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Adaptation of the Photosynthetic Apparatus in Maize Leaves as a Result of Nitrogen Limitation

机译:氮限制的结果对玉米叶片光合装置的适应

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摘要

In maize (Zea mays L., cv Contessa), nitrogen (NO3) limitation resulted in a reduction in shoot growth and photosynthetic capacity and in an increase in the leaf zeaxanthin contents. Nitrogen deficiency had only a small effect on the quantum yield of CO2 assimilation but a large effect on the light-saturated rate of photosynthesis. Linear relationships persisted between the quantum yield of CO2 assimilation and that of photosystem II photochemistry in all circumstances. At high irradiances, large differences in photochemical quenching and nonphotochemical quenching of Chl a fluorescence as well as the ratio of variable to maximal fluorescence (Fv/Fm) were apparent between nitrogen-deficient plants and nitrogen-replete controls, whereas at low irradiances these parameters were comparable in all plants. Light intensity-dependent increases in nonphotochemical quenching were greatest in nitrogen-deficient plants as were the decreases in Fv/Fm ratio. In nitrogen-deficient plants, photochemical quenching decreased with increasing irradiance but remained higher than in controls at high irradiances. Thermal dissipative processes were enhanced as a result of nitrogen deficiency (nonphotochemical quenching was elevated and Fv/Fm was lowered) allowing PSII to remain relatively oxidised even when carbon metabolism was limited via nitrogen limitation.
机译:在玉米中(Zea mays L.,cv Contessa),氮(NO3 -)的限制导致芽生长和光合作用能力的降低以及叶片玉米黄质含量的增加。氮缺乏对CO 2同化的量子产率影响很小,但对光合作用的光饱和速率影响很大。在所有情况下,CO2同化的量子产率与光系统II光化学的量子产率之间都存在线性关系。在高辐照度下,缺氮植物和富氮对照之间的Chl a荧光的光化学猝灭和非光化学猝灭以及可变荧光与最大荧光之比(Fv / Fm)差异很大,而在低辐照度下,这些参数在所有植物中具有可比性。在氮缺乏的植物中,非光化学猝灭的光强度依赖性增加最大,Fv / Fm比的减少也最大。在缺氮植物中,光化学猝灭随辐照度的增加而降低,但在高辐照度下仍高于对照。由于氮缺乏(提高了非光化学猝灭和降低了Fv / Fm),导致了散热过程的增强,即使碳代谢受氮限制而限制了,PSII仍保持相对氧化。

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