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一个受光调节的生物钟控制着几种植物基因的转录。

A light-entrained circadian clock controls transcription of several plant genes.

作者信息

Giuliano G, Hoffman N E, Ko K, Scolnik P A, Cashmore A R

机构信息

Department of Biology, University of Pennsylvania, Philadelphia 19104.

出版信息

EMBO J. 1988 Dec 1;7(12):3635-42. doi: 10.1002/j.1460-2075.1988.tb03244.x.

Abstract

Diurnal oscillations in steady-state mRNA levels and transcription rates were measured for seven transcripts (five of which encode chloroplast-localized proteins) in tomato seedlings: photosystem I and photosystem II chlorophyll a/b binding proteins (CAB/I and CAB/II), small subunit of RuBisCO (RBCS), actin, subunit II of the photosystem I reaction center (PSAD), subunit I of the photosystem II oxygen-evolving enzyme (OEE1), and a biotin-binding protein of unknown function. CAB/II mRNA levels were found to oscillate greater than 20-fold, showing a peak at noon, while only marginal diurnal oscillations are seen in RBCS transcripts. The oscillations are at least partially controlled at the transcriptional level. Transcription rates of both CAB/II and RBCS, measured by nuclear run-on experiments, were found to oscillate, with a peak around 8 a.m. Transcription rates of the 'biotin' clone also oscillated, with a peak around noon. Transfer of plants to constant darkness or constant light conditions alters the amplitude of the transcriptional oscillation, but does not abolish it, suggesting that it is at least partially controlled by a circadian clock. The oscillations are still visible after three days in complete darkness, and have a period very close to 24 h. The oscillator phase can be reset by out-of-phase light treatment.

摘要

测定了番茄幼苗中7种转录本(其中5种编码定位于叶绿体的蛋白质)的稳态mRNA水平和转录速率的昼夜振荡情况:光系统I和光系统II的叶绿素a/b结合蛋白(CAB/I和CAB/II)、核酮糖-1,5-二磷酸羧化酶小亚基(RBCS)、肌动蛋白、光系统I反应中心亚基II(PSAD)、光系统II放氧酶亚基I(OEE1)以及一种功能未知的生物素结合蛋白。发现CAB/II mRNA水平的振荡幅度超过20倍,在中午达到峰值,而RBCS转录本中仅观察到微弱的昼夜振荡。这些振荡至少部分受转录水平的控制。通过核延伸实验测定,CAB/II和RBCS的转录速率均发生振荡,上午8点左右出现峰值。“生物素”克隆的转录速率也发生振荡,中午左右出现峰值。将植物转移到持续黑暗或持续光照条件下会改变转录振荡的幅度,但不会消除它,这表明它至少部分受生物钟控制。在完全黑暗中三天后,振荡仍然可见,且周期非常接近24小时。振荡相位可通过不同相位的光照处理进行重置。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6615/454935/428017911ee7/emboj00149-0017-a.jpg

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