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首页> 外文期刊>American journal of botany >Loss of psbS expression reduces vegetative growth, reproductive output, and light-limited, but not light-saturated, photosynthesis in Arabidopsis thaliana (Brassicaceae) grown in temperate light environments.
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Loss of psbS expression reduces vegetative growth, reproductive output, and light-limited, but not light-saturated, photosynthesis in Arabidopsis thaliana (Brassicaceae) grown in temperate light environments.

机译:psbS表达的丧失会降低在温带光照环境下生长的拟南芥(十字花科)的营养生长,生殖输出以及光受限但不光饱和的光合作用。

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摘要

Plants protect themselves against the deleterious effects of high light intensities by inducing a mechanism ubiquitous among plants known as energy dissipation, which safely converts excess light to heat before it can lead to the formation of free radicals. Mutants possessing a deletion of the psbS gene, such as the npq4 mutant, cannot perform energy dissipation and thus offer an opportunity to assess the importance of this process to plant function. In a temperate light environment, greenhouse-grown npq4 mutants of Arabidopsis thaliana had smaller rosette diameters and leaf numbers. The reduction in size observed in npq4 plants was associated with fewer floral stalks, fewer fruits, lower whole-plant and individual seed masses, and lower germination rates. In the field, npq4 mutants developed fewer fruits. After a controlled exposure to high light stress, both PSII efficiency and CO assimilation were more significantly compromised in npq4 mutants at low light intensities, but not at high light intensities. Thus, the protective nature of energy dissipation manifests in light environments that include periods of high light, which predispose plants to PSII photoinactivation, and periods of low light, when PSII photoinactivation decreases the rate of photosynthesis.
机译:植物通过诱导植物间普遍存在的一种称为能量耗散的机制来保护自己免受高强度光的有害影响,该机制可以在多余的光可以导致自由基形成之前安全地将其转化为热量。拥有psbS基因缺失的突变体,例如npq4突变体,无法进行能量消耗,因此提供了评估该过程对植物功能重要性的机会。在温带光照条件下,温室生长的拟南芥npq4突变体的莲座丛直径和叶数较小。在npq4植物中观察到的大小减少与较少的花梗,较少的果实,较低的全株和单个种子质量以及较低的发芽率有关。在野外,npq4突变体的果实较少。在受控制的高光照下,npq4突变体在低光照强度下而不是在高光照强度下,PSII效率和CO同化都受到更大的损害。因此,能量耗散的保护性表现在光环境中,包括高光周期(这会使植物容易发生PSII光灭活)和低光周期(当PSII光失活降低光合作用率时)。

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