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首页> 外文期刊>Insect Biochemistry and Molecular Biology >Multiple Delta 11-desaturase genes selectively used for sex pheromone biosynthesis are conserved in Ostrinia moth genomes
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Multiple Delta 11-desaturase genes selectively used for sex pheromone biosynthesis are conserved in Ostrinia moth genomes

机译:选择性地用于性信息素生物合成的多个Delta 11去饱和酶基因在Ostrinia蛾基因组中是保守的

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Regulation of the expression of fatty acyl-CoA desaturases, which introduce a double bond into the fatty acid moiety of the substrate, is crucial for the production of species-specific sex pheromones in moths. In Ostrinia moths, two distinct Delta 11-desaturases and a Delta 14-desaturase are known to be selectively used in the biosynthesis of sex pheromones. Of the two Delta 11-desaturases, one identified from Ostrinia nubilalis and Ostrinia scapulalis, Z/E Delta 11, forms the Z and E isomers of a double bond at position 11, whereas the other identified from Ostrinia latipennis, LATPG1(=E Delta 11), exclusively forms an E double bond at position 11. Since the retroposon(ezi)-fused, non-functional Delta 11-desaturase gene, ezi-Delta 11 alpha, in the genomes of O. nubilalis and O. furnacalis was previously suggested to be an orthologue of latpg1, we here explored Z/E Delta 11 orthologues in the genome of O. latipennis. We newly identified two Delta 11-desaturase genes, latpg2 and latpg3, which were orthologous to ezi-Delta 11 beta and Z/E Delta 11, respectively. We found that an ezi-like element was integrated in intron 1 of latpg1, and confirmed that only latpg1 was expressed in the pheromone gland of O. latipennis. Thus, at least three All-desaturase genes are present in the genome of O. latipennis, and latpg1 is selectively transcribed in the pheromone gland of this moth. The non-functionality of ezi-inserted desaturase genes in O. nubilalis and O. furnacalis may not be a direct consequence of the insertion of an ezi- or ezi-like element into the gene. (C) 2015 Elsevier Ltd. All rights reserved.
机译:调节脂肪酰基辅酶A去饱和酶的表达(将双键引入底物的脂肪酸部分)对于在飞蛾中产生物种特异性的性信息素至关重要。在Ostrinia蛾中,已知在性信息素的生物合成中选择性使用两种不同的Delta 11-去饱和酶和Delta 14-去饱和酶。在两种Delta 11去饱和酶中,一种是从Ostrinia nubilalis和Ostrinia scapulalis鉴定出的,Z / E Delta 11在位置11处形成了双键的Z和E异构体,而另一种是从Ostrinia latipennis鉴定出的LATPG1(= E Delta 11)仅在11位上形成一个E双键。由于以前在O. nubilalis和O. furnacalis的基因组中存在逆转录子(ezi)融合的非功能性Delta 11去饱和酶基因ezi-Delta 11 alpha。由于建议是latpg1的直向同源物,我们在这里探索了O. latipennis基因组中的Z / E Delta 11直向同源物。我们新发现了两个Delta 11去饱和酶基因latpg2和latpg3,它们分别与ezi-Delta 11 beta和Z / E Delta 11同源。我们发现,在latpg1的内含子1中整合了一个类似ezi的元件,并证实只有latpg1在O. latipennis的信息素腺中表达。因此,O。latipennis的基因组中存在至少三个All-desaturase基因,并且latpg1在该蛾的信息素腺中选择性转录。 E.插入的去饱和酶基因在O. nubilalis和O.furnacalis中的非功能性可能不是将Ezi或类似Ezi的元件插入基因的直接结果。 (C)2015 Elsevier Ltd.保留所有权利。

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