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金星介科(介形纲)物种中性特征投资与瓣膜两性异形之间的相关性。

Correlation between investment in sexual traits and valve sexual dimorphism in Cyprideis species (Ostracoda).

作者信息

Fernandes Martins Maria João, Hunt Gene, Lockwood Rowan, Swaddle John P, Horne David J

机构信息

Department of Paleobiology, National Museum of Natural History, Smithsonian Institution, Washington DC, United States of America.

Department of Geology, College of William and Mary, Williamsburg, Virginia, United States of America.

出版信息

PLoS One. 2017 Jul 5;12(7):e0177791. doi: 10.1371/journal.pone.0177791. eCollection 2017.

Abstract

Assessing the long-term macroevolutionary consequences of sexual selection has been hampered by the difficulty of studying this process in the fossil record. Cytheroid ostracodes offer an excellent system to explore sexual selection in the fossil record because their readily fossilized carapaces are sexually dimorphic. Specifically, males are relatively more elongate than females in this superfamily. This sexual shape difference is thought to arise so that males carapaces can accommodate their very large copulatory apparatus, which can account for up to one-third of body volume. Here we test this widely held explanation for sexual dimorphism in cytheroid ostracodes by correlating investment in male genitalia, a trait in which sexual selection is seen as the main evolutionary driver, with sexual dimorphism of carapace in the genus Cyprideis. We analyzed specimens collected in the field (C. salebrosa, USA; C. torosa, UK) and from collections of the National Museum of Natural History, Washington, DC (C. mexicana). We digitized valve outlines in lateral view to obtain measures of size (valve area) and shape (elongation, measured as length to height ratio), and obtained several dimensions from two components of the hemipenis: the muscular basal capsule, which functions as a sperm pump, and the section that includes the intromittent organ (terminal extension). In addition to the assessment of this primary sexual trait, we also quantified two dimensions of the male secondary sexual trait-where the transformed right walking leg functions as a clasping organ during mating. We also measured linear dimensions from four limbs as indicators of overall (soft-part) body size, and assessed allometry of the soft anatomy. We observed significant correlations in males between valve size, but not elongation, and distinct structural parts of the hemipenis, even after accounting for their shared correlation with overall body size. We also found weak but significant positive correlation between valve elongation and the degree of sexual dimorphism of the walking leg, but only in C. torosa. The correlation between the hemipenis parts, especially basal capsule size and male valve size dimorphism suggests that sexual selection on sperm size, quantity, and/or efficiency of transfer may drive sexual size dimorphism in these species, although we cannot exclude other aspects of sexual and natural selection.

摘要

由于在化石记录中研究性选择过程存在困难,评估性选择的长期宏观进化后果受到了阻碍。金星介形虫提供了一个绝佳的系统来探索化石记录中的性选择,因为它们易于化石保存的外壳存在两性异形。具体而言,在这个超科中,雄性的外壳相对比雌性更细长。这种两性形态差异被认为是为了使雄性外壳能够容纳其非常大的交配器官,该器官体积可达身体体积的三分之一。在这里,我们通过将雄性生殖器的投入(性选择被视为该性状主要进化驱动力的一个特征)与金星介属外壳的两性异形进行关联,来检验这种关于金星介形虫两性异形的广泛解释。我们分析了在野外采集的标本(美国的盐沼金星介、英国的粗糙金星介)以及来自华盛顿特区国家自然历史博物馆馆藏的标本(墨西哥金星介)。我们将外壳侧面轮廓数字化,以获取大小(外壳面积)和形状(细长程度,以长与高的比率衡量)的测量值,并从半阴茎的两个组成部分获取了几个维度的数据:作为精子泵起作用的肌肉基部囊,以及包括插入器官(末端延伸部分)的部分。除了对这个主要性特征进行评估外,我们还对雄性第二性征的两个维度进行了量化,即变形的右步足在交配时作为抱握器官的情况。我们还测量了四个附肢的线性尺寸作为整体(软组织)身体大小的指标,并评估了软组织解剖结构的异速生长。我们观察到,即使在考虑了外壳大小、但不是细长程度与整体身体大小的共同相关性之后,雄性外壳大小与半阴茎的不同结构部分之间仍存在显著相关性。我们还发现,外壳细长程度与步足两性异形程度之间存在微弱但显著的正相关,但仅在粗糙金星介中如此。半阴茎各部分之间的相关性,尤其是基部囊大小与雄性外壳大小异形之间的相关性表明,对精子大小、数量和/或转移效率的性选择可能驱动了这些物种的两性大小异形,尽管我们不能排除性选择和自然选择的其他方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cf1/5497955/22be693eabfc/pone.0177791.g001.jpg

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