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家蚕肌联蛋白(Bm kettin)是果蝇肌联蛋白基因的同源物,位于家蚕的Z染色体上,且不存在剂量补偿效应。

Bm kettin, homologue of the Drosophila kettin gene, is located on the Z chromosome in Bombyx mori and is not dosage compensated.

作者信息

Suzuki M G, Shimada T, Kobayashi M

机构信息

Graduate School of Agricultural and Life Sciences, University of Tokyo, Japan.

出版信息

Heredity (Edinb). 1999 Feb;82 ( Pt 2):170-9. doi: 10.1038/sj.hdy.6884570.

Abstract

In Bombyx mori, the female is the heterogametic sex and the sex determining system is referred to as ZZ/ZW. In a previous study, we found that this insect does not show dosage compensation at the transcriptional level. To confirm the validity of our conclusion, we investigated whether or not another sex-linked gene is dosage compensated. To identify new Z-linked genes, total RNA from reciprocal hybrid females between the silkworm strains p50 and C108 was compared using the differential display technique. Nine cDNA fragments corresponding to several differentially expressed mRNAs were cloned and sequenced. The analysis of nucleotide sequence polymorphisms confirmed that one of these cDNAs, ZDD4, originated from the Z chromosome. The amino acid sequence deduced from ZDD4 has homology with kettin, a modular protein in the Z-disc of Drosophila melanogaster muscles. On immunoblots of Bombyx larval muscle proteins a polypeptide of 380 kDa was labelled with antibody to the ZDD4 peptide. We considered that the gene corresponding to ZDD4 encodes a kettin homologue in the silkworm, and denote it as Bm kettin. By a three-point cross, Bm kettin was mapped at 40.0 CM on the Z chromosome. Southern blot analysis revealed that Bm kettin was present at one copy in the genome. Northern blot analysis showed that Bm Kettin mRNA was 9.1kb in length, and that the level of the mRNA in males was two times greater than that of females. Taken together with our previous observations, the present data suggest that lack of dosage compensation is a general rule in B. mori. Moreover, the twofold difference in Bm kettin expression between males and females may help explain the sexual difference in the wing flapping activity observed in some groups of Lepidoptera.

摘要

在家蚕中,雌性为异配性别,其性别决定系统被称为ZZ/ZW。在之前的一项研究中,我们发现这种昆虫在转录水平上不存在剂量补偿。为了证实我们结论的有效性,我们研究了另一个性连锁基因是否存在剂量补偿。为了鉴定新的Z连锁基因,我们使用差异显示技术比较了家蚕品系p50和C108之间正反交杂种雌性的总RNA。克隆并测序了对应于几种差异表达mRNA的9个cDNA片段。核苷酸序列多态性分析证实,其中一个cDNA,即ZDD4,起源于Z染色体。从ZDD4推导的氨基酸序列与果蝇肌肉Z盘上的一种模块化蛋白kettin具有同源性。在家蚕幼虫肌肉蛋白的免疫印迹上,一个380 kDa的多肽被ZDD4肽抗体标记。我们认为与ZDD4对应的基因在家蚕中编码一种kettin同源物,并将其命名为Bm kettin。通过三点杂交,Bm kettin被定位在Z染色体上40.0 cM处。Southern印迹分析表明,Bm kettin在基因组中以单拷贝存在。Northern印迹分析表明,Bm Kettin mRNA长度为9.1kb,雄性中该mRNA水平是雌性的两倍。结合我们之前的观察结果,目前的数据表明缺乏剂量补偿是家蚕的一个普遍规律。此外,雄性和雌性之间Bm kettin表达的两倍差异可能有助于解释在某些鳞翅目群体中观察到的振翅活动的性别差异。

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