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【目的】对番石榴实蝇 Bactrocera correcta (Bezzi)性别决定基因 transformer 和 transformer 2 的cDNA和基因组DNA序列进行克隆和分析,明确这2个基因的结构特征及其在不同发育阶段和雌、雄成虫不同组织中的表达模式,为进一步的功能研究和番石榴实蝇遗传性别品系(genetic sexing strain, GSS)的建立奠定基础。【方法】利用PCR结合RACE技术克隆番石榴实蝇2个性别决定基因的cDNA全长和内含子序列,利用不同的生物信息学软件对序列进行结构预测、序列比对和进化树分析;利用半定量RT-PCR检测这2个基因在番石榴实蝇的不同发育阶段及雌、雄成虫不同组织(精巢、卵巢、中肠和脂肪体)中的表达分布。【结果】克隆得到番石榴实蝇 transformer 和 transformer 2 的cDNA全长序列,分别命名为 Bcotra 和 Bcotra-2 。 Bcotra 存在性别特异剪接,雌虫 Bcotra 的cDNA全长1 673 bp,其开放读码框(ORF)为1 242 bp,编码413个氨基酸(GenBank登录号为KP712876);雄虫Bcotra cDNA全长2 025 bp,比雌虫多2个外显子,但由于外显子上有多个终止密码子,因此,不能编码完整的有功能的Tra蛋白(GenBank登录号为KP712877)。 Bcotra-2 不存在性别特异剪接,cDNA全长1 458 bp,其开放读码框(ORF)为756 bp,编码251个氨基酸,具有RNA结合蛋白的典型特征(GenBank登录号为KM658207)。Bcotra-2有8个外显子,7个内含子。氨基酸序列比对和系统进化关系表明,两个基因的系统发育关系一致,Tra-2与目前已报道的双翅目Tra-2具有很高的同源性,而Tra的保守性较Tra-2要低。半定量RT-PCR结果显示, Bcotra 和 Bcotra-2 在番石榴实蝇的不同发育阶段及雌、雄成虫不同组织中都有表达。【结论】本研究明确了Bcotra 和 Bcotra-2 的基因组DNA和cDNA结构特征,Bcotra 和 Bcotra-2 在番石榴实蝇的不同发育阶段和成虫不同组织中均有表达,序列分析发现这两个性别决定基因均具有Tra/Tra-2结合位点、内含子剪接抑制序列位点,其中 Bcotra 具有RNA结合蛋白的结合位点,暗示了这2个基因可能通过翻译后相互作用调控雌、雄体性发育。Bcotra 存在性别特异剪接,雌虫特有的一段963 bp的内含子序列可以用于番石榴实蝇遗传定性品系的载体构建。  相似文献   

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In Drosophila melanogaster there are two genes which encode the enzyme glyceraldehyde-3-phosphate dehydrogenase (GAPDH), Gapdh-43E and Gapdh-13F. We have shown that Gapdh-43E codes for the GAPDH subunit with an apparently larger molecular weight while Gapdh-13F encodes the GAPDH subunit having an apparently smaller molecular weight. Immunoblots of sodium dodecyl sulfate gels were used to survey species from throughout the genus and results indicated that two classes of GAPDH subunits are present only in Drosophila species of the melanogaster and takahashi subgroups of the melanogaster group. Only the smaller subunit is found in species of the obscura group while all other species have only a large subunit. Drosophila hydei was analyzed at the DNA level as a representative species of the subgenus Drosophila. The genome of this species has a single Gapdh gene which is localized at a cytogenetic position likely to be homologous to Gapdh-43 E of D. melanogaster. Comparison of its sequence with the sequence of the D. melanogaster Gapdh genes indicates that the two genes of D. melanogaster are more similar to one another than either is to the gene from D. hydei. The Gapdh gene from D. hydei contains an intron following codon 29. Neither Gapdh gene of D. melanogaster has an intron within the coding region. Southern blots of genomic DNA were used to determine which species have duplicate Gapdh genomic sequences. Gene amplification was used to determine which species have a Gapdh gene that is interrupted by an intron. Species of the subgenus Drosophila have a single Gapdh gene with an intron. Species of the willistoni and saltans groups have a single Gapdh gene that does not contain an intron.(ABSTRACT TRUNCATED AT 250 WORDS)  相似文献   

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Global gene expression in Leishmania   总被引:1,自引:0,他引:1  
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Operator mutations of the Escherichia coli aroF gene   总被引:17,自引:0,他引:17  
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