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苹果叶片中光系统II效率与二氧化碳同化量子产率之间的关系不受氮含量的影响。

The relationship between photosystem II efficiency and quantum yield for CO(2) assimilation is not affected by nitrogen content in apple leaves.

作者信息

Cheng L, Fuchigami L H, Breen P J

机构信息

Department of Horticulture, 134A Plant Science Building, Cornell University, Ithaca, NY 14853-4203, USA.

出版信息

J Exp Bot. 2001 Sep;52(362):1865-72. doi: 10.1093/jexbot/52.362.1865.

Abstract

Bench-grafted Fuji/M.26 apple (Malus domestica Borkh.) trees were fertigated with different concentrations of nitrogen by using a modified Hoagland's solution for 45 d. CO(2) assimilation and photosystem II (PSII) quantum efficiency in response to incident photon flux density (PFD) were measured simultaneously in recent fully expanded leaves under low O(2) (2%) and saturated CO(2) (1300 micromol mol(-1)) conditions. A single curvilinear relationship was found between true quantum yield for CO(2) assimilation and PSII quantum efficiency for leaves with a wide range of leaf N content. The relationship was linear up to a quantum yield of approximately 0.05 mol CO(2) mol(-1) quanta. It then became curvilinear with a further rise in quantum yield in response to decreasing PFD. This relationship was subsequently used as a calibration curve to assess the rate of non-cyclic electron transport associated with Rubisco and the partitioning of electron flow between CO(2) assimilation and photorespiration in different N leaves in response to intercellular CO(2) concentration (C(i)) under normal O(2) conditions. Both the rate of non-cyclic electron flow and the rate of electron flow to CO(2) or O(2) increased with increasing leaf N at any given C(i). The percentage of non-cyclic electron flow to CO(2) assimilation, however, remained the same regardless of leaf N content. As C(i) increased, the percentage of non-cyclic electron flow to CO(2) assimilation increased. In conclusion, the relationship between PSII quantum efficiency and quantum yield for CO(2) assimilation and the partitioning of electron flow between CO(2) assimilation and photorespiration are not affected by N content in apple leaves.

摘要

采用改良的霍格兰氏溶液,对盆栽嫁接的富士/M.26苹果树(苹果属)施以不同浓度的氮素,处理45天。在低氧(2%)和饱和二氧化碳(1300 μmol mol⁻¹)条件下,同时测定近期完全展开叶片中,响应入射光量子通量密度(PFD)的二氧化碳同化和光系统II(PSII)量子效率。对于叶氮含量范围较广的叶片,发现二氧化碳同化的真实量子产率与PSII量子效率之间存在单一曲线关系。在量子产率约为0.05 mol CO₂ mol⁻¹量子之前,该关系呈线性。随着量子产率因PFD降低而进一步升高,关系变为曲线。随后,该关系被用作校准曲线,以评估与核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco)相关的非循环电子传递速率,以及在正常氧气条件下,不同氮素叶片中,响应细胞间二氧化碳浓度(Ci)时,电子流在二氧化碳同化和光呼吸之间的分配。在任何给定的Ci下,非循环电子流速率和流向二氧化碳或氧气的电子流速率均随叶片氮含量增加而增加。然而,无论叶片氮含量如何,流向二氧化碳同化的非循环电子流百分比保持不变。随着Ci增加,流向二氧化碳同化的非循环电子流百分比增加。总之,PSII量子效率与二氧化碳同化量子产率之间的关系,以及电子流在二氧化碳同化和光呼吸之间的分配不受苹果叶片氮含量的影响。

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