭受氮缺乏时,Meski'比Koroneiki'更有效。

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