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眼虫中的类光敏色素反应:一种低光通量反应,它在细胞分裂的长日照光周期诱导中重组了高光辐照反应的光谱依赖性。

Phytochrome-like responses in Euglena: A low fluence response that reorganizes the spectral dependence of the high irradiance response in long-day photoperiodic induction of cell division.

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):97-108. doi: 10.1016/j.jphotobiol.2006.08.009. Epub 2006 Oct 9.

Abstract

Irradiance spectra change spatiotemporally, and angiosperms adapt accordingly, mainly through phytochromes. This study challenges the long-held belief that the flagellated alga Euglena gracilis lacks phytochromes and is therefore unaffected by spectral changes. We photoautotrophically cultured the alga under continuous light (LL), then transferred it to darkness. After about 26h in darkness, different irradiations for 3h enabled cell division in dark-arrested G2 cells evoking a high-irradiance response (HIR). The spectral characteristics of the irradiation during the LL period (pre-irradiation) defined the spectral sensitivity in the subsequent dark period. LL with light rich in the red spectrum led to a HIR to the red spectrum (R-HIR), whereas light rich in the far-red spectrum (FR) led to a FR-HIR. Finishing the period of pre-irradiation consisting of continuous cool-white fluorescent light (rich in R) by a FR pulse enhanced the characteristics of the FR-HIR 26h later. By contrast, a R pulse given at the end of the pre-irradiation rich in FR potentiated the R-HIR. The effects were completely photoreversible between R and FR with critical fluences of about 2mmolm(-2), satisfying the classic diagnostic feature of phytochromes. The action spectrum of the FR effect at the end of pre-irradiation consisting of continuous cool-white fluorescent light (rich in R) had a main peak at 740nm and a minor peak at 380nm, whereas antagonization of the FR effect had a main peak at 640nm and a minor peak at 480nm. Wavelengths of 610 and 670nm appeared in both spectra. We also demonstrated the photoreversibility of 380/640, 480/740, and (610 and 670)/(640 and 740) nm. We conclude that Euglena displays phytochrome-like responses similar to the 'shade avoidance' and 'end-of-day FR' effects reported in angiosperms.

摘要

辐照度光谱会随时间和空间发生变化,被子植物会相应地进行适应,主要是通过光敏色素。本研究对长期以来的一种观点提出了挑战,即具鞭毛的绿藻纤细裸藻缺乏光敏色素,因此不受光谱变化的影响。我们在连续光照(LL)条件下对该藻类进行光合自养培养,然后将其转移至黑暗环境。在黑暗中约26小时后,不同的光照处理3小时能使处于黑暗停滞状态的G2期细胞进行分裂,引发高辐照度反应(HIR)。LL期间(预照射)的光照光谱特征决定了后续黑暗期的光谱敏感性。富含红光光谱的LL光照会导致对红光光谱的HIR(R-HIR),而富含远红光光谱(FR)的光照则会导致FR-HIR。在由连续冷白色荧光(富含R)组成的预照射期结束时给予一个FR脉冲,可增强26小时后FR-HIR的特征。相比之下,在富含FR的预照射结束时给予一个R脉冲,则会增强R-HIR。R和FR之间的效应在临界通量约为2mmolm(-2)时完全可光逆转,符合光敏色素的经典诊断特征。由连续冷白色荧光(富含R)组成的预照射结束时,FR效应的作用光谱在740nm处有一个主峰,在380nm处有一个次峰,而FR效应的拮抗作用在640nm处有一个主峰,在480nm处有一个次峰。610和670nm的波长出现在两个光谱中。我们还证明了380/640、480/740以及(610和670)/(640和740)nm的光可逆性。我们得出结论,裸藻表现出类似于被子植物中报道的“避荫”和“日终FR”效应的光敏色素样反应。

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