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叶绿体ndhB基因失活导致光合作用对抗霉素A的敏感性增加。NADH脱氢酶复合体参与围绕光系统I的循环电子流的证据。

Increased sensitivity of photosynthesis to antimycin A induced by inactivation of the chloroplast ndhB gene. Evidence for a participation of the NADH-dehydrogenase complex to cyclic electron flow around photosystem I.

作者信息

Joët T, Cournac L, Horvath E M, Medgyesy P, Peltier G

机构信息

Commissariat à l'Energie Atomique, Cadarache, Laboratoire d'Ecophysiologie de la Photosynthèse, Département d'Ecophysiologie Végétale et Microbiologie, Bât. 161, F-13108 Saint-Paul-lez-Durance, France.

出版信息

Plant Physiol. 2001 Apr;125(4):1919-29. doi: 10.1104/pp.125.4.1919.

Abstract

Tobacco (Nicotiana tabacum var Petit Havana) ndhB-inactivated mutants (ndhB-) obtained by plastid transformation (E.M. Horvath, S.O. Peter, T. Joët, D. Rumeau, L. Cournac, G.V. Horvath, T.A. Kavanagh, C. Schäfer, G. Peltier, P. MedgyesyHorvath [2000] Plant Physiol 123: 1337-1350) were used to study the role of the NADH-dehydrogenase complex (NDH) during photosynthesis and particularly the involvement of this complex in cyclic electron flow around photosystem I (PSI). Photosynthetic activity was determined on leaf discs by measuring CO2 exchange and chlorophyll fluorescence quenchings during a dark-to-light transition. In the absence of treatment, both non-photochemical and photochemical fluorescence quenchings were similar in ndhB- and wild type (WT). When leaf discs were treated with 5 microM antimycin A, an inhibitor of cyclic electron flow around PSI, both quenchings were strongly affected. At steady state, maximum photosynthetic electron transport activity was inhibited by 20% in WT and by 50% in ndhB-. Under non-photorespiratory conditions (2% O2, 2,500 microL x L(-1) CO2), antimycin A had no effect on photosynthetic activity of WT, whereas a 30% inhibition was observed both on quantum yield of photosynthesis assayed by chlorophyll fluorescence and on CO2 assimilation in ndhB-. The effect of antimycin A on ndhB- could not be mimicked by myxothiazol, an inhibitor of the mitochondrial cytochrome bc1 complex, therefore showing that it is not related to an inhibition of the mitochondrial electron transport chain but rather to an inhibition of cyclic electron flow around PSI. We conclude to the existence of two different pathways of cyclic electron flow operating around PSI in higher plant chloroplasts. One of these pathways, sensitive to antimycin A, probably involves ferredoxin plastoquinone reductase, whereas the other involves the NDH complex. The absence of visible phenotype in ndhB- plants under normal conditions is explained by the complement of these two pathways in the supply of extra-ATP for photosynthesis.

摘要

通过质体转化获得的烟草(Nicotiana tabacum var Petit Havana)ndhB基因失活突变体(ndhB-)(E.M. 霍瓦特、S.O. 彼得、T. 乔埃特、D. 鲁莫、L. 库尔纳克、G.V. 霍瓦特、T.A. 卡瓦纳、C. 舍费尔、G. 佩尔捷、P. 梅吉耶西霍瓦特 [2000] 《植物生理学》123: 1337 - 1350)被用于研究NADH脱氢酶复合体(NDH)在光合作用中的作用,特别是该复合体在围绕光系统I(PSI)的循环电子流中的参与情况。通过在暗 - 光转换期间测量叶圆片的二氧化碳交换和叶绿素荧光猝灭来测定光合活性。在未处理的情况下,ndhB-突变体和野生型(WT)的非光化学和光化学荧光猝灭情况相似。当叶圆片用5微摩尔的抗霉素A(一种围绕PSI的循环电子流抑制剂)处理时,两种猝灭都受到强烈影响。在稳态下,WT中最大光合电子传递活性被抑制20%,而ndhB-中被抑制50%。在非光呼吸条件下(2% O2,250微升×升-1 CO2),抗霉素A对WT的光合活性没有影响,而在ndhB-中,通过叶绿素荧光测定的光合作用量子产率和二氧化碳同化均受到30%的抑制。抗霉素A对ndhB-的影响不能被线粒体细胞色素bc1复合体抑制剂粘噻唑模拟,因此表明这与线粒体电子传递链的抑制无关,而是与围绕PSI的循环电子流的抑制有关。我们得出结论,在高等植物叶绿体中存在两种围绕PSI运行的不同循环电子流途径。其中一种途径对抗霉素A敏感,可能涉及铁氧还蛋白 - 质体醌还原酶,而另一种途径涉及NDH复合体。在正常条件下ndhB-植物没有可见表型,这是由于这两种途径在为光合作用提供额外ATP方面的互补作用。

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