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Photoinhibition-Like Damage to the Photosynthetic Apparatus in Plant Leaves Induced by Submergence Treatment in the Dark

机译:在黑暗中淹没处理对植物叶片光合作用装置的光抑制样损伤

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摘要

Submergence is a common type of environmental stress for plants. It hampers survival and decreases crop yield, mainly by inhibiting plant photosynthesis. The inhibition of photosynthesis and photochemical efficiency by submergence is primarily due to leaf senescence and excess excitation energy, caused by signals from hypoxic roots and inhibition of gas exchange, respectively. However, the influence of mere leaf-submergence on the photosynthetic apparatus is currently unknown. Therefore, we studied the photosynthetic apparatus in detached leaves from four plant species under dark-submergence treatment (DST), without influence from roots and light. Results showed that the donor and acceptor sides, the reaction center of photosystem II (PSII) and photosystem I (PSI) in leaves were significantly damaged after 36 h of DST. This is a photoinhibition-like phenomenon similar to the photoinhibition induced by high light, as further indicated by the degradation of PsaA and D1, the core proteins of PSI and PSII. In contrast to previous research, the chlorophyll content remained unchanged and the H2O2 concentration did not increase in the leaves, implying that the damage to the photosynthetic apparatus was not caused by senescence or over-accumulation of reactive oxygen species (ROS). DST-induced damage to the photosynthetic apparatus was aggravated by increasing treatment temperature. This type of damage also occurred in the anaerobic environment (N2) without water, and could be eliminated or restored by supplying air to the water during or after DST. Our results demonstrate that DST-induced damage was caused by the hypoxic environment. The mechanism by which DST induces the photoinhibition-like damage is discussed below.
机译:淹没是植物的一种常见环境压力类型。它主要是通过抑制植物的光合作用来阻碍生存并降低作物产量。淹没对光合作用和光化学效率的抑制主要是由于叶片的衰老和过量的激发能,这分别来自缺氧根的信号和气体交换的抑制。然而,目前尚不清楚仅叶片浸没对光合作用的影响。因此,我们研究了暗浸处理(DST)下四种植物的离体叶片中的光合作用机制,而不受根和光的影响。结果表明,DST处理36 h后,叶片的供体和受体侧,光系统II(PSII)和光系统I(PSI)的反应中心受到了严重破坏。这是一种类似于光抑制的现象,类似于强光诱导的光抑制,进一步由PSI和PSII的核心蛋白PsaA和D1降解进一步表明。与以前的研究相反,叶中的叶绿素含量保持不变,并且叶片中的H2O2浓度没有增加,这表明对光合装置的损害不是由活性氧(ROS)的衰老或过度积累引起的。升高处理温度会加剧DST引起的对光合作用装置的损害。这种损坏也发生在无水的厌氧环境(N2)中,可以通过在夏令时期间或之后向水中供应空气来消除或恢复。我们的结果表明,DST引起的损害是由低氧环境引起的。 DST诱导类似光抑制的损伤的机制将在下面讨论。

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