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与眼虫属细胞分裂的光周期诱导相关的涉及光可逆多种光感受器的高辐照度反应。

High irradiance responses involving photoreversible multiple photoreceptors as related to photoperiodic induction of cell division in Euglena.

作者信息

Bolige Aoen, Goto Ken

机构信息

Laboratory of Biological Rhythms, Obihiro University of Agriculture and Veterinary Medicine, Obihiro 080-8555, Japan.

出版信息

J Photochem Photobiol B. 2007 Feb 1;86(2):109-20. doi: 10.1016/j.jphotobiol.2006.08.010. Epub 2006 Oct 9.

Abstract

Little is known about the photoreceptors involved in the photoperiodism of unicellular organisms, which we elucidated by deriving their action spectra. The flagellated alga Euglena gracilis exhibits photoperiodism, with a long-day response in cell reproduction. The underlying clock is a circadian rhythm with photoinductive capability, peaking at subjective dusk and occurring at the 26th hour in continuous darkness (DD) when transferred from continuous light (LL); it regulates photoinduction, a high-irradiance response (HIR), of a dark-capability of progressing through cell division. We derived the action spectra by irradiating E. gracilis with monochromatic light for 3h at around the 26th hour; the action maxima occurred at 380, 450-460, 480, 610, 640, 660, 680, and 740nm. Except for the maximum at 450-460nm, which was always a major maximum, the maxima greatly depended on the red (R)/far-red (FR) ratio of the prior LL. The high R/FR ratio resulted in a dominant major peak at 640nm and minor peaks at 480 and 680nm, whereas the low ratio resulted in dominant major peaks at 610 and 740nm and minor peaks at 380 and 660nm; the critical fluence was minimally about 60mmolm(-2). These HIRs resulted from the accumulation of corresponding low-fluence responses (LFRs) because we found that repetition of a 3-min light/dark cycle, with critical fluences of 1mmolm(-2), lasting for 3h resulted in the same photoinduction as the continuous 3-h irradiation. Moreover, these LFRs expressed photoreversibility. Thus, photoperiodic photoinduction involves Euglena-phytochrome (640 and 740nm) and blue photoreceptor (460nm). Although 380, 480, 610, 660, and 680nm may also represent Euglena-phytochrome, a definite conclusion awaits further study.

摘要

关于单细胞生物光周期现象中涉及的光感受器,人们了解甚少,我们通过推导其作用光谱对此进行了阐明。有鞭毛的藻类纤细裸藻表现出光周期现象,在细胞繁殖方面有长日反应。其潜在的生物钟是一种具有光诱导能力的昼夜节律,在主观黄昏时达到峰值,从持续光照(LL)转移到持续黑暗(DD)后,在持续黑暗的第26小时出现;它调节光诱导,即一种高辐照度反应(HIR),这种反应是细胞分裂过程中黑暗能力的体现。我们在第26小时左右用单色光照射纤细裸藻3小时来推导作用光谱;作用最大值出现在380、450 - 460、480、610、640、660、680和740纳米处。除了450 - 460纳米处的最大值始终是主要最大值外,其他最大值很大程度上取决于先前LL的红(R)/远红(FR)比值。高R/FR比值导致在640纳米处出现主导的主要峰值,在480和680纳米处出现次要峰值,而低比值则导致在610和740纳米处出现主导的主要峰值,在380和660纳米处出现次要峰值;临界光通量最小约为60 mmolm(-2)。这些HIR是由相应的低光通量反应(LFR)积累产生的,因为我们发现重复3分钟的光/暗循环,临界光通量为1 mmolm(-2),持续3小时,会产生与持续3小时照射相同的光诱导效果。此外,这些LFR表现出光可逆性。因此,光周期光诱导涉及裸藻光敏色素(640和740纳米)和蓝光感受器(460纳米)。尽管380、480、610、660和680纳米也可能代表裸藻光敏色素,但确切结论有待进一步研究。

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