Exploration of the Effects of Cadmium Stress on Photosynthesis in Oenanthe javanica (Blume) DC

镉胁迫对爪哇水芹(Oenanthe javanica (Blume) DC)光合作用的影响研究

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Abstract

Cadmium ion (Cd(2+)) stress is a major abiotic stressor affecting plant photosynthesis. However, the impact of sustained high-concentration Cd stress on the photosynthetic electron transport chain of aquatic plants is currently unclear. Here, prompt fluorescence (PF), delayed fluorescence (DF), and P700 signals were simultaneously measured to investigate the effect of Cd stress on photosynthesis in water dropwort [Oenanthe javanica (Blume) DC.]. We aimed to elucidate how Cd stress continuously affects the electron transport chain in this species. The PF analysis showed that with prolonged Cd stress, the F(J), F(I) and F(P) steadily decreased, accompanied by a positive shift in the K-band and L-band. Moreover, JIP-test parameters, including TR(O)/ABS, ABS/CS(O), TR(O)/CS(O) and PI(ABS), were significantly reduced. The P700 signals showed that exposure to Cd stress hindered both the fast decrease and slow increase phases of the MR transient, ultimately resulting in a gradual reduction in both V(PSI) and V(PSII-PSI). The DF analysis showed a gradual decrease in the I(1) and I(2) values as the duration of stress from Cd increased. The above results suggested that Cd stress affected the photosynthetic electron transport in water dropwort by influencing the amount of active PSII and PSI, primarily affecting PSII RCs in the early to mid-stages and PSI reductive activity in the later stage.

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