Vegetative buds represent developmental stage of Norway spruce (Picea abies L. Karst.) needles where chloroplast biogenesis and photosynthetic activity begin. We used the analyses of polyphasic chlorophyll a fluorescence rise (OJIP) to compare photosystem II (PSII) functioning in vegetative buds and fully photosynthetically active mature current-year needles. Considerably decreased performance index (PIABS) in vegetative buds compared to needles pointed to their low photosynthetic efficiency. Maximum quantum yield of PSII (Fv/Fm) in buds was slightly decreased but above limited value for functionality indicating that primary photochemistry of PSII is not holdback of vegetative buds photosynthetic activity. The most significant difference observed between investigated developmental stages was accumulation of reduced primary quinine acceptor of PSII (QA-) in vegetative buds, as a result of its limited re-oxidation by passing electrons to secondary quinone acceptor, QB. We suggest that reduced electron transfer from QA- to QB could be the major limiting factor of photosynthesis in vegetative buds.

译文

营养芽代表挪威云杉 (Picea abies L. Karst。) 针的发育阶段,叶绿体生物发生和光合活性开始。我们使用多相叶绿素a荧光上升 (OJIP) 的分析来比较光系统II (PSII) 在营养芽和完全光合作用的成熟当年针中的功能。与针叶相比,营养芽的性能指数 (PIABS) 大大降低,这表明它们的光合作用效率低。芽中PSII的最大量子产量 (Fv/Fm) 略有降低,但高于功能的极限值,这表明PSII的主要光化学作用并不抑制营养芽的光合活性。在研究的发育阶段之间观察到的最显着差异是营养芽中PSII (QA-) 的初级奎宁受体的减少积累,这是由于其通过将电子传递给次级醌受体QB而受到限制的再氧化。我们建议减少从QA到QB的电子转移可能是营养芽光合作用的主要限制因素。

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