褪黑素通过OJIP叶绿素荧光动力学缓解盐胁迫下番茄幼苗光合损伤

IF 4 2区 生物学 Q1 PLANT SCIENCES
Xianjun Chen, Xiaofeng Liu, Yundan Cong, Yao Jiang, Jianwei Zhang, Qin Yang, Huiying Liu
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引用次数: 0

摘要

番茄是我国种植面积最广、消费量最大的农作物之一;然而,设施土壤的次生盐渍化严重阻碍了设施农业的可持续发展。褪黑素(Melatonin, MT)是一种新型的植物生长调节剂,在逆境反应中起着重要作用。本研究使用水培装置来模拟盐胁迫条件。通过叶面喷施100 μmol·L-1褪黑素、褪黑素合成抑制剂p-CPA (100 μmol·L-1)和p-CPA与褪黑素联合施用,建立不同内源褪黑素水平,探讨褪黑素缓解盐胁迫对番茄幼苗光合效率影响的机制。结果表明,盐胁迫6 d后,番茄幼苗内源MT含量急剧下降,净光合速率和光系统性能指标(PItotal和PIabs)均下降。OJIP荧光曲线出现畸变,表现为异常的k波段和l波段。外源MT显著提高了MT合成关键酶基因(TrpDC、T5H、SNAcT和AcSNMT)的表达,从而提高了内源MT的水平。MT处理降低了盐胁迫下OJIP曲线中j相和i相的荧光强度,减弱了k波段和l波段性能的不规则性,同时提高了量子产率和能量分配比。其中φPo、φEo、φ o明显升高,φDo明显降低。膜模型(ABS/RC、DIo/RC、ETo/RC和TRo/RC)和叶模型(ABS/CSm、TRo/CSm、ETo/CSm和DIo/CSm)的参数均得到增强。相反,外源p-CPA的注入加重了盐胁迫对番茄幼苗光系统的损伤,降低了MT的有益作用。研究结果表明,外源MT通过(1)调节内源MT浓度,(2)增强PSII反应中心功能,(3)保护进化氧复合物(OEC),(4)恢复PSI氧化还原电位,(5)促进光合电子传递,(3)降低盐胁迫诱导的光抑制。(6)优化能量吸收和耗散。结果表明,MT显著提高了番茄幼苗的光化学性能,促进了幼苗的发育和抗盐性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Melatonin Alleviates Photosynthetic Injury in Tomato Seedlings Subjected to Salt Stress via OJIP Chlorophyll Fluorescence Kinetics.

The tomato is among the crops with the most extensive cultivated area and greatest consumption in our nation; nonetheless, secondary salinization of facility soil significantly hinders the sustainable growth of facility agriculture. Melatonin (MT), as an innovative plant growth regulator, is essential in stress responses. This research used a hydroponic setup to replicate saline stress conditions. Different endogenous levels of melatonin (MT) were established by foliar spraying of 100 μmol·L-1 MT, the MT synthesis inhibitor p-CPA (100 μmol·L-1), and a combination of p-CPA and MT, to investigate the mechanism by which MT mitigates the effects of salt stress on the photosynthetic efficiency of tomato seedlings. Results indicated that after six days of salt stress, the endogenous MT content in tomato seedlings drastically decreased, with declines in the net photosynthetic rate and photosystem performance indices (PItotal and PIabs). The OJIP fluorescence curve exhibited distortion, characterized by anomalous K-band and L-band manifestations. Exogenous MT dramatically enhanced the gene (TrpDC, T5H, SNAcT, and AcSNMT) expression of critical enzymes in MT synthesis, therefore boosting the level of endogenous MT. The application of MT enhanced the photosynthetic parameters. MT treatment decreased the fluorescence intensities of the J-phase and I-phase in the OJIP curve under salt stress, attenuated the irregularities in the K-band and L-band performance, and concurrently enhanced quantum yield and energy partitioning ratios. It specifically elevated φPo, φEo, and ψo, while decreasing φDo. The therapy enhanced parameters of both the membrane model (ABS/RC, DIo/RC, ETo/RC, and TRo/RC) and leaf model (ABS/CSm, TRo/CSm, ETo/CSm, and DIo/CSm). Conversely, the injection of exogenous p-CPA exacerbated salt stress-related damage to the photosystem of tomato seedlings and diminished the beneficial effects of MT. The findings suggest that exogenous MT mitigates salt stress-induced photoinhibition by (1) modulating endogenous MT concentrations, (2) augmenting PSII reaction center functionality, (3) safeguarding the oxygen-evolving complex (OEC), (4) reinstating PSI redox potential, (5) facilitating photosynthetic electron transport, and (6) optimizing energy absorption and dissipation. As a result, MT markedly enhanced photochemical performance and facilitated development and salt stress resilience in tomato seedlings.

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来源期刊
Plants-Basel
Plants-Basel Agricultural and Biological Sciences-Ecology, Evolution, Behavior and Systematics
CiteScore
6.50
自引率
11.10%
发文量
2923
审稿时长
15.4 days
期刊介绍: Plants (ISSN 2223-7747), is an international and multidisciplinary scientific open access journal that covers all key areas of plant science. It publishes review articles, regular research articles, communications, and short notes in the fields of structural, functional and experimental botany. In addition to fundamental disciplines such as morphology, systematics, physiology and ecology of plants, the journal welcomes all types of articles in the field of applied plant science.
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