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On the induction of injury in tomato under continuous light: circadian asynchrony as the main triggering factor

机译:在连续光下番茄损伤的诱导:昼夜昼夜作为主要触发因子

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Unlike other species, when tomato plants (Solanum lycopersicum L.) are deprived of at least 8 h of darkness per day, they develop a potentially lethal injury. In an effort to understand why continuous light (CL) is injurious to tomato, we tested five factors, which potentially could be responsible for triggering the injury in CL-grown tomato: (i) differences in the light spectral distribution between sunlight and artificial light, (ii) continuous light signalling, (iii) continuous supply of light for photosynthesis, (iv) continuous photo-oxidative pressure and (v) circadian asynchrony - a mismatch between the internal circadian clock frequency and the external light/dark cycles. Our results strongly suggest that continuous-light-induced injury does not result from the unnatural spectral distribution of artificial light nor from the continuity of light per se. Instead, circadian asynchrony seems to be the main factor inducing the CL-induced injury, but the mechanism is not by the earlier hypothesised circadian pattern in sensitivity for photoinhibition. Here, however, we show for the first time diurnal fluctuations in sensitivity to photoinhibition during normal photoperiods. Similarly, we also report for the first time diurnal and circadian rhythms in the maximum quantum efficiency of PSII (F-v/F-m) and the parameter F-0.
机译:与其他物种不同,当番茄植物(Solanum Lycopersicum L.)被剥夺每天至少8小时,它们发生潜在的致命损伤。努力了解为什么连续光(CL)对番茄有害,我们测试了五个因素,这可能负责触发Cl-Scrow Tomato中的伤害:(i)阳光和人造光之间的光谱分布的差异,(ii)连续光信号,(iii)光合作用的连续供应,(iv)连续光氧化压力和(v)昼夜昼夜aryynchrony - 内部昼夜节日频率和外部光/黑暗周期之间的不匹配。我们的结果强烈表明,连续光引起的损伤不会由人造光的不自然光谱分布而不是光的灯光的连续性。相反,昼夜活动似乎是诱导Cl诱导伤害的主要因素,但该机制不是通过早期假设的昼夜敏感性的敏感性。然而,在这里,我们显示在正常光周期期间对敏感性的第一次逼近的昼夜波动。同样,我们还报告了第一次昼夜和昼夜节律的PSII(F-V / F-M)和参数F-0的最大量子效率。

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