Suppr超能文献

性别的大小和形状二态性,以及蛹期和成虫期性状的异速生长缩放。 不过你提供的原文似乎不完整,“of”后面缺少具体内容。

Sexual size and shape dimorphism, and allometric scaling in the pupal and adult traits of .

作者信息

Ludoški Jasmina, Francuski Ljubinka, Gojković Nemanja, Matić Bojana, Milankov Vesna

机构信息

Department of Biology and Ecology, Faculty of Sciences University of Novi Sad Novi Sad Serbia.

Protix BV Dongen The Netherlands.

出版信息

Ecol Evol. 2023 Mar 15;13(3):e9907. doi: 10.1002/ece3.9907. eCollection 2023 Mar.

Abstract

The patterns and amount of variation in size, shape, and/or life history traits between females and males are fundamentally important to gain the comprehensive understanding of the evolution of phenotypic diversity. In addition, the covariation of phenotypic traits can significantly contribute to morphological diversification and sexual dimorphism (SD). Using linear and geometric morphometrics, 237 specimens sampled from five populations were, therefore, comparatively assessed for the variation in sexual size dimorphism (SSD), sexual shape dimorphism (SShD), and life history traits, as well as for trait covariation (ontogenetic and static allometry). Pupal body, adult wing, and body mass traits were analyzed. Female-biased SSD was observed for pupal length, width, and centroid size, adult wing centroid size, mass, wing loading, and wing area. Conversely, pupal length/width ratio, developmental time, and mass were not found to be sexually dimorphic. Next, wing SShD, but not pupal body SShD was revealed, while allometry was found to be an important "determinant of SD" at the adult stage, with only a minor impact at the pupal stage. By comparing the patterns of covariance (based on allometric slope and intercept) between respective body mass and morphometric traits of pupae and adults, greater variation in allometric slopes was found in adult traits, while static allometries of the two stages significantly differed, as well. Finally, the results indicate that changes in the allometric intercept could be an important source of intraspecific variation and SD in drone fly adults.

摘要

雌性和雄性之间在大小、形状和/或生活史特征方面的变异模式和数量,对于全面理解表型多样性的进化至关重要。此外,表型特征的协变可显著促进形态多样化和两性异形(SD)。因此,利用线性和几何形态测量学,对从五个种群中采集的237个标本进行了比较评估,以研究两性大小异形(SSD)、两性形状异形(SShD)和生活史特征的变异,以及特征协变(个体发育和静态异速生长)。分析了蛹体、成虫翅膀和体重特征。在蛹的长度、宽度和质心大小、成虫翅膀质心大小、质量、翼载荷和翼面积方面观察到雌性偏向的SSD。相反,未发现蛹的长宽比、发育时间和质量存在两性异形。接下来,揭示了翅膀的SShD,但蛹体未表现出SShD,而异速生长在成虫阶段是SD的重要“决定因素”,在蛹阶段影响较小。通过比较蛹和成虫各自体重与形态测量特征之间的协变模式(基于异速生长斜率和截距),发现成虫特征的异速生长斜率变化更大,两个阶段的静态异速生长也存在显著差异。最后,结果表明异速生长截距的变化可能是雄蝇成虫种内变异和SD的重要来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b643/10015363/e08c2bce7b1d/ECE3-13-e9907-g006.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验