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家蚕中两个生物钟基因period和timeless的结构与表达

Structure and expressions of two circadian clock genes, period and timeless in the commercial silkmoth, Bombyx mori.

作者信息

Iwai Sachio, Fukui Yoshiko, Fujiwara Yoshihiro, Takeda Makio

机构信息

Division of Molecular Science, Graduate School of Science and Technology, Kobe University, 1-1 Rokkodaicho, Nada-ku, Kobe 657-8567, Japan.

出版信息

J Insect Physiol. 2006 Jun;52(6):625-37. doi: 10.1016/j.jinsphys.2006.03.001. Epub 2006 Mar 10.

Abstract

We cloned two circadian clock genes period (Bmper) and timeless (Bmtim) from the commercial silkmoth, Bombyx mori. Sequence analysis revealed a high degree of conservation among insects for both genes. BmPER predicted from the DNA sequence is a polypeptide of 1, 113 amino acids with functional domains such as PAS, PAC, nuclear localization signal (NLS) and cytoplasmic localization domain (CLD). Deduced BmTIM consists of 997 amino acids with PER interaction site (PIS) as well as NLS and CLD. Southern blot analyses revealed that Bmper and Bmtim are single copy genes. Northern blot analysis demonstrated that Bmper and Bmtim are expressed both in the head and peripheral tissues. We also examined temporal profiles of Bmper and Bmtim expressions in the head, flight muscle, testis and antenna of adult males under LD12:12 and LD16:8 by Real-Time PCR assays. Our data show that photoperiod differentially affects the temporal expression patterns of Bmper and Bmtim. The mRNA expression of Bmper and Bmtim in the head had a phase lead under LD12:12 compared to that under LD16:8, whereas photoperiod did not affect expression patterns in peripheral tissues relative to light-on. Photoperiod affected not only the phase relationship but also the expression level. In the testis and antenna, the level of transcription of Bmtim was low in LD12:12 but high in LD16:8. The daily differences in amplitudes of the Bmper and Bmtim expression rhythms were 2-fold in the head and 1.5-2.5 folds in the peripheral tissues examined.

摘要

我们从商业家蚕(Bombyx mori)中克隆了两个生物钟基因周期基因(Bmper)和无时间基因(Bmtim)。序列分析表明,这两个基因在昆虫中具有高度保守性。从DNA序列预测的BmPER是一个由1113个氨基酸组成的多肽,具有诸如PAS、PAC、核定位信号(NLS)和细胞质定位结构域(CLD)等功能结构域。推导的BmTIM由997个氨基酸组成,具有PER相互作用位点(PIS)以及NLS和CLD。Southern印迹分析表明,Bmper和Bmtim是单拷贝基因。Northern印迹分析表明,Bmper和Bmtim在头部和外周组织中均有表达。我们还通过实时PCR分析检测了成年雄性家蚕在LD12:12和LD16:8条件下头部、飞行肌、睾丸和触角中Bmper和Bmtim表达的时间模式。我们的数据表明,光周期对Bmper和Bmtim的时间表达模式有不同影响。与LD16:8条件下相比,LD12:12条件下头部中Bmper和Bmtim的mRNA表达有相位提前,而相对于光照开启,光周期对外周组织中的表达模式没有影响。光周期不仅影响相位关系,还影响表达水平。在睾丸和触角中,LD12:12条件下Bmtim的转录水平较低,而LD16:8条件下较高。在所检测的外周组织中,Bmper和Bmtim表达节律的日振幅差异在头部为2倍,在外周组织中为1.5至2.5倍。

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