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Salt pretreatment alleviated salt-induced photoinhibition in sweet sorghum

机译:盐预处理减轻了甜高粱中盐诱导的光抑制作用

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摘要

Sweet sorghum is an important energy crop. This study aimed to investigate the effects of salt pretreatment on the interaction between photosystem II (PSII) and photosystem I (PSI) upon salt stress. In this study, sweet sorghum was pretreated with 150 mM NaCl for 10 days, and subsequently, the pretreated plants were subjected to severe salt stress at 300 mM NaCl. PSII and PSI photoinhibition occurred in non-pretreated plants after 4 days of salt stress, as the maximum quantum yield of PSII (Fv/Fm) and the maximal photochemical capacity of PSI (Delta MR/MR0) significantly decreased, and their normal coordination was destroyed. The significant positive correlation between Fv/Fm and Delta MR/MR0 under salt stress indicated that PSII photoinhibition was in relation to PSI photoinhibition, and PSI photoinhibition might lead to PSII photoinhibition through inhibiting electron transport at the acceptor side of PSII. Salt stress did not induce PSII photoinhibition in salt-pretreated plants, and thus, salt pretreatment protected PSI against photoinhibition not by aggravating PSII photoinhibition. Salt pretreatment mitigated the decrease in CO2 assimilation, reduced the feedback inhibition on photosynthetic electron transport and then contributed to suppressing PSI and PSII photoinhibition in sweet sorghum under salt stress. Therefore, the normal coordination between PSII and PSI was maintained in salt-pretreated plants. In conclusion, salt pretreatment ensured normal PSII and PSI coordination by preventing photoinhibition in sweet sorghum under salt stress.
机译:甜高粱是重要的能源作物。这项研究旨在研究盐胁迫对盐胁迫下光系统II(PSII)和光系统I(PSI)之间相互作用的影响。在这项研究中,甜高粱用150 mM NaCl预处理了10天,随后,预处理过的植物在300 mM NaCl下遭受了严重的盐胁迫。盐胁迫4天后,未经预处理的植物发生PSII和PSI光抑制,这是因为PSII的最大量子产率(Fv / Fm)和PSI的最大光化学容量(Delta MR / MR0)显着降低,并且它们的正常配位为毁了。在盐胁迫下,Fv / Fm与Delta MR / MR0之间存在显着的正相关关系,表明PSII光抑制与PSI光抑制有关,而PSI光抑制可能通过抑制PSII受体侧的电子传递而导致PSII光抑制。盐胁迫不会在盐预处理过的植物中诱导PSII光抑制,因此,盐预处理不会通过加重PSII光抑制作用来保护PSI免受光抑制作用。盐预处理减轻了CO2同化作用的降低,减少了对光合电子传递的反馈抑制,然后有助于抑制盐胁迫下甜高粱中的PSI和PSII光抑制。因此,在盐处理过的植物中保持了PSII和PSI之间的正常协调。总之,盐预处理可防止盐胁迫下甜高粱的光抑制作用,从而确保PSII和PSI正常协调。

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