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Insights into melatonin-induced photosynthetic electron transport under low-temperature stress in cucumber.

Authors :
Pei Wu
Yadong Ma
Ahammed, Golam Jalal
Baoyu Hao
Jingyi Chen
Wenliang Wan
Yanhui Zhao
Huimei Cui
Wei Xu
Jinxia Cui
Huiying Liu
Source :
Frontiers in Plant Science; 11/3/2022, Vol. 13, p01-17, 17p
Publication Year :
2022

Abstract

In this study, the differences in chlorophyll fluorescence transient (OJIP) and modulated 820 nm reflection (MR820) of cucumber leaves were probed to demonstrate an insight into the precise influence of melatonin (MT) on cucumber photosystems under low temperature stress. We pre-treated cucumber seedlings with different levels of MT (0, 25, 50, 100, 200, and 400 µmol ⋅ L<superscript>-1</superscript>) before imposing low temperature stress (10 °C/6 °C). The results indicated that moderate concentrations of MT had a positive effect on the growth of low temperature-stressed cucumber seedlings. Under low temperature stress conditions, 100 µmol ⋅ L<superscript>-1</superscript> (MT 100) improved the performance of the active photosystem II (PSII) reaction centers (PIabs), the oxygen evolving complex activity (OEC centers) and electron transport between PSII and PSI, mainly by decreasing the L-band, K-band, and G-band, but showed differences with different duration of low temperature stress. In addition, these indicators related to quantum yield and energy flux of PSII regulated by MT indicated that MT (MT 100) effectively protected the electron transport and energy distribution in the photosystem. According to the results of W<subscript>O-I</subscript> ≥ 1 and MR820 signals, MT also affected PSI activity. MT 100 decreased the minimal value of MR/MR<subscript>O</subscript> and the oxidation rate of plastocyanin (PC) and PSI reaction center (P700) (V<subscript>ox</subscript>), while increased ΔMR<subscript>slow</subscript>/MR<subscript>O</subscript> and deoxidation rates of PC<superscript>+</superscript> and P<subscript>700</subscript><superscript>+</superscript> (V<subscript>red</subscript>). The loss of the slow phase of MT 200 and MT 400-treated plants in the MR820 kinetics was due to the complete prevention of electron movement from PSII to re-reduce the PC<superscript>+</superscript> and P700<superscript>+</superscript>. These results suggest that appropriate MT concentration (100 mmol ⋅ L<superscript>-1</superscript>) can improve the photosynthetic performance of PS II and electron transport from primary quinone electron acceptor (Q<subscript>A</subscript>) to secondary quinone electron acceptor (Q<subscript>B</subscript>), promote the balance of energy distribution, strengthen the connectivity of PSI and PSII, improve the electron flow of PSII via Q<subscript>A</subscript> to PC<superscript>+</superscript> and P<subscript>700</subscript><superscript>+</superscript> from reaching PSI by regulating multiple sites of electron transport chain in photosynthesis, and increase the pool size and reduction rates of PSI in low temperature-stressed cucumber plants, All these modifications by MT 100 treatment promoted the photosynthetic electron transfer smoothly, and further restored the cucumber plant growth under low temperature stress. Therefore, we conclude that spraying MT at an appropriate concentration is beneficial for protecting the photosynthetic electron transport chain, while spraying high concentrations of MT has a negative effect on regulating the low temperature tolerance in cucumber. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1664462X
Volume :
13
Database :
Complementary Index
Journal :
Frontiers in Plant Science
Publication Type :
Academic Journal
Accession number :
160285536
Full Text :
https://doi.org/10.3389/fpls.2022.1029854