首页> 美国卫生研究院文献>International Journal of Biological Sciences >The First Mitochondrial Genomes of Antlion (Neuroptera: Myrmeleontidae) and Split-footed Lacewing (Neuroptera: Nymphidae) with Phylogenetic Implications of Myrmeleontiformia
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The First Mitochondrial Genomes of Antlion (Neuroptera: Myrmeleontidae) and Split-footed Lacewing (Neuroptera: Nymphidae) with Phylogenetic Implications of Myrmeleontiformia

机译:蚁的第一个线粒体基因组(Neuroptera:Myrmeleontidae)和裂足的草ce(Neuroptera:Nymphidae)具有Myrmeleontiformia的系统发育意义。

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摘要

In the holometabolous insect order Neuroptera (lacewings), the cosmopolitan Myrmeleontidae (antlions) are the most species-rich family, while the closely related Nymphidae (split-footed lacewings) are a small endemic family from the Australian-Malesian region. Both families belong to the suborder Myrmeleontiformia, within which controversial hypotheses on the interfamilial phylogenetic relationships exist. Herein, we describe the complete mitochondrial (mt) genomes of an antlion (Myrmeleon immanis Walker, 1853) and a split-footed lacewing (Nymphes myrmeleonoides Leach, 1814), representing the first mt genomes for both families. These mt genomes are relatively small (respectively composed of 15,799 and 15,713 bp) compared to other lacewing mt genomes, and comprise 37 genes (13 protein coding genes, 22 tRNA genes and two rRNA genes). The arrangement of these two mt genomes is the same as in most derived Neuroptera mt genomes previously sequenced, specifically with a translocation of trnC. The start codons of all PCGs are started by ATN, with an exception of cox1, which is ACG in the M. immanis mt genome and TCG in N. myrmeleonoides. All tRNA genes have a typical clover-leaf structure of mitochondrial tRNA, with the exception of trnS1(AGN). The secondary structures of rrnL and rrnS are similar with those proposed insects and the domain I contains nine helices rather than eight helices, which is common within Neuroptera. A phylogenetic analysis based on the mt genomic data for all Neuropterida sequenced thus far, supports the monophyly of Myrmeleontiformia and the sister relationship between Ascalaphidae and Myrmeleontidae.
机译:在全翅类昆虫纲Neuroptera(瓢虫科)中,世界性Myrmeleoneidae科(蚁科)是物种最多的科,而密切相关的Nymphidae科(裂足的lace翅科)是来自澳大利亚-马来人地区的小型特有科。这两个家族都属于亚肉芽胞亚目,其中存在关于家族间系统发生关系的有争议的假设。在这里,我们描述了一个完整的线粒体(mt)基因组的一个蚁(Myrmeleon immanis沃克,1853年)和裂足的草lace(Nymphes myrmeleonoides Leach,1814年),代表两个家庭的第一个mt基因组。与其他草lacemt基因组相比,这些mt基因组相对较小(分别由15,799和15,713 bp组成),并包含37个基因(13个蛋白质编码基因,22个tRNA基因和两个rRNA基因)。这两个mt基因组的排列与先前测序的大多数派生Neuroptera mt基因组中的序列相同,特别是trnC易位。除cox1外,所有PCG的起始密码子均由ATN起始,cox1是伊曼尼姆梭菌mt基因组中的ACG,而在N. myrmeleonoides中是TCG。除trnS1(AGN)外,所有tRNA基因均具有线粒体tRNA的典型三叶草结构。 rrnL和rrnS的二级结构与所提出的昆虫相似,结构域I包含9个螺旋而不是8个螺旋,这在Neuroptera中很常见。迄今为止,已对所有已测序的Neuropterida的mt基因组数据进行了系统发育分析,支持Myrmeleontiformia的单亲性以及Ascalaphidae和Myrmeleontidae之间的姐妹关系。

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