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光与生物钟在拟南芥CAT2基因表达调控中的相互作用

Interactions between Light and the Circadian Clock in the Regulation of CAT2 Expression in Arabidopsis.

作者信息

Zhong H. H., Young J. C., Pease E. A., Hangarter R. P., McClung C. R.

机构信息

Department of Biological Sciences, Dartmouth College, Hanover, New Hampshire 03755-3576 (H.H.Z., E.A.P., C.R.M.).

出版信息

Plant Physiol. 1994 Mar;104(3):889-898. doi: 10.1104/pp.104.3.889.

Abstract

In Arabidopsis seedlings germinated and grown in continuous light, CAT2 mRNA abundance peaks 1 d after imbibition, consistent with the role of catalase in detoxifying H2O2 generated during the [beta]-oxidation of fatty acids stored in the seed. A second peak of CAT2 mRNA abundance, of lower amplitude than the initial peak, appears 6 d after imbibition and may be associated with the development of photosynthetic competence and induction of photorespiration. This second peak in steady-state CAT2 mRNA abundance is regulated by light and is not seen in etiolated seedlings. CAT2 mRNA accumulation is induced by exposure to high-fluence blue or far-red light but not by red light. In addition, light induction is unaffected by several mutations that block blue light-mediated inhibition of hypocotyl elongation (blu1, blu2, blu3, hy4), suggesting phytochrome involvement. When etiolated seedlings are transferred to continuous white light, CAT2 mRNA rapidly (within 30 min) accumulates. It is interesting that in these seedlings CAT2 mRNA abundance undergoes pronounced oscillations with a circadian (24 h) periodicity, indicating control by the endogenous circadian clock. No such oscillations are detected in CAT2 mRNA abundance in etiolated seedlings prior to illumination. Control of CAT2 expression by the circadian clock is also seen in 5-week-old plants grown in a light-dark cycle and transferred either to continuous dark or to continuous light; in continuous light the circadian oscillations in CAT2 mRNA abundance persist for at least five circadian cycles, indicating the robustness of this circadian rhythm.

摘要

在持续光照条件下萌发并生长的拟南芥幼苗中,CAT2 mRNA丰度在吸胀后1天达到峰值,这与过氧化氢酶在解毒种子中储存的脂肪酸β-氧化过程中产生的H2O2的作用一致。CAT2 mRNA丰度的第二个峰值出现在吸胀后6天,其幅度低于初始峰值,可能与光合能力的发展和光呼吸的诱导有关。稳态CAT2 mRNA丰度的第二个峰值受光照调节,在黄化幼苗中未观察到。CAT2 mRNA积累是由高光强蓝光或远红光照射诱导的,而不是由红光诱导的。此外,光诱导不受几个阻断蓝光介导的下胚轴伸长抑制的突变(blu1、blu2、blu3、hy4)的影响,表明光敏色素参与其中。当黄化幼苗转移到持续白光下时,CAT2 mRNA迅速(在30分钟内)积累。有趣的是,在这些幼苗中,CAT2 mRNA丰度以昼夜(24小时)周期进行明显振荡,表明受内源性昼夜节律时钟控制。在光照前的黄化幼苗中未检测到CAT2 mRNA丰度的这种振荡。在光暗周期中生长并转移到持续黑暗或持续光照的5周龄植物中也观察到昼夜节律时钟对CAT2表达的控制;在持续光照下,CAT2 mRNA丰度的昼夜振荡持续至少五个昼夜周期,表明这种昼夜节律的稳健性。

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