...
首页> 外文期刊>Entomological Science >Sexual dimorphism and intraspecific variation in wing size and shape of Tongeia fischeri (Lepidoptera: Lycaenidae)
【24h】

Sexual dimorphism and intraspecific variation in wing size and shape of Tongeia fischeri (Lepidoptera: Lycaenidae)

机译:翅形畸形虫的翅形和大小的性二态性和种内变异(鳞翅目:Lycaenidae)

获取原文
获取原文并翻译 | 示例
           

摘要

Wing morphological variations are described here for the lycaenid butterfly Tongeia fischeri. A landmark-based geometric morphometric approach based on wing venation of 197 male and 187 female butterflies collected in Japan was used to quantify wing size and shape variations between sexes and among populations. Sexual dimorphism in wing size and shape was detected. Females had significantly larger wings than males, while males showed a relatively elongated forewing with a longer apex and narrower wing tornus in comparison to females. Intraspecific variations in wing morphology among populations were revealed for the wing shape, but not wing size. Distinct wing shape differences were found in the vein intersections area around the distal part of the discal cell where median veins originated in the forewing and around the origin of the CU1 vein in the hindwing. In addition, phenotypic relationships inferred from wing shape variations grouped T. fischeri populations into three groups, reflecting the subspecies classification of the species. The spatial variability and phenotypic relationships between conspecific populations of T. fischeri detected here are generally in agreement with the previous molecular study based on mitochondrial and nuclear sequences, suggesting the presence of a phylogenetic signal in the wing shape of T. fischeri, and thus having taxonomic implications
机译:此处描述了lycaenid蝴蝶Tongeia fischeri的翅膀形态变化。基于地标的几何形态计量学方法基于日本收集的197只雄性蝴蝶和187只雌性蝴蝶的翅膀脉络来量化男女之间以及种群之间的翅膀大小和形状变化。在机翼大小和形状上发现了两性异形。与雌性相比,雌性的翅膀明显大于雄性,而雄性则显示出相对较长的前翅,具有更长的顶点和更窄的翼状撕裂。揭示了种群间机翼形态的种内差异,但机翼形状却没有,机翼大小也没有发现。在盘状细胞远端部分周围的静脉相交区域发现了明显的机翼形状差异,其中正中静脉起源于前翅,而后CU1静脉起源附近。此外,从机翼形状变化推断出的表型关系将费氏纤毛虫种群分为三类,反映了该物种的亚种分类。在此检测到的费氏纤毛虫同种种群之间的空间变异性和表型关系通常与先前基于线粒体和核序列的分子研究相一致,表明费氏纤毛虫的翼形中存在系统发生信号,因此具有分类学意义

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号