首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Novel sex pheromone desaturases in the genomes of corn borers generated through gene duplication and retroposon fusion
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Novel sex pheromone desaturases in the genomes of corn borers generated through gene duplication and retroposon fusion

机译:通过基因复制和反座子融合产生的玉米bore基因组新的性信息素去饱和酶

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The biosynthesis of female moth sex pheromone blends is controlled by a number of different enzymes, many of which are encoded by members of multigene families. One such multigene family, the acyl-CoA desaturases, is composed of certain genes that function as key players in moth sex pheromone biosynthesis. Although much is known regarding the function of some of these genes, very little is known regarding how novel genes have evolved within this family and how this might impact the establishment of new sex pheromone blends within a species. We have discovered that several cryptic Δ11 and Δ14 desaturase genes exist in the genomes of the European and Asian corn borers (Ostrinia nubilalis and Ostrinia furnacalis, respectively). Furthermore, an entirely novel class of desaturase gene has arisen in the Ostrinia lineage and is derived from duplication of the Δ11 desaturase gene and subsequent fusion with a retroposon. Interestingly, the genes have been maintained over relatively long evolutionary time periods in corn borer genomes, and they have not been recognizably pseudogenized, suggesting that they maintain functional integrity. The existence of cryptic desaturase genes in moth genomes indicates that the evolution of moth sex pheromone desaturases in general is much more complex than previously recognized.
机译:雌蛾性信息素混合物的生物合成受许多不同酶的控制,其中许多酶是由多基因家族成员编码的。一个这样的多基因家族,酰基辅酶A去饱和酶,由某些在蛾性信息素生物合成中起关键作用的基因组成。尽管关于这些基因中某些基因的功能知之甚少,但关于该家族中新基因如何进化以及如何影响物种中新性信息素混合物的建立却知之甚少。我们已经发现,欧洲和亚洲玉米bore的基因组中分别存在几个隐秘的Δ11和Δ14去饱和酶基因(分别为Ostrinia nubilalis和Ostrinia furnacalis)。此外,在Ostrinia谱系中出现了一类全新的去饱和酶基因,该基因来自于Δ11去饱和酶基因的复制以及随后与逆转录子的融合。有趣的是,这些基因已经在玉米bore基因组中维持了相对较长的进化时间,并且尚未被识别为假基因,表明它们保持了功能完整性。蛾基因组中隐性去饱和酶基因的存在表明,蛾性信息素去饱和酶的进化通常比以前认识的复杂得多。

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