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首页> 外文期刊>European journal of entomology >Morphological and molecular characterization of common European species of Adialytus (Hymenoptera: Braconidae: Aphidiinae) based on the mtCOI barcoding gene and geometric morphometrics of forewings
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Morphological and molecular characterization of common European species of Adialytus (Hymenoptera: Braconidae: Aphidiinae) based on the mtCOI barcoding gene and geometric morphometrics of forewings

机译:基于mtCOI条形码基因和前翅的几何形态计量学的欧洲常见象形虫(膜翅目:Braconidae:蚜虫)的形态和分子表征

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In this study three common European species of the genus Adialytus Forster, 1862 were examined: Adialytus ambiguus (Haliday, 1834), Adialytus salicaphis (Fitch, 1855) and Adialytus thelaxis (Stary, 1961). Molecular analysis involved the DNA barcoding of a region of the mitochondrial gene cytochrome oxidase I (COI). The genetic difference based on Kimura's two-parameter model for computing pairwise distances showed that A. thelaxis differs from both A. ambiguus and A. salicaphis by 4.9 and 6% on average, respectively. The genetic distance between A. ambiguus and A. salicaphis was 1.5% on average, suggesting that barcodes based on the COI gene are insufficiently informative for separating these two species. Geometric morphometrics analysis of forewing size and shape revealed statistically significant differences. The R1 vein on the forewing of A. ambiguus is more elongated than on the wings of A. salicaphis and A. thelaxis. The geometric morphometrics analysis of the forewings also revealed that A. salicaphis and A. thelaxis have much broader forewings, suggesting strong flight ability associated with their parasitizing arboricolous aphids. The distal part of the forewing of Adialytus ambiguus is narrower, which in this case suggests poor flight ability associated with parasitizing Sipha aphids on grasses. An illustrated key for identifying the European species of Adialytus is provided.
机译:在这项研究中,研究了三种欧洲常见的Adialytus Forster属(1862年):Adialytus ambiguus(Haliday,1834年),Adialytus salicaphis(Fitch,1855年)和thedialyus thelaxis(Stary,1961年)。分子分析涉及线粒体基因细胞色素氧化酶I(COI)区域的DNA条形码编码。基于木村的两参数模型计算成对距离的遗传差异表明,thelaxis与A. ambiguus和A. salicaphis的平均差异分别为4.9和6%。 A. ambiguus和A. salicaphis之间的遗传距离平均为1.5%,这表明基于COI基因的条形码对分离这两个物种的信息不足。前爪尺寸和形状的几何形态计量学分析显示出统计学上的显着差异。比起拟南芥和thelaxis的翅膀,R.1脉在拟南芥的前额上要更长。对前翅的几何形态计量学分析还显示,A。salicaphis和A. thelaxis的前翅宽得多,表明其寄生寄生的树栖蚜虫具有较强的飞行能力。 Adialytus ambiguus的前爪的末端较窄,这说明寄生在草地上的Sipha蚜虫会导致飞行能力差。提供了用于识别欧洲线虫的图示密钥。

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