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首页> 外文期刊>BMC Genomics >Comparative RNA seq analysis of the New Zealand glowworm Arachnocampa luminosa reveals bioluminescence-related genes
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Comparative RNA seq analysis of the New Zealand glowworm Arachnocampa luminosa reveals bioluminescence-related genes

机译:新西兰萤火虫蛛形纲的比较RNA seq分析揭示了生物发光相关基因

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The New Zealand glowworm is the larva of a carnivorous fungus gnat that produces bioluminescence to attract prey. The bioluminescent system of the glowworm is evolutionarily distinct from other well-characterised systems, especially that of the fireflies, and the molecules involved have not yet been identified. We have used high throughput sequencing technology to produce a transcriptome for the glowworm and identify transcripts encoding proteins that are likely to be involved in glowworm bioluminescence. Here we report the sequencing and annotation of the first transcriptome of the glowworm, and a differential analysis of expression from the glowworm light organ compared with non-light organ tissue. The analysis identified six transcripts encoding proteins that are potentially involved in glowworm bioluminescence. Three of these proteins are members of the ANL superfamily of adenylating enzymes, with similar amino acid sequences to that of the luciferase enzyme found in fireflies (31 to 37?% identical), and are candidate luciferases for the glowworm bioluminescent system. The remaining three transcripts encode putative aminoacylase, phosphatidylethanolamine-binding and glutathione S-transferase proteins. This research provides a basis for further biochemical studies into how the glowworm produces light, and a source of genetic information to aid future ecological and evolutionary studies of the glowworm.
机译:新西兰萤火虫是食肉真菌fun的幼虫,可产生生物发光以吸引猎物。萤火虫的生物发光系统在进化上不同于其他特征明​​确的系统,尤其是萤火虫的生物发光系统,并且尚未鉴定出涉及的分子。我们已经使用了高通量测序技术来为萤火虫生成一个转录组,并鉴定编码可能与萤火虫生物发光有关的蛋白质的转录本。在这里,我们报告了萤火虫的第一个转录组的测序和注释,并比较了萤火虫轻器官与非轻器官组织的表达差异。分析确定了六种转录本,它们编码可能与萤火虫生物发光有关的蛋白质。这些蛋白质中的三种是腺苷酸化酶ANL超家族的成员,其氨基酸序列与萤火虫中发现的萤光素酶类似(31%至37%相同),并且是萤火虫生物发光系统的候选萤光素酶。其余三个转录本编码假定的氨酰酶,磷脂酰乙醇胺结合蛋白和谷胱甘肽S-转移酶蛋白。这项研究为进一步研究萤火虫如何产生光的生化研究提供了基础,并为遗传信息的来源提供了帮助,以帮助将来进行萤火虫的生态和进化研究。

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