Department of Biology, Faculty of Science, Hacettepe University, 06800, Ankara, Turkey.
AgroBioSciences Division, University Mohammed VI Polytechnic (UM6P), Lot-660 Hay Moulay Rachid, 43150, Ben Guerir, Morocco.
Photosynth Res. 2018 Jun;136(3):291-301. doi: 10.1007/s11120-017-0463-y. Epub 2017 Nov 9.
The main objective of this study was to evaluate the effects of salt stress on the photosynthetic electron transport chain using two chickpea lines (Cicer arietinum L.) differing in their salt stress tolerance at the germination stage (AKN 87 and AKN 290). Two weeks after sowing, seedlings were exposed to salt stress for 2 weeks and irrigated with 200 ml of 200 mM NaCl every 2 days. The polyphasic OJIP fluorescence transient and the 820-nm transmission kinetics (photosystem I) were used to evaluate the effects of salt stress on the functionality of the photosynthetic electron transport chain. It was observed that a signature for salt stress was a combination of a higher J step (V), a smaller IP amplitude, and little or no effect on the primary quantum yield of PSII (φ). We observed for AKN 290 a shorter leaf life cycle, which may represent a mechanism to cope with salt stress. For severely salt-stressed leaves, an inhibition of electron flow between the PQ pool and P700 was found. The data also suggest that the properties of electron flow beyond PSI are affected by salt stress.
本研究的主要目的是评估盐胁迫对发芽阶段两种鹰嘴豆品系(Cicer arietinum L.)光合作用电子传递链的影响,这两个品系在耐盐性方面存在差异(AKN 87 和 AKN 290)。播种后两周,幼苗暴露于盐胁迫 2 周,并每隔 2 天用 200ml 200mM NaCl 灌溉。使用多相 OJIP 荧光瞬变和 820nm 透射动力学(光系统 I)评估盐胁迫对光合作用电子传递链功能的影响。观察到盐胁迫的特征是 J 步(V)升高、IP 振幅减小,以及 PSII(φ)的初级光量子产率几乎没有影响。我们观察到 AKN 290 的叶片生命周期更短,这可能代表了一种应对盐胁迫的机制。对于受盐胁迫严重的叶片,发现质体醌池和 P700 之间的电子流受到抑制。数据还表明,盐胁迫会影响 PSI 后电子流的性质。